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	<title>Symptom Advice .com &#187; prochazka</title>
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		<title>Biological computer destroys cancer cells</title>
		<link>http://symptomadvice.com/biological-computer-destroys-cancer-cells/</link>
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		<pubDate>Sun, 11 Sep 2011 13:51:29 +0000</pubDate>
		<dc:creator>Symptom Advice</dc:creator>
				<category><![CDATA[cervical symptoms]]></category>
		<category><![CDATA[eth zurich]]></category>
		<category><![CDATA[molecules]]></category>
		<category><![CDATA[prochazka]]></category>

		<guid isPermaLink="false">http://symptomadvice.com/biological-computer-destroys-cancer-cells/</guid>
		<description><![CDATA[The wiring diagram of the cellular computer: &#097;&#108;&#108; &#102;&#105;&#118;&#101; factors must &#098;&#101; &#105;&#110; their &#099;&#111;&#114;&#114;&#101;&#099;&#116; state &#105;&#110; order &#116;&#111; trigger cell death. (Illustration: Benenson Y. &#38; R. Weiss) Researchers led &#098;&#121; ETH professor Yaakov Benenson &#097;&#110;&#100; MIT professor Ron Weiss have successfully incorporated &#097; diagnostic biological &#8220;computer&#8221; network &#105;&#110; human cells. &#116;&#104;&#105;&#115; network recognizes &#099;&#101;&#114;&#116;&#097;&#105;&#110; [...]]]></description>
			<content:encoded><![CDATA[<p></p><p><img src="" style="float:left;clear:both;margin:0 15px 15px 0" />
<p>The wiring diagram of the cellular computer: &#097;&#108;&#108; &#102;&#105;&#118;&#101; factors must &#098;&#101; &#105;&#110; their &#099;&#111;&#114;&#114;&#101;&#099;&#116; state &#105;&#110; order &#116;&#111; trigger cell death. (Illustration: Benenson Y. &amp; R. Weiss)</p>
<p> <strong>Researchers led &#098;&#121; ETH professor Yaakov Benenson &#097;&#110;&#100; MIT professor Ron Weiss have successfully incorporated &#097; diagnostic biological &#8220;computer&#8221; network &#105;&#110; human cells. &#116;&#104;&#105;&#115; network recognizes &#099;&#101;&#114;&#116;&#097;&#105;&#110; cancer cells &#117;&#115;&#105;&#110;&#103; logic combinations of &#102;&#105;&#118;&#101; cancer-specific molecular factors, triggering cancer cells destruction.</strong> </p>
<p>Yaakov (Kobi) Benenson, Professor of Synthetic Biology at ETH Zurich, &#104;&#097;&#115; spent &#097; large part of &#104;&#105;&#115; career developing biological computers &#116;&#104;&#097;&#116; operate &#105;&#110; living cells. &#104;&#105;&#115; goal &#105;&#115; &#116;&#111; construct biocomputers &#116;&#104;&#097;&#116; detect molecules carrying important information &#097;&#098;&#111;&#117;&#116; cell wellbeing &#097;&#110;&#100; process &#116;&#104;&#105;&#115; information &#116;&#111; direct &#097;&#112;&#112;&#114;&#111;&#112;&#114;&#105;&#097;&#116;&#101; therapeutic response &#105;&#102; the cell &#105;&#115; &#102;&#111;&#117;&#110;&#100; &#116;&#111; &#098;&#101; abnormal. </p>
<p>Now, together with MIT professor Ron Weiss &#097;&#110;&#100; &#097; team of scientists including post-doctoral scholars Zhen Xie &#097;&#110;&#100; Liliana Wroblewska, &#097;&#110;&#100; &#097; doctoral student Laura Prochazka, &#116;&#104;&#101;&#121; &#109;&#097;&#100;&#101; &#097; major step &#116;&#111;&#119;&#097;&#114;&#100;&#115; reaching &#116;&#104;&#105;&#115; goal. &#105;&#110; &#097; study &#116;&#104;&#097;&#116; &#104;&#097;&#115; &#106;&#117;&#115;&#116; been published &#105;&#110; <i>Science</i>, &#116;&#104;&#101;&#121; &#100;&#101;&#115;&#099;&#114;&#105;&#098;&#101; &#097; multi-gene synthetic &#8220;circuit&#8221; whose task &#105;&#115; &#116;&#111; distinguish &#098;&#101;&#116;&#119;&#101;&#101;&#110; cancer &#097;&#110;&#100; healthy cells &#097;&#110;&#100; subsequently target cancer cells &#102;&#111;&#114; destruction. &#116;&#104;&#105;&#115; circuit works &#098;&#121; sampling &#097;&#110;&#100; integrating &#102;&#105;&#118;&#101; intracellular cancer-specific molecular factors &#097;&#110;&#100; their concentration. The circuit makes &#097; positive identification &#111;&#110;&#108;&#121; &#119;&#104;&#101;&#110; &#097;&#108;&#108; factors &#097;&#114;&#101; present &#105;&#110; the cell, resulting &#105;&#110; &#097; highly precise cancer detection. Researchers hope &#116;&#104;&#097;&#116; &#105;&#116; can serve &#097; basis &#102;&#111;&#114; very specific anti-cancer treatments.</p>
<p>The scientists tested the gene network &#105;&#110; &#116;&#119;&#111; types of cultured human cells: cervical cancer cells, called HeLa cells, &#097;&#110;&#100; normal cells. &#119;&#104;&#101;&#110; the genetic bio-computer was introduced &#105;&#110;&#116;&#111; the different cell types, &#111;&#110;&#108;&#121; HeLa cells, &#098;&#117;&#116; not the healthy ones, were &#100;&#101;&#115;&#116;&#114;&#111;&#121;&#101;&#100;.</p>
<p> Extensive groundwork was required &#116;&#111; achieve &#116;&#104;&#105;&#115; result. Benenson &#097;&#110;&#100; &#104;&#105;&#115; team had &#116;&#111; &#102;&#105;&#114;&#115;&#116; &#102;&#105;&#110;&#100; &#111;&#117;&#116; &#119;&#104;&#105;&#099;&#104; combinations of molecules &#097;&#114;&#101; unique &#116;&#111; HeLa cells. &#116;&#104;&#101;&#121; looked among the molecules &#116;&#104;&#097;&#116; belong &#116;&#111; the class of compounds known &#097;&#115; microRNA (miRNA) &#097;&#110;&#100; identified one miRNA combination, or profile, &#116;&#104;&#097;&#116; was typical of &#097; HeLa cell &#098;&#117;&#116; not any other healthy cell type.</p>
<p>Finding the profile was &#097; challenging task. &#105;&#110; the human body &#116;&#104;&#101;&#114;&#101; &#097;&#114;&#101; &#097;&#098;&#111;&#117;&#116; 250 different healthy cell types. &#105;&#110; addition, &#116;&#104;&#101;&#114;&#101; &#097;&#114;&#101; numerous variants of cancer cells, of &#119;&#104;&#105;&#099;&#104; hundreds can &#098;&#101; grown &#105;&#110; the laboratory. &#115;&#116;&#105;&#108;&#108; greater &#105;&#115; the diversity of miRNA: &#098;&#101;&#116;&#119;&#101;&#101;&#110; 500 &#116;&#111; 1000 different species have been described &#105;&#110; human cells. &#8220;Each cell type, healthy or diseased, &#104;&#097;&#115; different miRNA molecules switched on or &#111;&#102;&#102;,&#8221; &#115;&#097;&#121;&#115; Benenson. </p>
<p>Creating &#097; miRNA &#8220;profile&#8221; &#105;&#115; not &#117;&#110;&#108;&#105;&#107;&#101; finding &#097; set of symptoms &#116;&#111; reliably diagnose &#097; disease: &#8220;One symptom alone, such &#097;&#115; fever, can &#110;&#101;&#118;&#101;&#114; characterize &#097; disease. The &#109;&#111;&#114;&#101; information &#105;&#115; &#097;&#118;&#097;&#105;&#108;&#097;&#098;&#108;&#101; &#116;&#111; &#097; doctor, the &#109;&#111;&#114;&#101; reliable becomes &#104;&#105;&#115; diagnosis,&#8221; explains the professor, who came &#116;&#111; ETH from Harvard University &#097; year &#097;&#110;&#100; &#097; half &#097;&#103;&#111;. The researchers have &#116;&#104;&#101;&#114;&#101;&#102;&#111;&#114;&#101; sought &#097;&#102;&#116;&#101;&#114; &#115;&#101;&#118;&#101;&#114;&#097;&#108; factors &#116;&#104;&#097;&#116; reliably distinguish HeLa cancer cells from &#097;&#108;&#108; other healthy cells. &#105;&#116; turned &#111;&#117;&#116; &#116;&#104;&#097;&#116; &#097; combination of &#111;&#110;&#108;&#121; &#102;&#105;&#118;&#101; specific miRNAs, some present at high levels &#097;&#110;&#100; some present at very low levels, &#105;&#115; enough &#116;&#111; identify &#097; HeLa cell among &#097;&#108;&#108; healthy cells.</p>
<p>&#8220;The miRNA factors &#097;&#114;&#101; subjected &#116;&#111; Boolean calculations &#105;&#110; the very cell &#105;&#110; &#119;&#104;&#105;&#099;&#104; &#116;&#104;&#101;&#121; &#097;&#114;&#101; detected. The biocomputer combines the factors &#117;&#115;&#105;&#110;&#103; logic operations such &#097;&#115; AND &#097;&#110;&#100; NOT, &#097;&#110;&#100; &#111;&#110;&#108;&#121; generates the required outcome, &#110;&#097;&#109;&#101;&#108;&#121; cell death, &#119;&#104;&#101;&#110; the entire calculation with &#097;&#108;&#108; the factors results &#105;&#110; &#097; logical TRUE value,&#8221; &#115;&#097;&#121;&#115; Benenson. Indeed, the researchers were &#097;&#098;&#108;&#101; &#116;&#111; demonstrate &#116;&#104;&#097;&#116; the network works very reliably &#105;&#110; living cells, correctly combining &#097;&#108;&#108; the intracellular factors &#097;&#110;&#100; giving the right diagnosis. &#116;&#104;&#105;&#115;, according &#116;&#111; Benenson, represents &#097; significant achievement &#105;&#110; the field.</p>
<p>In &#097; &#110;&#101;&#120;&#116; step, the team &#119;&#097;&#110;&#116;&#115; &#116;&#111; test &#116;&#104;&#105;&#115; cellular computation &#105;&#110; an &#097;&#112;&#112;&#114;&#111;&#112;&#114;&#105;&#097;&#116;&#101; animal model, with the aim &#116;&#111; build diagnostic &#097;&#110;&#100; therapeutic tools &#105;&#110; the future. &#116;&#104;&#105;&#115; &#109;&#097;&#121; sound &#108;&#105;&#107;&#101; science fiction, &#098;&#117;&#116; Benenson believes &#116;&#104;&#097;&#116; &#116;&#104;&#105;&#115; &#105;&#115; feasible. However, &#116;&#104;&#101;&#114;&#101; &#097;&#114;&#101; &#115;&#116;&#105;&#108;&#108; difficult problems &#116;&#111; solve, &#102;&#111;&#114; &#101;&#120;&#097;&#109;&#112;&#108;&#101; the delivery of foreign genes &#105;&#110;&#116;&#111; &#097; cell efficiently &#097;&#110;&#100; safely. Such DNA delivery &#105;&#115; currently quite challenging. &#105;&#110; particular &#116;&#104;&#105;&#115; approach requires temporary &#114;&#097;&#116;&#104;&#101;&#114; &#116;&#104;&#097;&#110; permanent introduction of foreign genes &#105;&#110;&#116;&#111; the cells, &#098;&#117;&#116; the currently &#097;&#118;&#097;&#105;&#108;&#097;&#098;&#108;&#101; methods, both viral &#097;&#110;&#100; chemical, &#097;&#114;&#101; not fully developed &#097;&#110;&#100; &#110;&#101;&#101;&#100; &#116;&#111; &#098;&#101; improved.</p>
<p>&#8220;We &#097;&#114;&#101; &#115;&#116;&#105;&#108;&#108; very far from &#097; fully functional treatment method &#102;&#111;&#114; humans. &#116;&#104;&#105;&#115; work, however, &#105;&#115; an important &#102;&#105;&#114;&#115;&#116; step &#116;&#104;&#097;&#116; demonstrates feasibility of such &#097; selective diagnostic method at &#097; single cell level,&#8221; said Benenson.</p>
<p><b> &#109;&#111;&#114;&#101; information:</b> &#8220;Multi-Input RNAi-Based Logic Circuit &#102;&#111;&#114; Identification of Specific Cancer Cells,&#8221; by Z. Xie &#101;&#116; al. <i>Science</i> (2011). dx.doi.org/ &hellip; ence.1205527</p>
<p>Provided &#098;&#121; Swiss Federal Institute of Technology</p></p>
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