<?xml version="1.0" encoding="ISO-8859-1"?><cms:container xmlns:cms="http://edoc.hu-berlin.de/diml/module/cms"><cms:document><cms:meta><cms:entry ref="front" type="front"/><cms:entry type="title">Proteom-Analyse von chemo- und thermoresistenten Magen- und Pankreaskarzinomzellinien zur Untersuchung von thermoresistenzassoziierten Phänomenen und Interaktionen mit Chemoresistenz</cms:entry><cms:entry type="author">Julia  Poland
			</cms:entry><cms:entry id="chapter1" part="chapter1" ref="chapter1" type="chapter">1.</cms:entry><cms:entry id="N100B2" part="chapter1" ref="N100B2" type="pagenumber">1</cms:entry><cms:entry id="N100B7" part="chapter1" ref="N100B7" type="section">1.1.</cms:entry><cms:entry id="N100C3" part="chapter1" ref="N100C3" type="section">1.2.</cms:entry><cms:entry id="N100D7" part="chapter1" ref="N100D7" type="pagenumber">2</cms:entry><cms:entry id="N100E2" part="chapter1" ref="N100E2" type="subsection">1.2.1.</cms:entry><cms:entry id="N10128" part="chapter1" ref="N10128" type="subsection">1.2.2.</cms:entry><cms:entry id="N10135" part="chapter1" ref="N10135" type="pagenumber">3</cms:entry><cms:entry id="N10142" part="chapter1" ref="N10142" type="block">1.2.2.1.</cms:entry><cms:entry id="N10168" part="chapter1" ref="N10168" type="block">1.2.2.2.</cms:entry><cms:entry id="N1017C" part="chapter1" ref="N1017C" type="pagenumber">4</cms:entry><cms:entry id="N101A5" part="chapter1" ref="N101A5" type="section">1.3.</cms:entry><cms:entry id="N101C2" part="chapter1" ref="N101C2" type="subsection">1.3.1.</cms:entry><cms:entry id="N101C9" part="chapter1" ref="N101C9" type="pagenumber">5</cms:entry><cms:entry id="N101EB" part="chapter1" ref="N101EB" type="subsection">1.3.2.</cms:entry><cms:entry id="N101F9" part="chapter1" ref="N101F9" type="pagenumber">6</cms:entry><cms:entry id="N10207" part="chapter1" ref="N10207" type="table"/><cms:entry id="N10312" part="chapter1" ref="N10312" type="subsection">1.3.3.</cms:entry><cms:entry id="N10332" part="chapter1" ref="N10332" type="pagenumber">7</cms:entry><cms:entry id="N10352" part="chapter1" ref="N10352" type="section">1.4.</cms:entry><cms:entry id="N10363" part="chapter1" ref="N10363" type="pagenumber">8</cms:entry><cms:entry id="N1039E" part="chapter1" ref="N1039E" type="pagenumber">9</cms:entry><cms:entry id="N103A4" part="chapter1" ref="N103A4" type="section">1.5.</cms:entry><cms:entry id="N103AC" part="chapter1" ref="N103AC" type="subsection">1.5.1.</cms:entry><cms:entry id="N103BF" part="chapter1" ref="N103BF" type="mm">176#175</cms:entry><cms:entry id="N103CE" part="chapter1" ref="N103CE" type="subsection">1.5.2.</cms:entry><cms:entry id="N103E4" part="chapter1" ref="N103E4" type="pagenumber">10</cms:entry><cms:entry id="N103E8" part="chapter1" ref="N103E8" type="mm">318#222</cms:entry><cms:entry id="N103F7" part="chapter1" ref="N103F7" type="subsection">1.5.3.</cms:entry><cms:entry id="N10413" part="chapter1" ref="N10413" type="pagenumber">11</cms:entry><cms:entry id="N1041E" part="chapter1" ref="N1041E" type="section">1.6.</cms:entry><cms:entry id="N10426" part="chapter1" ref="N10426" type="subsection">1.6.1.</cms:entry><cms:entry id="N10452" part="chapter1" ref="N10452" type="pagenumber">12</cms:entry><cms:entry id="N10485" part="chapter1" ref="N10485" type="subsection">1.6.2.</cms:entry><cms:entry id="N104B1" part="chapter1" ref="N104B1" type="pagenumber">13</cms:entry><cms:entry id="N104F0" part="chapter1" ref="N104F0" type="section">1.7.</cms:entry><cms:entry id="N104F4" part="chapter1" ref="N104F4" type="pagenumber">15</cms:entry><cms:entry id="chapter2" part="chapter2" ref="chapter2" type="chapter">2.</cms:entry><cms:entry id="N1052F" part="chapter2" ref="N1052F" type="pagenumber">16</cms:entry><cms:entry id="N10534" part="chapter2" ref="N10534" type="section">2.1.</cms:entry><cms:entry id="N1053C" part="chapter2" ref="N1053C" type="subsection">2.1.1.</cms:entry><cms:entry id="N10543" part="chapter2" ref="N10543" type="table"/><cms:entry id="N109D9" part="chapter2" ref="N109D9" type="pagenumber">17</cms:entry><cms:entry id="N10B23" part="chapter2" ref="N10B23" type="subsection">2.1.2.</cms:entry><cms:entry id="N10B2A" part="chapter2" ref="N10B2A" type="table"/><cms:entry id="N10D46" part="chapter2" ref="N10D46" type="subsection">2.1.3.</cms:entry><cms:entry id="N10D4A" part="chapter2" ref="N10D4A" type="pagenumber">18</cms:entry><cms:entry id="N10D54" part="chapter2" ref="N10D54" type="table"/><cms:entry id="N10F26" part="chapter2" ref="N10F26" type="block">2.1.3.1.</cms:entry><cms:entry id="N10F47" part="chapter2" ref="N10F47" type="section">2.2.</cms:entry><cms:entry id="N10F4B" part="chapter2" ref="N10F4B" type="pagenumber">19</cms:entry><cms:entry id="N10F53" part="chapter2" ref="N10F53" type="subsection">2.2.1.</cms:entry><cms:entry id="N10F58" part="chapter2" ref="N10F58" type="block">2.2.1.1.</cms:entry><cms:entry id="N10F65" part="chapter2" ref="N10F65" type="block">2.2.1.2.</cms:entry><cms:entry id="N10F73" part="chapter2" ref="N10F73" type="table"/><cms:entry id="N1100E" part="chapter2" ref="N1100E" type="table"/><cms:entry id="N110A9" part="chapter2" ref="N110A9" type="pagenumber">20</cms:entry><cms:entry id="N110AF" part="chapter2" ref="N110AF" type="block">2.2.1.3.</cms:entry><cms:entry id="N110D2" part="chapter2" ref="N110D2" type="table"/><cms:entry id="N111EB" part="chapter2" ref="N111EB" type="pagenumber">21</cms:entry><cms:entry id="N111FF" part="chapter2" ref="N111FF" type="table"/><cms:entry id="N11334" part="chapter2" ref="N11334" type="block">2.2.1.4.</cms:entry><cms:entry id="N1133E" part="chapter2" ref="N1133E" type="pagenumber">22</cms:entry><cms:entry id="N11347" part="chapter2" ref="N11347" type="block">2.2.1.5.</cms:entry><cms:entry id="N11353" part="chapter2" ref="N11353" type="block">2.2.1.6.</cms:entry><cms:entry id="N11364" part="chapter2" ref="N11364" type="table"/><cms:entry id="N11382" part="chapter2" ref="N11382" type="mm"/><cms:entry id="N1138E" part="chapter2" ref="N1138E" type="pagenumber">23</cms:entry><cms:entry id="N11395" part="chapter2" ref="N11395" type="table"/><cms:entry id="N114B3" part="chapter2" ref="N114B3" type="block">2.2.1.7.</cms:entry><cms:entry id="N114C0" part="chapter2" ref="N114C0" type="table"/><cms:entry id="N11572" part="chapter2" ref="N11572" type="pagenumber">24</cms:entry><cms:entry id="N11578" part="chapter2" ref="N11578" type="block">2.2.1.8.</cms:entry><cms:entry id="N115E3" part="chapter2" ref="N115E3" type="pagenumber">25</cms:entry><cms:entry id="N11652" part="chapter2" ref="N11652" type="pagenumber">26</cms:entry><cms:entry id="N1165D" part="chapter2" ref="N1165D" type="subsection">2.2.2.</cms:entry><cms:entry id="N1166B" part="chapter2" ref="N1166B" type="block">2.2.2.1.</cms:entry><cms:entry id="N11694" part="chapter2" ref="N11694" type="block">2.2.2.2.</cms:entry><cms:entry id="N11698" part="chapter2" ref="N11698" type="pagenumber">27</cms:entry><cms:entry id="N116C0" part="chapter2" ref="N116C0" type="pagenumber">28</cms:entry><cms:entry id="N116C6" part="chapter2" ref="N116C6" type="block">2.2.2.3.</cms:entry><cms:entry id="N116D9" part="chapter2" ref="N116D9" type="pagenumber">29</cms:entry><cms:entry id="N11704" part="chapter2" ref="N11704" type="pagenumber">30</cms:entry><cms:entry id="N1170E" part="chapter2" ref="N1170E" type="mm">530#302</cms:entry><cms:entry id="N11720" part="chapter2" ref="N11720" type="block">2.2.2.4.</cms:entry><cms:entry id="N1173F" part="chapter2" ref="N1173F" type="pagenumber">31</cms:entry><cms:entry id="N11767" part="chapter2" ref="N11767" type="subsection">2.2.3.</cms:entry><cms:entry id="N1178C" part="chapter2" ref="N1178C" type="subsection">2.2.4.</cms:entry><cms:entry id="N11790" part="chapter2" ref="N11790" type="pagenumber">32</cms:entry><cms:entry id="N11797" part="chapter2" ref="N11797" type="mm">709#430</cms:entry><cms:entry id="chapter3" part="chapter3" ref="chapter3" type="chapter">3.</cms:entry><cms:entry id="N117B8" part="chapter3" ref="N117B8" type="pagenumber">33</cms:entry><cms:entry id="N117BD" part="chapter3" ref="N117BD" type="section">3.1.</cms:entry><cms:entry id="N117CA" part="chapter3" ref="N117CA" type="mm">291#293</cms:entry><cms:entry id="N117DE" part="chapter3" ref="N117DE" type="pagenumber">34</cms:entry><cms:entry id="N117E9" part="chapter3" ref="N117E9" type="mm"/><cms:entry id="N117F7" part="chapter3" ref="N117F7" type="section">3.2.</cms:entry><cms:entry id="N117FB" part="chapter3" ref="N117FB" type="pagenumber">35</cms:entry><cms:entry id="N11803" part="chapter3" ref="N11803" type="subsection">3.2.1.</cms:entry><cms:entry id="N11819" part="chapter3" ref="N11819" type="pagenumber">36</cms:entry><cms:entry id="N11820" part="chapter3" ref="N11820" type="mm">613#837</cms:entry><cms:entry id="N11830" part="chapter3" ref="N11830" type="table"/><cms:entry id="N11837" part="chapter3" ref="N11837" type="pagenumber">37</cms:entry><cms:entry id="N11855" part="chapter3" ref="N11855" type="mm"/><cms:entry id="N11863" part="chapter3" ref="N11863" type="pagenumber">38</cms:entry><cms:entry id="N11873" part="chapter3" ref="N11873" type="subsection">3.2.2.</cms:entry><cms:entry id="N11877" part="chapter3" ref="N11877" type="pagenumber">39</cms:entry><cms:entry id="N1187C" part="chapter3" ref="N1187C" type="block">3.2.2.1.</cms:entry><cms:entry id="N11895" part="chapter3" ref="N11895" type="pagenumber">40</cms:entry><cms:entry id="N11899" part="chapter3" ref="N11899" type="mm">734#559</cms:entry><cms:entry id="N118A8" part="chapter3" ref="N118A8" type="block">3.2.2.2.</cms:entry><cms:entry id="N118AC" part="chapter3" ref="N118AC" type="pagenumber">41</cms:entry><cms:entry id="N118C2" part="chapter3" ref="N118C2" type="pagenumber">42</cms:entry><cms:entry id="N118C6" part="chapter3" ref="N118C6" type="mm">782#596</cms:entry><cms:entry id="N118D6" part="chapter3" ref="N118D6" type="pagenumber">43</cms:entry><cms:entry id="N118DC" part="chapter3" ref="N118DC" type="block">3.2.2.3.</cms:entry><cms:entry id="N118EF" part="chapter3" ref="N118EF" type="pagenumber">44</cms:entry><cms:entry id="N118F3" part="chapter3" ref="N118F3" type="mm">774#588</cms:entry><cms:entry id="N11903" part="chapter3" ref="N11903" type="subsection">3.2.3.</cms:entry><cms:entry id="N11907" part="chapter3" ref="N11907" type="pagenumber">45</cms:entry><cms:entry id="N1190C" part="chapter3" ref="N1190C" type="block">3.2.3.1.</cms:entry><cms:entry id="N11928" part="chapter3" ref="N11928" type="pagenumber">46</cms:entry><cms:entry id="N1192C" part="chapter3" ref="N1192C" type="mm">766#584</cms:entry><cms:entry id="N11939" part="chapter3" ref="N11939" type="block">3.2.3.2.</cms:entry><cms:entry id="N1193D" part="chapter3" ref="N1193D" type="pagenumber">47</cms:entry><cms:entry id="N11950" part="chapter3" ref="N11950" type="pagenumber">48</cms:entry><cms:entry id="N11954" part="chapter3" ref="N11954" type="mm">790#601</cms:entry><cms:entry id="N11963" part="chapter3" ref="N11963" type="block">3.2.3.3.</cms:entry><cms:entry id="N11967" part="chapter3" ref="N11967" type="pagenumber">49</cms:entry><cms:entry id="N1197A" part="chapter3" ref="N1197A" type="pagenumber">50</cms:entry><cms:entry id="N1197E" part="chapter3" ref="N1197E" type="mm">790#601</cms:entry><cms:entry id="N1198E" part="chapter3" ref="N1198E" type="subsection">3.2.4.</cms:entry><cms:entry id="N11992" part="chapter3" ref="N11992" type="pagenumber">51</cms:entry><cms:entry id="N119A6" part="chapter3" ref="N119A6" type="mm"/><cms:entry id="N119AF" part="chapter3" ref="N119AF" type="mm"/><cms:entry id="N119C0" part="chapter3" ref="N119C0" type="pagenumber">52</cms:entry><cms:entry id="N119CA" part="chapter3" ref="N119CA" type="mm"/><cms:entry id="N119D3" part="chapter3" ref="N119D3" type="mm"/><cms:entry id="N119E6" part="chapter3" ref="N119E6" type="mm"/><cms:entry id="N119EF" part="chapter3" ref="N119EF" type="mm"/><cms:entry id="N119F8" part="chapter3" ref="N119F8" type="mm"/><cms:entry id="N119FF" part="chapter3" ref="N119FF" type="pagenumber">53</cms:entry><cms:entry id="N11A05" part="chapter3" ref="N11A05" type="mm"/><cms:entry id="N11A18" part="chapter3" ref="N11A18" type="mm"/><cms:entry id="chapter4" part="chapter4" ref="chapter4" type="chapter">4.</cms:entry><cms:entry id="N11A26" part="chapter4" ref="N11A26" type="pagenumber">54</cms:entry><cms:entry id="N11A2B" part="chapter4" ref="N11A2B" type="section">4.1.</cms:entry><cms:entry id="N11A33" part="chapter4" ref="N11A33" type="subsection">4.1.1.</cms:entry><cms:entry id="N11A42" part="chapter4" ref="N11A42" type="subsection">4.1.2.</cms:entry><cms:entry id="N11A77" part="chapter4" ref="N11A77" type="pagenumber">55</cms:entry><cms:entry id="N11A81" part="chapter4" ref="N11A81" type="subsection">4.1.3.</cms:entry><cms:entry id="N11A9B" part="chapter4" ref="N11A9B" type="subsection">4.1.4.</cms:entry><cms:entry id="N11A9F" part="chapter4" ref="N11A9F" type="pagenumber">56</cms:entry><cms:entry id="N11AC5" part="chapter4" ref="N11AC5" type="pagenumber">57</cms:entry><cms:entry id="N11AED" part="chapter4" ref="N11AED" type="section">4.2.</cms:entry><cms:entry id="N11AF1" part="chapter4" ref="N11AF1" type="pagenumber">58</cms:entry><cms:entry id="N11AF9" part="chapter4" ref="N11AF9" type="subsection">4.2.1.</cms:entry><cms:entry id="N11B66" part="chapter4" ref="N11B66" type="subsection">4.2.2.</cms:entry><cms:entry id="N11B6A" part="chapter4" ref="N11B6A" type="pagenumber">59</cms:entry><cms:entry id="N11B6F" part="chapter4" ref="N11B6F" type="block">4.2.2.1.</cms:entry><cms:entry id="N11BC0" part="chapter4" ref="N11BC0" type="pagenumber">60</cms:entry><cms:entry id="N11BE6" part="chapter4" ref="N11BE6" type="subblock">
								HSP27</cms:entry><cms:entry id="N11BEA" part="chapter4" ref="N11BEA" type="pagenumber">61</cms:entry><cms:entry id="N11C59" part="chapter4" ref="N11C59" type="pagenumber">62</cms:entry><cms:entry id="N11C72" part="chapter4" ref="N11C72" type="mm"/><cms:entry id="N11C7E" part="chapter4" ref="N11C7E" type="pagenumber">63</cms:entry><cms:entry id="N11C8A" part="chapter4" ref="N11C8A" type="subblock">HSP70</cms:entry><cms:entry id="N11CAA" part="chapter4" ref="N11CAA" type="pagenumber">64</cms:entry><cms:entry id="N11CCB" part="chapter4" ref="N11CCB" type="mm"/><cms:entry id="N11CDA" part="chapter4" ref="N11CDA" type="pagenumber">65</cms:entry><cms:entry id="N11CE2" part="chapter4" ref="N11CE2" type="subblock">HSP90</cms:entry><cms:entry id="N11D02" part="chapter4" ref="N11D02" type="pagenumber">66</cms:entry><cms:entry id="N11D21" part="chapter4" ref="N11D21" type="block">4.2.2.2.</cms:entry><cms:entry id="N11D38" part="chapter4" ref="N11D38" type="pagenumber">67</cms:entry><cms:entry id="N11D44" part="chapter4" ref="N11D44" type="subblock">Calnexin</cms:entry><cms:entry id="N11D5D" part="chapter4" ref="N11D5D" type="subblock">Calreticulin</cms:entry><cms:entry id="N11D7C" part="chapter4" ref="N11D7C" type="subblock">BIP</cms:entry><cms:entry id="N11D8B" part="chapter4" ref="N11D8B" type="pagenumber">68</cms:entry><cms:entry id="N11D98" part="chapter4" ref="N11D98" type="subblock">Reticulocalbin</cms:entry><cms:entry id="N11DC0" part="chapter4" ref="N11DC0" type="pagenumber">69</cms:entry><cms:entry id="N11DC7" part="chapter4" ref="N11DC7" type="block">4.2.2.3.</cms:entry><cms:entry id="N11E24" part="chapter4" ref="N11E24" type="pagenumber">70</cms:entry><cms:entry id="N11E2D" part="chapter4" ref="N11E2D" type="block">4.2.2.4.</cms:entry><cms:entry id="N11E3E" part="chapter4" ref="N11E3E" type="block">4.2.2.5.</cms:entry><cms:entry id="N11E48" part="chapter4" ref="N11E48" type="pagenumber">71</cms:entry><cms:entry id="N11E8D" part="chapter4" ref="N11E8D" type="block">4.2.2.6.</cms:entry><cms:entry id="N11E9B" part="chapter4" ref="N11E9B" type="pagenumber">72</cms:entry><cms:entry id="N11ED4" part="chapter4" ref="N11ED4" type="pagenumber">73</cms:entry><cms:entry id="N11EDA" part="chapter4" ref="N11EDA" type="block">4.2.2.7.</cms:entry><cms:entry id="N11EF6" part="chapter4" ref="N11EF6" type="subsection">4.2.3.</cms:entry><cms:entry id="N11EFD" part="chapter4" ref="N11EFD" type="pagenumber">74</cms:entry><cms:entry id="N11F0A" part="chapter4" ref="N11F0A" type="block">4.2.3.1.</cms:entry><cms:entry id="N11F2F" part="chapter4" ref="N11F2F" type="pagenumber">75</cms:entry><cms:entry id="N11F60" part="chapter4" ref="N11F60" type="pagenumber">76</cms:entry><cms:entry id="N11F66" part="chapter4" ref="N11F66" type="block">4.2.3.2.</cms:entry><cms:entry id="N11F86" part="chapter4" ref="N11F86" type="subsection">4.2.4.</cms:entry><cms:entry id="N11F8B" part="chapter4" ref="N11F8B" type="block">4.2.4.1.</cms:entry><cms:entry id="N11F92" part="chapter4" ref="N11F92" type="pagenumber">77</cms:entry><cms:entry id="N11FB6" part="chapter4" ref="N11FB6" type="pagenumber">78</cms:entry><cms:entry id="N11FC7" part="chapter4" ref="N11FC7" type="block">4.2.4.2.</cms:entry><cms:entry id="N11FDC" part="chapter4" ref="N11FDC" type="subsection">4.2.5.</cms:entry><cms:entry id="N11FE0" part="chapter4" ref="N11FE0" type="pagenumber">79</cms:entry><cms:entry id="N12005" part="chapter4" ref="N12005" type="pagenumber">80</cms:entry><cms:entry id="N1200B" part="chapter4" ref="N1200B" type="subsection">4.2.6.</cms:entry><cms:entry id="N1201F" part="chapter4" ref="N1201F" type="pagenumber">81</cms:entry><cms:entry id="chapter5" part="chapter5" ref="chapter5" type="chapter">5.</cms:entry><cms:entry id="N12034" part="chapter5" ref="N12034" type="pagenumber">82</cms:entry><cms:entry id="N12050" part="chapter5" ref="N12050" type="pagenumber">83</cms:entry><cms:entry ref="N1205A" type="back"/><cms:entry id="N1205C" part="N1205C" ref="N1205C" type="bibliography">
				6. 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part="N134EE" ref="N1356E" type="p"/><cms:entry id="N13570" part="N134EE" ref="N13570" type="mm"/><cms:entry id="N13574" part="N134EE" ref="N13574" type="p"/><cms:entry id="N13577" part="N134EE" ref="N13577" type="p"/><cms:entry id="N13579" part="N134EE" ref="N13579" type="mm"/><cms:entry id="N1357E" part="N1357E" ref="N1357E" type="abbreviation">Abkürzungen</cms:entry><cms:entry id="N13585" part="N1357E" ref="N13585" type="table"/><cms:entry id="N13AB6" part="N13AB6" ref="N13AB6" type="acknowledgement">Danksagung</cms:entry><cms:entry id="N13ACE" part="N13ACE" ref="N13ACE" type="vita">Lebenslauf</cms:entry><cms:entry id="N13AD5" part="N13ACE" ref="N13AD5" type="table"/><cms:entry id="N13CBA" part="N13CBA" ref="N13CBA" type="declaration">Erklärung an Eides Statt</cms:entry><cms:entry part="front" type=":current"/><cms:entry type=":lang">de</cms:entry><cms:entry ref=":contents" type=":contents">Inhaltsverzeichnis</cms:entry><cms:entry type=":help"><url href="http://...">Hilfe</url></cms:entry></cms:meta><cms:content><front id="front"><school>Aus dem Institut für Laboratoriumsmedizin und Pathobiochemie <br/>der Medizinischen Fakultät Charité<br/>der Humboldt-Universität zu Berlin</school><submission>Dissertation</submission><title>Proteom-Analyse von chemo- und thermoresistenten Magen- und Pankreaskarzinomzellinien zur Untersuchung von thermoresistenzassoziierten Phänomenen und Interaktionen mit Chemoresistenz</title><degree>Zur Erlangung des akademischen Grades<br/>Doctor medicinae (Dr. med.)</degree><major>vorgelegt der Medizinischen Fakultät Charité<br/>der Humboldt-Universität zu Berlin</major><author>von<br/>
			<given>Julia </given>
			<surname>Poland
			</surname>
			<suffix>aus Berlin</suffix>
		</author><p> </p><dean>Prof. Dr. med. Joachim W. Dudenhausen</dean><approvals>
			<name>Prof. Dr. med. Dr. rer. nat. P. Sinha</name>
			<name>Prof. Dr. rer. nat. P.-M. Kloetzel</name>
			<name>Prof. Dr. rer. nat. I. Lefkovits</name>
		</approvals><date>Datum der Promotion:20.02.2003</date><p>
			<strong>Liste an Veröffentlichungen, die aus dieser Arbeit hervorgegangen sind:</strong>
		</p><p>
			<ol numbering="arabic">
				<li>
					<p>Sinha P, Poland J, Schnölzer M, Celis JE, Lage H (2001a) Characterization of the differential protein expression associated with thermoresistance in human gastric carcinoma cell lines. Electrophoresis 22(14):2990-3000.</p>
				</li>
				<li>
					<p>Sinha P, Poland J, Schnölzer M, Rabilloud T (2001b) A new silver staining apparatus and procedure for matrix-assisted laser desorption/ionization-time of flight analysis of proteins after two-dimensional electrophoresis. Proteomics 1(7):835-840.</p>
				</li>
				<li>
					<p>Poland J, Schadendorf D, Lage H, Schnölzer M, Celis JE, Sinha P (2002) Study of therapy resistance in cancer cells with functional proteome analysis. Clin Chem Lab Med 40(3):221-234.</p>
				</li>
			</ol>
		</p><p>Diese Arbeit wurde unterstützt von der Deutschen Krebshilfe (grant 10-1628-La4).</p><abstract lang="de">
			<head>Zusammenfassung</head>
			<p>Palliative Therapie inklusive Chemotherapie und andere Behandlungsmethoden wie Hyperthermie ist oftmals die einzig verbleibende Option bei der Behandlung von bestimmten soliden Tumoren wie Magen- und Pankreaskarzinom. Leider ist die kurative Behandlung limitiert durch geringes Ansprechen der Tumore auf die Behandlung und die Entwicklung einer Therapieresistenz.<br/>In dieser Arbeit wurde die globale Proteinexpression von chemo- und thermoresistenten Varianten der Magenkarzinomzellinie EPG85-257 und der Pankreaskarzinomzellinie EPP85-181 mit Hilfe von Proteomics (Kombination aus zweidimensionaler Elektrophorese, computergestützter Gel-Analyse und Massenspektrometrie) in vitro untersucht, um Kandidatenproteine zu finden, die potentiell mit Thermoresistenz bzw. Chemoresistenz assoziiert sind. In diesem Zusammenhang wurde eine mit Maldi-TOF-Massenspektrometrie kompatible Silberfärbung neu entwickelt. <br/>Es zeigte sich eine differentielle Expression einer Vielzahl von Proteinen in den thermoresistenten Zellen, darunter eine Hochregulation von Proteinen mit Chaperonaktivität aus nahezu allen subzellulären Kompartimenten sowie eine Überexpression von Enzymen des Arzneimittelmetabolismus in Zellen mit sowohl chemo- als auch thermoresistentem Phänotyp. Darüber hinaus wurden weitere Proteine identifiziert, welche hinsichtlich ihrer Beteiligung an Resistenzphänomenen im Vorfeld noch gar nicht charakterisiert worden sind (u.a. Aldehyd-Dehydrogenase 1, Transgelin, Phosphoglyceromutase).</p>
		</abstract><keywords lang="de">
			<keyword>Krebs</keyword>
			<keyword>Chemoresistenz</keyword>
			<keyword>Thermoresistenz</keyword>
			<keyword>Proteomics</keyword>
			<keyword>Proteom-Analyse</keyword>
			<keyword>zweidimensionale Elektrophorese</keyword>
		</keywords><abstract lang="en">
			<head>Abstract</head>
			<p>Palliative treatment including chemotherapy and other modes of treatment, e.g. hyperthermia, is often the only remaining option in the management of certain solid tumours including gastric and pancreatic carcinoma. Unfortunately, its efficacy is poor due to low tumour sensitivity and the development of therapy resistance.<br/>The aim was to study in vitro global protein expression of chemo- and thermoresistant variants of the stomach cancer cell line EPG85-257 and the pancreatic cancer cell line EPP85-181 using proteomics (two-dimensional electrophoresis in combination with computer-assisted image analysis and mass spectrometry) to identify candidate proteins potentially associated with thermoresistance alone or in combination with chemoresistance. In this context, a silver stain compatible with Maldi-TOF mass spectrometry was developed. <br/>A large number of proteins was found to be differentially expressed in thermoresistant cells, e.g. overexpression of molecular chaperones at practically every sub-cellular level as well as over-expression of enzymes involved in drug metabolism in both chemo- and thermoresistant cells. Furthermore, other proteins that have not yet been linked to resistance phenomena (e.g. aldehyde dehydrogenase 1, transgelin, phosphoglycerate mutase) have been shown to be differentially expressed.</p>
		</abstract><keywords lang="en">
			<keyword>Cancer</keyword>
			<keyword>Chemoresistance</keyword>
			<keyword>Thermoresistance</keyword>
			<keyword>Proteomics</keyword>
			<keyword>proteome analysis</keyword>
			<keyword>two-dimensional electrophoresis</keyword>
		</keywords><freehead id=":contents">Inhaltsverzeichnis</freehead><ul><li><p><link ref="chapter1">1.</link> 
				Einleitung<ul><li><p><link ref="N100B7">1.1.</link> 
					<em>Einführung</em>
				</p></li><li><p><link ref="N100C3">1.2.</link> 
					<em>Rolle der Chemotherapie in der modernen Onkologie</em>
				<ul><li><p><link ref="N100E2">1.2.1.</link> Mechanismen für Zytostatikaresistenz</p></li><li><p><link ref="N10128">1.2.2.</link> Klassische und atypische <em>multidrug resistance</em> (MDR)<ul><li><p><link ref="N10142">1.2.2.1.</link> Klassische MDR</p></li><li><p><link ref="N10168">1.2.2.2.</link> Atypische MDR</p></li></ul></p></li></ul></p></li><li><p><link ref="N101A5">1.3.</link> 
					<em>Rolle der Hyperthermie in der modernen Onkologie</em>
				<ul><li><p><link ref="N101C2">1.3.1.</link> Biologische Grundlagen</p></li><li><p><link ref="N101EB">1.3.2.</link> Interaktion mit Chemotherapie</p></li><li><p><link ref="N10312">1.3.3.</link> Thermotoleranz/Thermoresistenz</p></li></ul></p></li><li><p><link ref="N10352">1.4.</link> 
					<em>Humane Karzinomzellinien EPG85-257 (Magen-CA) und EPP85-181 (Pankreas-CA) und ihre resistenten Varianten</em>
				</p></li><li><p><link ref="N103A4">1.5.</link> 
					<em>Eigenschaften der verwendeten Zytostatika</em>
				<ul><li><p><link ref="N103AC">1.5.1.</link> Daunorubicin</p></li><li><p><link ref="N103CE">1.5.2.</link> Mitoxantron</p></li><li><p><link ref="N103F7">1.5.3.</link> Wirkungsweise von Anthracyclinen</p></li></ul></p></li><li><p><link ref="N1041E">1.6.</link> 
					<em>Proteomics</em>
				<ul><li><p><link ref="N10426">1.6.1.</link> Überblick</p></li><li><p><link ref="N10485">1.6.2.</link> Zweidimensionale Elektrophorese</p></li></ul></p></li><li><p><link ref="N104F0">1.7.</link> 
					
					<em>Fragestellung</em>
				</p></li></ul></p></li><li><p><link ref="chapter2">2.</link> 
				Material und Methoden<ul><li><p><link ref="N10534">2.1.</link> 
					<em>Material</em>
				<ul><li><p><link ref="N1053C">2.1.1.</link> Reagenzien</p></li><li><p><link ref="N10B23">2.1.2.</link> Geräte</p></li><li><p><link ref="N10D46">2.1.3.</link> 
						Zellproben<ul><li><p><link ref="N10F26">2.1.3.1.</link> Zellkultur und Zellernte</p></li></ul></p></li></ul></p></li><li><p><link ref="N10F47">2.2.</link> 
					
					<em>Methodik</em>
				<ul><li><p><link ref="N10F53">2.2.1.</link> 2D-Elektrophorese mit Carrier-Ampholyten in der 1. Dimension <ul><li><p><link ref="N10F58">2.2.1.1.</link> Proteinisolierung</p></li><li><p><link ref="N10F65">2.2.1.2.</link> Proteinkonzentrationsbestimmung</p></li><li><p><link ref="N110AF">2.2.1.3.</link> Gießen der Gele für die 1. Dimension</p></li><li><p><link ref="N11334">2.2.1.4.</link> Vorbereitung für die isoelektrische Fokussierung der 1. Dimension</p></li><li><p><link ref="N11347">2.2.1.5.</link> Starten der 1. Dimension</p></li><li><p><link ref="N11353">2.2.1.6.</link> Erstellen der Gele für die SDS-PAGE der 2. Dimension</p></li><li><p><link ref="N114B3">2.2.1.7.</link> Starten der SDS-Polyacrylamid-Elektophorese der 2. Dimension</p></li><li><p><link ref="N11578">2.2.1.8.</link> Fixierung und Färbung</p></li></ul></p></li><li><p><link ref="N1165D">2.2.2.</link> Auswertung der Gele mit PDQuest<ul><li><p><link ref="N1166B">2.2.2.1.</link> Scan-Prozeß </p></li><li><p><link ref="N11694">2.2.2.2.</link> 
							Spot-Detektion</p></li><li><p><link ref="N116C6">2.2.2.3.</link> Matching &amp; Editing</p></li><li><p><link ref="N11720">2.2.2.4.</link> Datenanalyse</p></li></ul></p></li><li><p><link ref="N11767">2.2.3.</link> Sequenzierung der differentiell exprimierten Proteine</p></li><li><p><link ref="N1178C">2.2.4.</link> 
						Schematische Darstellung der verwendeten Methode</p></li></ul></p></li></ul></p></li><li><p><link ref="chapter3">3.</link> 
				Ergebnisse<ul><li><p><link ref="N117BD">3.1.</link> 
					<em>Entwicklung einer mit MALDI-Massenspektrometrie kompatiblen Silberfärbung</em>
				</p></li><li><p><link ref="N117F7">3.2.</link> 
					
					<em>Proteom-Analyse der chemo- und thermoresistenten Magen- und Pankreaskarzinomzellinien</em>
				<ul><li><p><link ref="N11803">3.2.1.</link> Übersicht</p></li><li><p><link ref="N11873">3.2.2.</link> 
						Magenkarzinomzellinie EPG85-257<ul><li><p><link ref="N1187C">3.2.2.1.</link> 
							<em>Vergleich </em>
							<em>der</em>
							<em> Parentallinie EPG85-257-P versus thermoresistente Variante EPG85-257-P-TR</em>
						</p></li><li><p><link ref="N118A8">3.2.2.2.</link> 
							
							<em>Vergleich der mitoxantronresistenten Linie EPG85-257-RNOV versus thermoresistente Variante EPG85-257-RNOV-TR</em>
						</p></li><li><p><link ref="N118DC">3.2.2.3.</link> 
							<em>Vergleich der daunorubicinresistenten Linie EPG85-257-RDB versus thermoresistente Variante EPG85-257-RDB-TR</em>
						</p></li></ul></p></li><li><p><link ref="N11903">3.2.3.</link> 
						Pankreaskarzinomzellinie EPP85-181<ul><li><p><link ref="N1190C">3.2.3.1.</link> 
							<em>Vergleich </em>
							<em>der</em>
							<em> Parentallinie EPP85-181-P versus thermoresistente Variante EPP85-181-P-TR</em>
						</p></li><li><p><link ref="N11939">3.2.3.2.</link> 
							
							<em>Vergleich der mitoxantronresistenten Linie EPP85-181-RNOV versus thermoresistente Variante EPP85-181-RNOV-TR</em>
						</p></li><li><p><link ref="N11963">3.2.3.3.</link> 
							
							<em>Vergleich der daunorubicinresistenten Linie EPP85-181-RDB versus thermoresistente Variante EPP85-181-RDB-TR</em>
						</p></li></ul></p></li><li><p><link ref="N1198E">3.2.4.</link> 
						Zusammenstellung von mehrfach vorkommenden differentiell exprimierten Proteinen</p></li></ul></p></li></ul></p></li><li><p><link ref="chapter4">4.</link> 
				Diskussion<ul><li><p><link ref="N11A2B">4.1.</link> 
					<em>Proteom-Analyse</em>
				<ul><li><p><link ref="N11A33">4.1.1.</link> Stellung in der biomedizinischen Forschung</p></li><li><p><link ref="N11A42">4.1.2.</link> Möglichkeiten und Grenzen der zweidimensionalen Elektrophorese</p></li><li><p><link ref="N11A81">4.1.3.</link> Diskussion von Elektrophoreseverfahren und Probenaufarbeitung </p></li><li><p><link ref="N11A9B">4.1.4.</link> 
						Diskussion von Färbemethoden, einschließlich der neu entwickelten Silberfärbung</p></li></ul></p></li><li><p><link ref="N11AED">4.2.</link> 
					
					<em>Diskussion der differentiell exprimierten Proteine</em>
				<ul><li><p><link ref="N11AF9">4.2.1.</link> Zuordnung in verschiedene funktionelle Gruppen</p></li><li><p><link ref="N11B66">4.2.2.</link> 
						Gruppe der molekularen Chaperone<ul><li><p><link ref="N11B6F">4.2.2.1.</link> Heat Shock Proteine<ul><li><p><link ref="N11BE6">
								HSP27</link></p></li><li><p><link ref="N11C8A">HSP70</link></p></li><li><p><link ref="N11CE2">HSP90</link></p></li></ul></p></li><li><p><link ref="N11D21">4.2.2.2.</link> Calcium-bindende Chaperone<ul><li><p><link ref="N11D44">Calnexin</link></p></li><li><p><link ref="N11D5D">Calreticulin</link></p></li><li><p><link ref="N11D7C">BIP</link></p></li><li><p><link ref="N11D98">Reticulocalbin</link></p></li></ul></p></li><li><p><link ref="N11DC7">4.2.2.3.</link> Annexin I</p></li><li><p><link ref="N11E2D">4.2.2.4.</link> Nucleophosmin</p></li><li><p><link ref="N11E3E">4.2.2.5.</link> FK506 binding protein 4</p></li><li><p><link ref="N11E8D">4.2.2.6.</link> 14-3-3 Familie</p></li><li><p><link ref="N11EDA">4.2.2.7.</link> Prohibitin</p></li></ul></p></li><li><p><link ref="N11EF6">4.2.3.</link> Arzneimittelmetabolismus<ul><li><p><link ref="N11F0A">4.2.3.1.</link> Glutathionstoffwechsel</p></li><li><p><link ref="N11F66">4.2.3.2.</link> Thioredoxinstoffwechsel</p></li></ul></p></li><li><p><link ref="N11F86">4.2.4.</link> Komponenten des Cytoskeletts<ul><li><p><link ref="N11F8B">4.2.4.1.</link> Cytokeratine und Vimentin</p></li><li><p><link ref="N11FC7">4.2.4.2.</link> T-Plastin und Actin-Isoformen</p></li></ul></p></li><li><p><link ref="N11FDC">4.2.5.</link> 
						Weitere differentiell exprimierte Proteine</p></li><li><p><link ref="N1200B">4.2.6.</link> Überblick der besprochenen Ergebnisse und Ausblick</p></li></ul></p></li></ul></p></li><li><p><link ref="chapter5">5.</link> 
				Zusammenfassung</p></li><li><p><link ref="N1205C">
				6. Literatur</link></p></li><li><p><link ref="N134EE">Anhang</link></p></li><li><p><link ref="N1357E">Abkürzungen</link></p></li><li><p><link ref="N13AB6">Danksagung</link></p></li><li><p><link ref="N13ACE">Lebenslauf</link></p></li><li><p><link ref="N13CBA">Erklärung an Eides Statt</link></p></li></ul><freehead id=":toc-tables">Tabellen</freehead><ul><li><p><link ref="N10207">Tabelle 1.1: Effekte von Temperaturerhöhung auf die Wirkungsweise von speziellen Zytostatika (Issels, 1999)</link></p></li><li><p><link ref="N10543">Tabelle 2.1: Reagenzienname, Hersteller und Bestellnummer der verwendeten Chemikalien</link></p></li><li><p><link ref="N10B2A">Tabelle 2.2: Verwendete Geräte</link></p></li><li><p><link ref="N10D54">Tabelle 2.3: Bezeichnung und Charakteristika der in dieser Arbeit untersuchten Zellinien</link></p></li><li><p><link ref="N110D2">Tabelle 2.4: Protokoll für die Gellösung der 1. Dimension (23cm-Gele)</link></p></li><li><p><link ref="N111FF">Tabelle 2.5: Protokoll für die Gellösung der 1. Dimension (12.5cm-Gele)</link></p></li><li><p><link ref="N11364">Tabelle 2.6 und 2.7: Protokolle für Teillösungen der Gießlösung für die 2. Dimension</link></p></li><li><p><link ref="N11395">Tabelle 2.8: Protokoll für die fertige Gießlösung der 2. Dimension</link></p></li><li><p><link ref="N114C0">Tabelle 2.9: Protokoll für den Laufpuffer der 2. Dimension (nach Laemmli)</link></p></li><li><p><link ref="N11830">
								Tabelle 3.1: Liste der identifizierten Proteine in der Magenkarzinomlinie EPG85-257-P und ihren fünf Varianten</link></p></li></ul><freehead id=":toc-media">Bilder</freehead><ul><li><p><link ref="N103BF">Abbildung 1.1: Strukturformel von Daunorubicin</link></p></li><li><p><link ref="N103E8">Abbildung 1.2: Strukturformel von Mitoxantron</link></p></li><li><p><link ref="N1170E">Abbildung 2.1:  Offsets als Hilfe zur Erkennung falsch zugeordneter Spots</link></p></li><li><p><link ref="N11797">Abbildung 2.2:  Schema der einzelnen Schritte der in dieser Arbeit angewendeten Methode anhand eines analytischen Laufes: </link></p></li><li><p><link ref="N117CA">Abbildung 3.1:  Aufbau der Färbekammer (Fotografien); </link></p></li><li><p><link ref="N117E9">Abbildung 3.2: Spotmuster eines mit der Spezial-Silberfärbung angefärbten Gels (EPG85-257-P-TR, 100mg Gesamtprotein) und vier mit Maldi-TOF identifizierte Proteine</link></p></li><li><p><link ref="N11820">Abbildung 3.3: Zweidimensionales Muster der parentalen Magenkarzinomzellinie EPG85-257-P (Bild eines Gelscans) als repräsentatives Elektropherogramm</link></p></li><li><p><link ref="N11899">Abbildung 3.4: Vergleich der Spotmuster der parentalen Magenkarzinomlinie EPG85-257-P und ihrer thermoresistenten Variante EPG85-257-P-TR (repräsentative Gelscans wurden als Grundlage der Übersichtsbilder benutzt)</link></p></li><li><p><link ref="N118C6">Abbildung 3.5: Vergleich der Spotmuster der mitoxantronresistenten Magenkarzinomlinie EPG85-257-RNOV und ihrer thermoresistenten Variante EPG85-257-RNOV-TR (repräsentative Gelscans wurden als Grundlage der Übersichtsbilder benutzt)</link></p></li><li><p><link ref="N118F3">Abbildung 3.6: Vergleich der Spotmuster der daunorubicinresistenten Magenkarzinomlinie EPG85-257-RDB und ihrer thermoresistenten Variante EPG85-257-RDB-TR (repräsentative Gelscans wurden als Grundlage der Übersichtsbilder benutzt)</link></p></li><li><p><link ref="N1192C">Abbildung 3.7: Vergleich der Spotmuster der parentalen Pankreaskarzinomlinie EPP85-181-P und ihrer thermoresistenten Variante EPP85-181-P-TR (repräsentative Gelscans wurden als Grundlage der Übersichtsbilder benutzt)</link></p></li><li><p><link ref="N11954">Abbildung 3.8: Vergleich der Spotmuster der mitoxantronresistenten Pankreaskarzinomlinie EPP85-181-RNOV und ihrer thermoresistenten Variante EPP85-181-RNOV-TR (repräsentative Gelscans wurden als Grundlage der Übersichtsbilder benutzt)</link></p></li><li><p><link ref="N1197E">Abbildung 3.9: Vergleich der Spotmuster der daunorubicinresistenten Pankreaskarzinomlinie EPP85-181-RDB und ihrer thermoresistenten Variante EPP85-181-RDB-TR (repräsentative Gelscans wurden als Grundlage der Übersichtsbilder benutzt)</link></p></li><li><p><link ref="N11C72">Abbildung 4.1: Mögliche Modulatorfunktion des kleinen Heat Shock Proteins HSP27 bei Apoptosevorgängen, schematische Darstellung (modifiziert nach Arrigo, 1998)</link></p></li><li><p><link ref="N11CCB">Abbildung 4.2: Mögliche Modulatorfunktion von HSP70 bei Apoptosevorgängen, schematische Darstellung (modifiziert nach Creagh et al., 2000)</link></p></li></ul></front></cms:content></cms:document></cms:container>