<?xml version="1.0" encoding="ISO-8859-1"?><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
<front>
<journal-meta>
<journal-id>0535-5133</journal-id>
<journal-title><![CDATA[Investigación Clínica]]></journal-title>
<abbrev-journal-title><![CDATA[Invest. clín]]></abbrev-journal-title>
<issn>0535-5133</issn>
<publisher>
<publisher-name><![CDATA[Instituto de Investigaciones Clínicas "Dr. Américo Negrette", Facultad de Medicina, Universidad del Zulia]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S0535-51332012000400002</article-id>
<title-group>
<article-title xml:lang="es"><![CDATA[Utilidad del bandeo cromosómico con la enzima ALU I para la identificación de zonas metiladas en cáncer de mama]]></article-title>
<article-title xml:lang="en"><![CDATA[Utility of chromosome banding with ALU I enzyme for identifying methylated areas in breast cancer]]></article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Rojas-Atencio]]></surname>
<given-names><![CDATA[Alicia]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Yamarte]]></surname>
<given-names><![CDATA[Leonard]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Urdaneta]]></surname>
<given-names><![CDATA[Karelis]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Soto-Álvarez]]></surname>
<given-names><![CDATA[Marisol]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Álvarez Nava]]></surname>
<given-names><![CDATA[Francisco]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Cañizalez]]></surname>
<given-names><![CDATA[Jenny]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Quintero]]></surname>
<given-names><![CDATA[Maribel]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Atencio]]></surname>
<given-names><![CDATA[Raquel]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[González]]></surname>
<given-names><![CDATA[Richard]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
</contrib-group>
<aff id="A01">
<institution><![CDATA[,Universidad del Zulia Facultad de Medicina Instituto de Investigaciones Genéticas]]></institution>
<addr-line><![CDATA[Maracaibo ]]></addr-line>
<country>Venezuela</country>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>12</month>
<year>2012</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>12</month>
<year>2012</year>
</pub-date>
<volume>53</volume>
<numero>4</numero>
<fpage>331</fpage>
<lpage>341</lpage>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://ve.scielo.org/scielo.php?script=sci_arttext&amp;pid=S0535-51332012000400002&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://ve.scielo.org/scielo.php?script=sci_abstract&amp;pid=S0535-51332012000400002&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://ve.scielo.org/scielo.php?script=sci_pdf&amp;pid=S0535-51332012000400002&amp;lng=en&amp;nrm=iso"></self-uri><abstract abstract-type="short" xml:lang="es"><p><![CDATA[El cáncer es un conjunto de trastornos que comparten la característica común de un crecimiento celular descontrolado, teniendo la facultad de comenzar en las células, generando dos procesos sucesivos: el aumento de la proliferación celular (tumor o neoplasia) y la capacidad invasiva de estas células, proliferando y colonizando otros tejidos (metástasis). La metilación del DNA es un proceso epigenético que recurrentemente ha sido involucrado como un factor importante en la patogenia de esta enfermedad el cual participa en la regulación de la expresión génica directamente al impedir la unión de factores de trascripción, e indirectamente propiciando la estructura “cerrada” de la cromatina. El objetivo de este trabajo fue determinar regiones hipermetiladas en muestras de extendidos cromosómicos mediante la utilización de la endonucleasa de restricción Alu I y relacionar estas regiones con sitios de localización de genes supresores de tumores relacionados con el cáncer de mama. Se analizaron 60 muestras de sangre periférica de mujeres con diagnóstico de cáncer de mama a las cuales se les realizó cultivo celular; los extendidos cromosómicos fueron teñidos con Giemsa previamente digeridos con la enzima Alu I. Se observaron cromosomas con regiones centroméricas y no centroméricas teñidas en el 37% de los casos, comprobándose que en el 95,46% de los casos existen genes asociados descritos, como metilados en cáncer de mama. Ejemplo de ellos son los localizados en los cromosomas 1q, 2q, 6q, y regiones centroméricas no teñidas usualmente como en los cromosomas 3, 4, 8, 13, 14, 15, y 17. Se sugiere la importancia de esta técnica ya que permite la visualización total del genoma, pudiendo localizar genes metilados relacionados con cáncer de mama y, de esta manera dirigir la terapia de forma específica, logrando una mejor respuesta terapéutica]]></p></abstract>
<abstract abstract-type="short" xml:lang="en"><p><![CDATA[Cancer is a group of disorders characterized by uncontrolled cell growth which is produced by two successive events: increased cell proliferation (tumor or neoplasia) and the invasive capacity of these cells (metastasis). DNA methylation is an epigenetic process which has been involved as an important pathogenic factor of cancer. DNA methylation participates in the regulation of gene expression, directly, by preventing the union of transcription factors, and indirectly, by promoting the “closed” structure of the chromatine. The objectives of this study were to identify hypermethyled chromosomal regions through the use of restriction Alu I endonuclease, and to relate cytogenetically these regions with tumor suppressive gene loci. Sixty peripheral blood samples of females with breast cancer were analyzed. Cell cultures were performed and cytogenetic spreads, previously digested with Alu I enzyme, were stained with Giemsa. Chromosomal centromeric and not centromeric regions were stained in 37% of cases. About 96% of stained hypermethyled chromosomal regions (1q, 2q, 6q) were linked with methylated genes associated with breast cancer. In addition, centromeric regions in chromosomes 3, 4, 8, 13, 14, 15 and 17, usually unstained, were found positive to digestion with Alu I enzime and Giemsa staining. We suggest the importance of this technique for the global visualization of the genome which can find methylated genes related to breast cancer, and thus lead to a specific therapy, and therefore a better therapeutic response]]></p></abstract>
<kwd-group>
<kwd lng="es"><![CDATA[cáncer de mama]]></kwd>
<kwd lng="es"><![CDATA[metilación del DNA]]></kwd>
<kwd lng="es"><![CDATA[enzima de restricción ALU I]]></kwd>
<kwd lng="es"><![CDATA[bandeo cromosómico]]></kwd>
<kwd lng="en"><![CDATA[breast cancer]]></kwd>
<kwd lng="en"><![CDATA[methylation of DNA]]></kwd>
<kwd lng="en"><![CDATA[restriction enzymes ALU I]]></kwd>
<kwd lng="en"><![CDATA[chromosome banding]]></kwd>
</kwd-group>
</article-meta>
</front><body><![CDATA[  <BASEFONT SIZE="3"> <MULTICOL GUTTER="31" COLS="2"> <font face="Verdana" size="2"> <A NAME="clinica-1"></A><A NAME="_VPID_3"></A> </font>     <P ALIGN="center"><FONT COLOR="#1f1a17" FACE="Verdana"> <B>Utilidad del bandeo cromos&#243;mico&nbsp; con la enzima ALU I para la identificaci&#243;n&nbsp; de zonas metiladas en c&#225;ncer de mama.&nbsp; </B> </FONT></P> <font face="Verdana" size="2"> <A NAME="_VPID_4"></A> </font>     <P ALIGN="center"><b><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <I>Alicia Rojas-Atencio, Leonard Yamarte, Karelis Urdaneta, Marisol Soto-&#193;lvarez,  Francisco &#193;lvarez Nava, Jenny Ca&#241;izalez, Maribel Quintero, Raquel Atencio  y Richard Gonz&#225;lez.&nbsp;</I> </FONT></b></P>     <P ALIGN="center"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Instituto de Investigaciones Gen&#233;ticas, Facultad de Medicina, Universidad  del Zulia, Maracaibo, Venezuela.&nbsp;</FONT></P> <basefont>     <p align="justify"><font color="#1f1a17" size="2" face="Verdana">Autor de  correspondencia: Alicia Rojas-Atencio. Instituto de Investigaciones Genéticas,  Facultad de Medicina, Universidad del Zulia. Maracaibo, Venezuela. Telefono,  0261-3229513. Correo electrónico: </font> <font color="#0000ff" size="2" face="Verdana"><u> <a href="mailto:arojasa26@gmail.com">arojasa26@gmail.com</a></u></font><font color="#1f1a17" size="2" face="Verdana">&nbsp; </font></p>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>Resumen.</B></FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> El c&#225;ncer es un conjunto de trastornos que comparten la caracter&#237;stica  com&#250;n de un crecimiento celular descontrolado, teniendo la facultad de  comenzar en las c&#233;lulas, generando dos procesos sucesivos: el aumento de  la proliferaci&#243;n celular (tumor o neoplasia) y la capacidad invasiva de  estas c&#233;lulas, proliferando y colonizando otros tejidos (met&#225;stasis). La  metilaci&#243;n del DNA es un proceso epigen&#233;tico que recurrentemente ha sido  involucrado como un factor importante en la patogenia de esta enfermedad  el cual participa en la regulaci&#243;n de la expresi&#243;n g&#233;nica directamente  al impedir la uni&#243;n de factores de trascripci&#243;n, e indirectamente propiciando  la estructura &#147;cerrada&#148; de la cromatina. El objetivo de este trabajo fue  determinar regiones hipermetiladas en muestras de extendidos cromos&#243;micos  mediante la utilizaci&#243;n de la endonucleasa de restricci&#243;n <I>Alu I</I> y relacionar  estas regiones con sitios de localizaci&#243;n de genes supresores de tumores  relacionados con el c&#225;ncer de mama. Se analizaron 60 muestras de sangre  perif&#233;rica de mujeres con diagn&#243;stico de c&#225;ncer de mama a las cuales se  les realiz&#243; cultivo celular; los extendidos cromos&#243;micos fueron te&#241;idos  con Giemsa previamente digeridos con la enzima <I>Alu I. </I>Se observaron cromosomas  con regiones centrom&#233;ricas y no centrom&#233;ricas te&#241;idas en el 37% de los  casos, comprob&#225;ndose que en el 95,46% de los casos existen genes asociados  descritos, como metilados en c&#225;ncer de mama. Ejemplo de ellos son los localizados  en los cromosomas 1q, 2q, 6q, y regiones centrom&#233;ricas no te&#241;idas usualmente  como en los cromosomas 3, 4, 8, 13, 14, 15, y 17. Se sugiere la importancia  de esta t&#233;cnica ya que permite la visualizaci&#243;n total del genoma, pudiendo  localizar genes metilados relacionados con c&#225;ncer de mama y, de esta manera  dirigir la terapia de forma espec&#237;fica, logrando una mejor respuesta terap&#233;utica.&nbsp;</FONT></P> </MULTICOL>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>Palabras clave:&nbsp;</B> c&#225;ncer de mama, metilaci&#243;n del DNA, enzima de restricci&#243;n ALU I, bandeo  cromos&#243;mico.&nbsp; </FONT></P> <MULTICOL GUTTER="31" COLS="2"> </MULTICOL> <MULTICOL GUTTER="31" COLS="2"> <font face="Verdana" size="2"> <A NAME="_VPID_5"></A> </font>     <P ALIGN="center"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>Utility of chromosome banding with ALU I enzyme for identifying methylated  areas in breast cancer.</B></FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>Abstract.</B></FONT></P>     ]]></body>
<body><![CDATA[<P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Cancer is a group of disorders characterized by uncontrolled  cell growth which is produced by two successive events: increased cell  proliferation (tumor or neoplasia) and the invasive capacity of these cells  (metastasis). DNA methylation is an epigenetic process which has been involved  as an important pathogenic factor of cancer. DNA methylation participates  in the regulation of gene expression, directly, by preventing the union  of transcription factors, and indirectly, by promoting the &#147;closed&#148; structure  of the chromatine. The objectives of this study were to identify hypermethyled  chromosomal regions through the use of restriction <I>Alu I</I> endonuclease,  and to relate cytogenetically these regions with tumor suppressive gene  loci. Sixty peripheral blood samples of females with breast cancer were  analyzed. Cell cultures were performed and cytogenetic spreads, previously  digested with <I>Alu I</I> enzyme, were stained with Giemsa. Chromosomal centromeric  and not centromeric regions were stained in 37% of cases. About 96% of  stained hypermethyled chromosomal regions (1q, 2q, 6q) were linked with  methylated genes associated with breast cancer. In addition, centromeric  regions in chromosomes 3, 4, 8, 13, 14, 15 and 17, usually unstained, were  found positive to digestion with <I>Alu I</I> enzime and Giemsa staining. We suggest  the importance of this technique for the global visualization of the genome  which can find methylated genes related to breast cancer, and thus lead  to a specific therapy, and therefore a better therapeutic response.&nbsp;</FONT></P> </MULTICOL>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>Key words:&nbsp;</B> breast cancer, methylation of DNA, restriction enzymes ALU I, chromosome  banding.&nbsp; </FONT></P> <MULTICOL GUTTER="31" COLS="2">     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <b>Recibido:</b><I> 05-03-2012 </I> <b>Aceptado:</b><I> 20-09-2012</I></FONT><font face="Verdana" size="2">    <BR> </font></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>INTRODUCCI&#211;N&nbsp;</B> </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> El c&#225;ncer de mama es la causa m&#225;s com&#250;n de mortalidad por c&#225;ncer en mujeres  a nivel mundial (1). En Venezuela constituye la segunda causa de muerte  por c&#225;ncer en nuestras mujeres. (2). El c&#225;ncer de mama al igual que muchos  otros tiene un origen multifactorial en el que intervienen, la activaci&#243;n  de oncogenes, la inactivaci&#243;n de genes supresores tumorales, as&#237; como la  disfunci&#243;n de los genes reparadores del DNA (3). Sumado a las alteraciones  gen&#233;ticas, se est&#225;n evidenciando cambios en el DNA gen&#243;mico tales como  los patrones de metilaci&#243;n anormal de citosinas que ocurren dentro de los  dinucle&#243;tidos CpG; teniendo en cuenta que aproximadamente el 50% de los  genes humanos presentan estos dinucle&#243;tidos en sus secuencias reguladoras  5% las cuales son conocidos como islas CpG, este representa un fen&#243;meno  importante para la aparici&#243;n de los procesos cancerosos (4).&nbsp; </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> La detecci&#243;n de esta malignidad en etapas tempranas de su desarrollo es  la clave para que los tratamientos que se apliquen sean m&#225;s eficaces. Sin  embargo, un 30% de las mujeres con c&#225;ncer de mama localizado desarrollan  enfermedad metast&#225;sica y, por otro lado, alrededor de 15% de los tumores  invasivos, no son diagnosticados utilizando la mamograf&#237;a, principal herramienta  diagn&#243;stica para etapas iniciales (5-6). Otras herramientas pron&#243;sticas  utilizadas incluyen los marcadores como el CAE y el CAE 15,30, utilizados  para el monitoreo del c&#225;ncer de mama, sin embargo hoy en d&#237;a menos utilizados  por su baja sensibilidad y especificidad (7-8).&nbsp; </FONT></P> </MULTICOL> <MULTICOL GUTTER="31" COLS="2">     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Nuevas investigaciones apuntan hacia la aparici&#243;n de promotores de genes  hipermetilados que asoman como una herramienta moderna para la identificaci&#243;n  de marcadores gen&#233;ticos que, en un futuro podr&#225;n ser utilizados como blancos  terap&#233;uticos para la resoluci&#243;n de este tipo de enfermedad. Un ejemplo  de ellos son los genes supresores p16, APC, y el RASSF1A, en los cuales  se han encontrado frecuencias de metilaci&#243;n similares entre un 40 y un  53%, constituy&#233;ndose en un elemento importante en la detecci&#243;n molecular  de este tipo de tumor (9-13). La metilaci&#243;n del DNA es el mecanismo epigen&#233;tico  conocido m&#225;s antiguo y m&#225;s estable que se correlaciona con la represi&#243;n  g&#233;nica. Esta modificaci&#243;n consiste en la adici&#243;n enzim&#225;tica de un grupo  metilo al residuo de citosina de la cadena del DNA. Esta reacci&#243;n es mediada  por las DNA-metiltransferasas (DNMTs) en presencia del donador de metilos  (S-adenosilmetionina, SAM), resultando 5-metilcitosina. En los mam&#237;feros  la metilaci&#243;n ocurre en los dinucle&#243;tidos CpG (citosinas que son inmedi&#225;tamente  seguidas de una guanina). En el genoma humano existen 2.8 &#215; 107 dinucle&#243;tidos  CG susceptibles de ser metilados y de ellos 70-80% normalmente se encuentran  metilados. Fisiol&#243;gicamente se observa una densa metilaci&#243;n en regiones  espec&#237;ficas cromos&#243;micas (secuencias repetitivas inter o intrag&#233;nicas,  satelitales y centros&#243;micas) que contienen gran cantidad de dinucle&#243;tidos  CG, mientras que la metilaci&#243;n es nula en las islas de CpG (zonas ricas  en CG) de las secuencias de los promotores g&#233;nicos. Muchos genes pueden  ser inactivados en un solo tipo de c&#225;ncer a trav&#233;s de la metilaci&#243;n de  estos promotores (14). La enzima ALU I es una endonucleasa de restricci&#243;n  la cual reconoce las secuencias ALU, estas son secuencia de DNA altamente  repetidas que cubren aproximadamente el 10% del genoma humano siendo su  distribuci&#243;n heterog&#233;nea; est&#225;n presentes en aproximadamente 300.000-600.000  copias, representando un 3%-6% del genoma, encontr&#225;ndose principalmente  en la regiones promotoras de los genes relacionados con c&#225;ncer. La enzima  ALU I corta el DNA cromos&#243;mico a lo largo de los ejes. En citogen&#233;tica,  en los patrones de bandeo inducido por esta enzima se observa la distribuci&#243;n  de los patrones de una secuencia altamente repetitiva del DNA Sat&#233;lite;  su sitio espec&#237;fico de reconocimiento es en las uniones citosina-guanina  (15, 16), al cortar la enzima se visualizar&#237;an, luego de la tinci&#243;n bloques  claros, los cuales corresponder&#237;an a &#225;reas no metiladas (17-18); Xiang  y col. en 2011, caracterizaron la metilaci&#243;n de las regiones ALU de pacientes  con c&#225;ncer g&#225;strico, observando m&#225;s del 80% de &#225;reas metiladas (19). Aprovechando  esta propiedad, se plante&#243; la utilizaci&#243;n de la enzima ALU I, colocada  sobre una l&#225;mina portaobjeto contentivo de una muestra cromos&#243;mica de pacientes  con c&#225;ncer de mama; al estar metilada, esta &#225;rea se visualizar&#237;a como zonas  oscuras indicando la presencia de regiones hipermetiladas en el genoma  de pacientes con c&#225;ncer de mama.&nbsp; </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>MATERIALES Y M&#201;TODO&nbsp;</B> </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Se analizaron 60 muestras de sangre perif&#233;rica, de pacientes con diagnostico  de c&#225;ncer de mama, referidas del Servicio de Oncolog&#237;a Quir&#250;rgica del Servicio  Aut&#243;nomo Hospital Universitario de Maracaibo, Venezuela y 30 pacientes  sanos como control para el bandeo con la enzima ALU I. El proyecto fue  aprobado por el comit&#233; de &#233;tica del Instituto de Investigaciones Gen&#233;ticas  de la Universidad del Zulia, y se obtuvo el consentimiento informado de  cada uno de los pacientes. La muestra utilizada fue de 2 mL de sangre perif&#233;rica.  Como criterio de inclusi&#243;n se estableci&#243; el que las pacientes no hubiesen  recibido quimioterapia, ni radioterapia. Las muestras de sangre perif&#233;rica  se procesaron para cultivo cromos&#243;mico, siguiendo la t&#233;cnica de Yunis descrita  en 1981(20). Se utiliz&#243; t&#233;cnica de bandeo G (21) y con la enzima ALU I,  siguiendo el protocolo de preparaci&#243;n de la enzima recomendado por la casa  fabricante (Promega); la t&#233;cnica de bandeo utilizada para ALU I, fue la  descrita por Kaelbling y col. y Verman y Babu en 1995 (22-23). Se analizaron  20 metafases por pacientes en ambas t&#233;cnicas; los cariotipos fueron descritos  de acuerdo a la versi&#243;n referida en el ISCN 2005 (24). Las regiones hipermetiladas  localizadas en los cromosomas, seg&#250;n la regi&#243;n te&#241;ida, fueron llevadas  a la base de datos del GenBank (25) para identificar los genes comprometidos  en la regi&#243;n metilada.&nbsp;</FONT></P>     ]]></body>
<body><![CDATA[<P ALIGN="justify"> </MULTICOL> <MULTICOL GUTTER="31" COLS="2"> <FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>RESULTADOS&nbsp;</B> </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Se analizaron los cariotipos de sangre perif&#233;rica de las 60 pacientes con  diagn&#243;stico de c&#225;ncer de mama, de los cuales en 45(75%) se clasificaron  como carcinoma in situ, el resto como carcinoma infiltrante, histol&#243;gicamente  fueron definidos en un 86% como carcinoma ductal y 14% como lobulillares.  La edad promedio de la muestra de la poblaci&#243;n fue 51,13 a&#241;os. Se comprob&#243;  la presencia de anomal&#237;as num&#233;ricas y estructurales en 23 de los casos  (38,33%), 19 de los casos (20,94%), correspondieron a anomal&#237;as num&#233;ricas  y en 4 de ellos se present&#243; una combinaci&#243;n de anomal&#237;as num&#233;ricas y estructurales  que correspondieron a una deleci&#243;n del brazo largo del cromosoma 11, traslocaciones  cromos&#243;micas que involucraron al cromosoma 1 con el cromosoma 18 y el 20,  y una traslocaci&#243;n 17,20 (17,39%). Los restantes 37 casos (61,67%) resultaron  normales. Las anomal&#237;as num&#233;ricas correspondieron a monosom&#237;as de los cromosomas  X, 1, 6, 7, 9, 11, 13, 14, 15, 16, 17, 18, 20, 21 y 22; dentro de las trisom&#237;as  estas correspondieron a los cromosomas 11 y 18 (<a href="#tab1">Tabla I</a>).&nbsp;</FONT></P> <basefont>     <p align="center"><font color="#1f1a17" size="2" face="Verdana"><a name="tab1"> <b>TABLA I</b>.</a> ANOMALÍAS CROMOSÓMICAS ENCONTRADAS EN PACIENTES CON CÁNCER  DE MAMA&nbsp; </font></p>     <div align="center"> 	<table id="table1" width="580"> 		<tr> 			<td bgColor="#c3c3c2" vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Caso&nbsp; </font></td> 			<td bgColor="#c3c3c2" vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Edad&nbsp; </font></td> 			<td bgColor="#c3c3c2" vAlign="top" width="490"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Cariotipo&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">1&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">46  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">32~45,  			XX, -6, -7, -8, -9, -13, -14, -15, -16, -17, -19, -19 [8], 46, XX  			[2]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">2&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">46  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">39~45,  			X, -X, -1, -2, -3, -5, -8, -12, -14, -15, -19, -21, -22, [5], 46, XX  			[7]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">3&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">51  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">39,  			XX, -3, -6, -8, -8, -13, -14, -20 [1], 46, XX [21], poliploidía [2]&nbsp; 			</font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">4&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">58  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">45~47,  			XX, -1, +8, +12, +19 [4], 46, XX [11]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">5&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">35  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">43~45,  			X, -X, -2, -4, -8, -9, -10, 17, -19, -21, -22 [7], 46XX [2]&nbsp; </font> 			</td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">6&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">67  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">32~45,  			XX, -6, -7, -13, -17, -18, -21, -22, -22, +t(17q; 20q) [5] 46, XX  			[14]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">7&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">57  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">39~52,  			XX, -1, -2, -4, -5, -7, -9, -11, -13, -15, -16, 18, -21, +1, +2, +5,  			+6, +9, +12, +13, +14, +18, +20, +21 [5], 46, XX [8]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">8&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">59  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    ]]></body>
<body><![CDATA[<p align="left"><font color="#1f1a17" size="2" face="Verdana">44, X,  			-X, -18, + t(1; 18)(q23:q21) [2], 46, XX [15]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">9&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">45  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">29~45,  			X, - X, -1, -2, -3, -7, -9, -9, -13, -13 [4], 46, XX [15]&nbsp; </font> 			</td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">10&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">67  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">32~46,  			XX, -1, -2, -3, -7, -9, -11, -13, -14, -15, -16, -20, -21, -22, [8],  			46, XX [14]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">11&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">55  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">32~45,  			XX, -3, -9, -6, -7, -11, -12, -12, -20 [6], + t(1; 20)(q15, q17),  			46, XX [14]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">12&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">44  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">43~46,  			XX, -13, -16, -18, [3], 43, XX, -13, -16, -17, -19, + mar [1], 46,  			XX [16]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">13&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">37  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">45, XX,  			-7, [3]/ 44, XX, +11, -17, -18 [4], 46, XX [13]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">14&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">44  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">42, XX,  			-18, -20, -22, [3], 42, X, -X, -6, -7, -9 [2], 44, X, -X, -1 [2],  			41, XX, -6, -13, -14, -15, -21 [3], 46, XX [12]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">15&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">85  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">45, XX,  			-11 [4], 44, XX, +18, -22, -22 [2], 46, XX [14]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">16&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">57  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">43, XX,  			-18, -20, -22 [2], 46, XX, +18, -22 [3], 42, XX, -7, -11, -15, -16,  			[2], 42, XX, -15, -22, -22, + del(11)(q23) [4], 46, XX [9]&nbsp; </font> 			</td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">17&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">73  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">45, XX,  			-20 [15]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">18&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">59  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    ]]></body>
<body><![CDATA[<p align="left"><font color="#1f1a17" size="2" face="Verdana">38~46,  			XX, -1, -4, -12, -13, -16, -17, -20 [4], 43, XX, -13, -16, -17, -19,  			+ mar, [1], 46, XX [10]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">19&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">45  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">46, XX,  			del (16)(p23) [3], 46, XX [17]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">20&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">62  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">41~45,  			XX, -5, -7, -8, -9, -21 [5], 46, XX [7]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">21&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">47  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">43~45,  			XX, -7, -13, -14 [3], 47, XX, + mar [2], 46, XX [17]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">22&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">68  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">43~45,  			XX, -8, -10, -11 [3], 46, XX [11], 39~45, X, -X, -4, -8, -11, -12,  			-14 [3], 46, XX [10]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="37"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">23&nbsp; 			</font></td> 			<td vAlign="top" width="63"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">50  			a&nbsp; </font></td> 			<td vAlign="top" width="490"> 			    <p align="left"><font color="#1f1a17" size="2" face="Verdana">39~45,  			XX, -1, -3, -7, -14 [5], 46, XX [15]&nbsp; </font></td> 		</tr> 	</table> </div>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Se realiz&#243; la digesti&#243;n de las muestras cromos&#243;micas de los casos y los  controles, observ&#225;ndose en los controles patrones normales de digesti&#243;n,  los cuales coinciden con la presencia de regiones centrom&#233;ricas te&#241;idas  en los cromosomas 1, 9 y 16. En las pacientes con c&#225;ncer de mama se observ&#243;  que 22 de ellas (36,66%) presentaron regiones anormalmente te&#241;idas, solo  en una de las regiones metiladas observadas no se encontr&#243; asociaci&#243;n en  la literatura con genes metilados en c&#225;ncer de mama (<a href="#tab2">Tabla II</a>), lo que  result&#243; altamente significativo. Ejemplo de ellas se observan en los cromosomas  2 (2q23-2q32.2) (<a href="#fig1a">Fig. 1a</a>); as&#237; como tambi&#233;n se observaron cromosomas con  una banda Centrom&#233;rica heterocrom&#225;tica muy pronunciada en los cromosomas  3 y 8 (<a href="#fig1b">Fig.&nbsp;1b</a> y <a href="#fig1c">1c</a>).&nbsp;</FONT></P> <basefont>     <p align="center"><font color="#1f1a17" size="2" face="Verdana"><b> <a name="tab2">TABLA II.</a> </b>ÁREAS CROMOSÓMICAS METILADAS Y SU ASOCIACIÓN  CON CÁNCER DE MAMA&nbsp; </font></p>     <div align="center"> 	<table id="table2" width="580"> 		<tr> 			<td bgColor="#c3c3c2" vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Nº  			casos con    ]]></body>
<body><![CDATA[<br> 			genes metilados&nbsp; </font></td> 			<td bgColor="#c3c3c2" vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Área  			cromosómica metilada&nbsp; </font></td> 			<td bgColor="#c3c3c2" vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Gen  			comprometido&nbsp; </font></td> 			<td bgColor="#c3c3c2" vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Estudios relacionados con ca de mama&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">2&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			2q23-q25&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Factor de transcripción E2F, N-myc interactor&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Carcinogénesis. 2009 Feb; 30(2):269-74&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">1&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			2q32-qter&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">Gen  			de diferenciación neurogénica&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			British Journal of Cancer (2005) 93, 1029-1037&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">1&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			3q12-q16&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Subfamilia de receptores nucleares&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">J  			Clin Invest. 2011 Aug; 121(8):3220-32.&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">3&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			6q15- q25&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Proteína asociada a la caspasa B mitógeno activador de proteína  			kinasa&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Exp  			Mol Med. 2012 Feb 15. [Epub ahead of print]&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">5&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			6q25-qter&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Genes receptores de estrógenos&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Breast Cancer Res 2007; 94: R57&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">1&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			1q25-1q32&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Región promotora traslocada para activar el oncogen MET&nbsp; </font> 			</td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Br J  			Cancer. 2006 Nov 20; 95:1439-47&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">1&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			1q32-qter&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Subfamilia de genes receptores nucleares&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Cancer Research 1999; 59: 6091-6096&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">1&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			18q11-q25&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Gen  			de la intefase microfibrilar de la elastina y factor de inducción de  			muerte celular&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Molecular Cancer 2010, 9:51, 1-13&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">2&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			8p12-13&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Receptor del factor de crecimiento de fibroblastos&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">BMC  			cancer 2006; 245: 1471-84&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana">2&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			17q12-q23&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Gen  			neurofibromatosis, Her 2 neu&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Histol Histopathol. 2012 Mar; 27(3):377-85.&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">1&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			13q14-qter&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Receptor 6 del ácido lisofosfatídico&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">Sin  			reporte asociación con ca de mama&nbsp; </font></td> 		</tr> 		<tr> 			<td vAlign="top" width="108"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana">2&nbsp; 			</font></td> 			<td vAlign="top" width="122"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			16q12-q22&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    ]]></body>
<body><![CDATA[<p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Factor de transcripción 1 proteína dedos de zinc&nbsp; </font></td> 			<td vAlign="top" width="188"> 			    <p align="center"><font color="#1f1a17" size="2" face="Verdana"> 			Molecular Cancer 2010, 9:51, 1-13&nbsp; </font></td> 		</tr> 	</table> 	<font FACE="Verdana" SIZE="2" COLOR="#231f20"> 	    <p align="center"><a name="fig1a"> 	<img border="0" src="/img/fbpe/ic/v53n4/art02fig1a.jpg" width="349" height="263" align="center"></a></p> 	    
<p><b>Fig 1a.</b> Cromosoma 2 (a) con bandas G. (b) Normal <i>Alu I </i>y  	(c) presencia de región no Centromérica marcada 2q23q32.</p> 	</font> 	    <p align="center"><a name="fig1b"> 	<img border="0" src="/img/fbpe/ic/v53n4/art02fig1b.jpg" width="203" height="249" align="center"></a></p> 	<font FACE="Verdana" SIZE="2" COLOR="#231f20"> 	    
<p><b>Fig. 1b. </b>Cromosoma 3 Con región metilada a nivel de 3q12q13  	(flecha).</p> 	</font> 	    <p align="center"><a name="fig1c"> 	<img border="0" src="/img/fbpe/ic/v53n4/art02fig1c.jpg" width="299" height="224" align="center"></a></p> 	<font FACE="Verdana" SIZE="2" COLOR="#231f20"> 	    
<p><b>Fig. 1c.</b> Cromosoma 8 con región metilada en 8p12q13 (flecha).</font></div>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>DISCUSI&#211;N&nbsp;</B></FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Las anomal&#237;as cromos&#243;micas en c&#225;ncer de mama han sido encontradas en m&#225;s  de un 80% de los casos y ha constituido uno de los hallazgos importantes  reportados con valor pron&#243;stico en esta patolog&#237;a (26-27). En este estudio  se encontr&#243; que solo el 38,33% de las pacientes present&#243; alg&#250;n tipo de  anomal&#237;a cromos&#243;mica. Este hecho se debe a que la muestra utilizada para  este trabajo fue sangre perif&#233;rica y no tejido tumoral, pudiendo corresponder  estas anomal&#237;as a c&#233;lulas tumorales circulantes en sangre perif&#233;rica, relacionadas  con la presencia de micrometastasis (28). Por otro lado, una abrumadora  cantidad de evidencias recientemente publicadas han demostrado que la hipermetilaci&#243;n  de islas CpG est&#225; implicada en la perdida de expresi&#243;n de una gran cantidad  de genes responsables de la aparici&#243;n de c&#225;nceres (29-33). Esta metilaci&#243;n  involucra principalmente a los promotores de genes relacionados con procesos  cancerosos, lo cual ofrece ventajas cuando son comparados con otras alteraciones  del DNA; estos eventos podr&#237;an proveer marcadores biol&#243;gicos ideales para  el diagn&#243;stico molecular y detecci&#243;n temprana del c&#225;ncer (1). Por otro  lado, la utilizaci&#243;n reciente de productos demetilantes en estos pacientes  podr&#237;a convertirse en la terapia m&#225;s acertada y efectiva en estos estados  de hipermetilaci&#243;n de promotores de genes implicados en c&#225;ncer (34-35).  La utilizaci&#243;n de enzimas de restricci&#243;n para la identificaci&#243;n de zonas  metiladas comenz&#243; a utilizarse en la d&#233;cada de los 90. Mediante esa t&#233;cnica  la combinaci&#243;n del tratamiento con bisulfito y amplificaci&#243;n con PCR, resultaba  en la conversi&#243;n de residuos de citosina no metilados a timina y residuos  de citosina metilados a citosina. Esta secuencia de metilaci&#243;n lleva a  la creaci&#243;n de nuevos sitios de restricci&#243;n enzim&#225;tica; en estos casos  se utiliz&#243; la enzima <I>Bst</I>UI (CGCG) (36, 37).&nbsp; </FONT></P> </MULTICOL> <MULTICOL GUTTER="31" COLS="2">     ]]></body>
<body><![CDATA[<P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> En este estudio se encontraron 22 regiones te&#241;idas anormalmente luego de  la digesti&#243;n con la enzima <I>ALU I</I>; con excepci&#243;n de uno de los casos, todos  coincidieron con genes responsables de la aparici&#243;n de c&#225;ncer de mama.  Ejemplo de ello lo constituye la regi&#243;n heterocrom&#225;tica presente en el  cromosoma 2, en el cual se han descrito una gran cantidad de genes asociados  a algunas enfermedades importantes y con funciones muy espec&#237;ficas. En  el encontramos genes para la anemia de Fanconi en el locus (2q16.1) o la  enfermedad de Parkinson en el locus (2q22-q23); sin embargo, en la regi&#243;n  del cromosoma 2 (2q23-q32.2) en la que obtuvimos metilaci&#243;n, actualmente,  seg&#250;n la base de datos del Genbank (23), se ha encontrado un gen asociado  con el c&#225;ncer de mama que pudieran estar siendo afectado por dicha metilaci&#243;n  (38). El gen ATF-2 o Factor de Transcripci&#243;n Activador 2 presente en el  loci (2q31.1) es normalmente activado en respuesta a se&#241;ales que convergen  en la prote&#237;na-quinasa de estr&#233;s p38 y JNK. Este gen tiene diversos efectos  en el crecimiento y progresi&#243;n de tumores en mam&#237;feros. (39) La ubicaci&#243;n  del gen ATF-2 coincide con la regi&#243;n oscura que consideramos presenta metilaci&#243;n.&nbsp; </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Otra de las zonas marcadas fue en el cromosoma 6 en la regi&#243;n (6q15-q25.3);  en la regi&#243;n (6q25.1) se encuentra el gen <I>ER</I>a (<I>Estrogen Receptor</I> a), el  cual se ha asociado en un 60-70% con el c&#225;ncer de mama cuando se encuentra  metilado, aun cuando su promotor no se encuentra en la isla CpG existe  una buena correlaci&#243;n con la p&#233;rdida de expresi&#243;n del <I>ER</I>a, por lo cual  podr&#237;amos sugerir que en este caso particular existe una relaci&#243;n entre  la regi&#243;n marcada, gen ERa afectado por la metilaci&#243;n y la presencia del  c&#225;ncer de mama en esta paciente. Teniendo en cuenta que el desarrollo y  proliferaci&#243;n celular est&#225;n reguladas en la mama normal por hormonas esteroideas  (como estr&#243;genos y progesterona) a trav&#233;s de receptores espec&#237;ficos en  los epitelios ductales y lobulillares, no sorprende que muchos tumores,  en especial los de c&#225;ncer de mama, mantengan caracter&#237;sticas de dependencia  hormonal. Sin embargo, a medida que los tumores progresan adquieren una  independencia del aporte de estas hormonas de modo que se alteran los mecanismos  de control del crecimiento. Muchos tumores avanzados pierden la expresi&#243;n  de los receptores de estr&#243;genos <I>ER</I> por la p&#233;rdida de heterocigosidad de  la regi&#243;n (6q25). La p&#233;rdida de expresi&#243;n de receptores hormonales, o su  alteraci&#243;n, se considera de mal pron&#243;stico en el c&#225;ncer de mama (11, 12,  40-42). En el presente estudio se encontraron 5 pacientes con probables  &#225;reas metiladas que involucran este gen (<a href="#tab2">Tabla II</a>). As&#237; mismo, es importante  se&#241;alar que a nivel de la regi&#243;n 1q24-q32, se ha localizado genes asociados  con diferentes tipos de c&#225;ncer entre los cuales se encuentra el c&#225;ncer  de mama. Menci&#243;n especial merece la regi&#243;n 1q32, donde han sido localizados  genes relacionados con la superfamilia de los genes RAS y genes responsables  de otros tipos de c&#225;ncer como los gliomas malignos. (43). En cuanto al  c&#225;ncer de mama se han relacionado alrededor de 11 tipos de genes localizados  en el cromosoma 1 relacionados con progresi&#243;n de la enfermedad, principalmente  en c&#225;nceres de mama grado III (44-46).&nbsp; </FONT></P> </MULTICOL>     <P align="justify">  </P>     <p align="justify"><font face="Verdana" size="2">&nbsp;</font><MULTICOL GUTTER="31" COLS="2"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana">Por otro lado, Letessier y col. en el 2006 (47), reportaron la asociaci&#243;n  de genes localizados en los cromosomas 8p12, 8q24, 11q13, 12p13, 17q12,  y 20q13 con impacto pron&#243;stico en c&#225;ncer de mama. M&#225;s recientemente los  cambios de metilaci&#243;n en el DNA han sido asociados con progresi&#243;n de la  enfermedad (48). En este trabajo se encontraron zonas hipermetiladas en  las regiones 8p12 (<a href="#fig1b">Fig. 1b</a>) y 17q12. Recientemente se han encontrado nuevos  genes metilados relacionados con c&#225;ncer de mama, EMELIN 2, (18p11.3), SALL  1 (16q12.1), DBCI (9q32-q33), FBLN2 (3p25.1), CIDE, (18p11.21) (41). En  esta investigaci&#243;n se encontraron dos casos con &#225;rea metilada en la regi&#243;n  16q12-q13 y un caso con &#225;rea metilada en la regi&#243;n 18p11.-p15 (49).&nbsp; </FONT></p>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> En base a estos hallazgos se asume que el bandeo cromos&#243;mico con la enzima  <I>ALU I</I> podr&#237;a resultar una herramienta valiosa para la evaluaci&#243;n inicial  de los pacientes con c&#225;ncer de mama, ya que permitir&#237;a visualizar de una  manera general el genoma del individuo, observar las regiones metiladas  que se presenten y dirigir la confirmaci&#243;n molecular de forma m&#225;s espec&#237;fica.  En un futuro permitir&#237;a dirigir terapias espec&#237;ficas a cada uno de los  pacientes. Se sugiere la confirmaci&#243;n molecular de estas &#225;reas metiladas  que permitan corroborar estos hallazgos y, de esta manera, pueda ser utilizada  como una t&#233;cnica rutinaria en estos pacientes. Por otro lado, la utilizaci&#243;n  reciente de productos hipometilantes en la terap&#233;utica de pacientes con  c&#225;ncer, permitir&#225; comprobar si son efectivos para eliminar la situaci&#243;n  de hipermetilaci&#243;n de genes promotores relacionados con c&#225;ncer.&nbsp; </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>AGRADECIMIENTOS&nbsp;</B> </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> Proyecto Financiado por el CONDES-LUZ N&#186; CC-1036-08.&nbsp; </FONT></P>     <P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> <B>REFERENCIAS&nbsp;</B> </FONT></P>     <!-- ref --><P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> 1.&nbsp;<B>Buyru N, Altinisik J, Ozdemir J, Demokan S, Dalay N.</B> Cancer Invest 2009;  27:307-312.&nbsp; </FONT>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=1202961&pid=S0535-5133201200040000200001&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --><!-- ref --><P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> 2.&nbsp;<B>Ministerio Del Poder Popular Para La Salud (2007). </B>Anuario de Epidemiolog&#237;a  de 2006; Caracas-Venezuela.&nbsp; </FONT>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=1202962&pid=S0535-5133201200040000200002&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --><!-- ref --><P ALIGN="justify"><FONT COLOR="#1f1a17" SIZE="2" FACE="Verdana"> 3.&nbsp;<B>Das PM. 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