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	<title>dnawellnessinfo.com&#187; Lung Cancer</title>
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		<title>Scientists use DNA sequencing to attack lung cancer</title>
		<link>http://dnawellnessinfo.com/dna-medicine/scientists-dna-sequencing-attack-lung-cancer/</link>
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		<pubDate>Thu, 17 Dec 2009 00:25:48 +0000</pubDate>
		<dc:creator>DNAWellness</dc:creator>
				<category><![CDATA[DNA Medicine]]></category>
		<category><![CDATA[DNA Science]]></category>
		<category><![CDATA[DNA]]></category>
		<category><![CDATA[DNA Sequencing]]></category>
		<category><![CDATA[Lung Cancer]]></category>

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		<description><![CDATA[DALLAS &#8212; Dec. 16, 2009 &#8212; Aided by next-generation DNA sequencing technology, an international team of researchers has gained insights into how more than 60 carcinogens associated with cigarette smoke bind to and chemically modify human DNA, ultimately leading to cancer-causing genetic mutations. In a new study available online and in a future issue of [...]<p><a href="http://dnawellnessinfo.com/dna-medicine/scientists-dna-sequencing-attack-lung-cancer/">Scientists use DNA sequencing to attack lung cancer</a> is a post from: <a href="http://dnawellnessinfo.com">dnawellnessinfo.com</a></p>
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<p>DALLAS &#8212; Dec. 16, 2009 &#8212; Aided by next-generation DNA sequencing  technology, an international team of researchers has gained insights into how  more than 60 carcinogens associated with cigarette smoke bind to and chemically  modify human DNA, ultimately leading to cancer-causing genetic mutations.</p>
<p>In a new study available online and in a future issue of the journal  <em>Nature,</em> lung-cancer experts in the Harold C. Simmons Comprehensive Cancer  Center at UT Southwestern Medical Center worked with scientists from the Cancer  Genome Project in the United Kingdom to determine the entire genetic sequence of  cancer cells from a patient with small-cell lung cancer (SCLC). They then  compared those results with normal DNA isolated from the same patient.</p>
<p>Using new DNA sequencing technology called &#8220;massively parallel sequencing,&#8221;  the researchers searched the DNA sequences for differences between tumor and  normal cells. They found more than 23,000 mutations that the tumor cells had  acquired and also discovered a new gene involved in lung cancer named CHD7.</p>
<p>The number of mutations from the study suggests that a person may develop one  mutation for every 15 cigarettes smoked, said Dr. John Minna, director of the  Nancy B. and Jake L. Hamon Center for Therapeutic Oncology Research at UT  Southwestern and one of the authors of the new study.</p>
<p>The researchers said the findings illustrate the power of advanced technology  to provide important new information about human cancer, including the effect of  cancer-causing chemicals on the body and the identification of potential new  therapeutic targets.</p>
<p>&#8220;Cancer is driven by acquired mutations in genes, and we are at a point where  it soon will be possible to actually know every mutation in the tumors of each  of our patients,&#8221; Dr. Minna said.</p>
<p>&#8220;The key will be to use this information to find new ways to help prevent  cancers, diagnose them earlier and to select treatments that might be specific  for each patient&#8217;s tumor. While these findings are the first step, they have  lighted our path to clearly point us in the right direction. In addition, they  provide the first detailed analysis of a human cancer &#8212; lung cancer ? that is  closely linked to smoking.&#8221;</p>
<p>Dr. Minna and Dr. Adi Gazdar, professor of pathology in the Hamon Center at  UT Southwestern, provided the SCLC cells and normal cells for the research. Dr.  Minna, who also directs the W.A. &#8220;Tex&#8221; and Deborah Moncrief Jr. Center for  Cancer Genetics, and Dr. Gazdar have developed one of the most extensive  collections of lung-cancer cell lines, which are used by researchers worldwide  in studies of the disease. The SCLC and normal cells used in the study are  designated NCI-H209 and NCI-BL209, respectively, and were established from a  patient Drs. Minna and Gazdar treated 30 years ago.</p>
<p>When the researchers analyzed the 23,000 mutations, they found distinctive  patterns associated with the cocktail of carcinogens present in cigarette smoke.  The DNA sequence of the cancer cells also revealed that the cells had attempted  to repair their smoke-damaged DNA using two mechanisms, but the cells were only  partially successful.</p>
<p>Cigarette smoke deposits hundreds of chemicals into the airways and lungs.  The longer one smokes and the more cigarettes smoked each day, the higher the  risk of developing lung cancer and mutations.</p>
<p>&#8220;By applying the same approach to other cancers not associated with cigarette  smoking, including the very large group of people who develop lung cancer but  have never smoked, it may be possible to discern which carcinogens play a role  in those other cancers as well,&#8221; Dr. Gazdar said.</p>
<p>Dr. Minna added that the research methods used to analyze the cancer cells  represented a technological tour de force.</p>
<p>&#8220;The data demonstrate the power of whole-genome sequencing to untangle the  complex mutational signatures found in cancers induced by cigarette smoke,&#8221; Dr.  Minna said. &#8220;In addition, the protein product of the CHD7 gene now becomes a new  marker for early diagnosis and also for potentially targeted therapy.&#8221;</p>
<p>Lung cancer is the leading cause of cancer-related deaths worldwide,  developing in more than a million patients annually. People who smoke are 10 to  20 times more likely to get lung cancer or die from lung cancer than people who  do not smoke. SCLC represents 15 percent of these cases and is associated with  early metastasis, relapse after initial response to chemotherapy and less than a  two-year survival rate.</p>
<p>The study was supported by grants from the Wellcome Trust, the Human  Frontiers Science Program and the National Cancer Institute.</p>
<p>Visit <a rel="nofollow" href="http://www.utsouthwestern.org/cancercenter" target="_blank">www.utsouthwestern.org/cancercenter</a> to learn more about UT  Southwestern&#8217;s clinical services in cancer.</p>
<p>This news release is available on our World Wide Web home page at <a rel="nofollow" href="http://www.utsouthwestern.edu/home/news/index.html" target="_blank">http://www.utsouthwestern.edu/home/news/index.html</a></p>
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<p>DNAWellnessinfo.com Resource:  <a title="scienceblog.com" href="http://www.scienceblog.com/cms/scientists-use-dna-sequencing-attack-lung-cancer-28528.html" target="_blank">http://www.scienceblog.com/cms/scientists-use-dna-sequencing-attack-lung-cancer-28528.html</a></div>
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