<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="//www.iegt-rostock.de/wp-content/plugins/wordpress-seo/css/main-sitemap.xsl"?>
<urlset xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:image="http://www.google.com/schemas/sitemap-image/1.1" xsi:schemaLocation="http://www.sitemaps.org/schemas/sitemap/0.9 http://www.sitemaps.org/schemas/sitemap/0.9/sitemap.xsd http://www.google.com/schemas/sitemap-image/1.1 http://www.google.com/schemas/sitemap-image/1.1/sitemap-image.xsd" xmlns="http://www.sitemaps.org/schemas/sitemap/0.9">
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=endotheliale-icam-expression-in-abhaengigkeit-der-plazentaren-progranulinsynthese</loc>
		<lastmod>2019-11-26T12:36:01+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=targeting-e2f1-downstream-pathways-in-invasive-bladder-cancer-for-therapeutic-intervention-by-combining-crispr-cas9-mediated-genome-editing-and-adenoviral-vectors</loc>
		<lastmod>2019-11-26T12:36:01+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=parakrine-effekte-der-trophoblastaeren-progranulinexpression-auf-humane-umbilikale-endohelzellen-in-vitro</loc>
		<lastmod>2019-11-26T12:36:01+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=3330</loc>
		<lastmod>2019-11-26T12:36:03+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=parakrine-effekte-der-trophoblastaeren-progranulinexpression-auf-humane-umbilikale-endohelzellen-in-vitro</loc>
		<lastmod>2019-11-26T12:36:27+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=bedeutung-der-sauerstoffkonzentration-fuer-die-plazentare-progranulinexpression-im-ersten-trimenon</loc>
		<lastmod>2019-11-26T12:36:27+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=endotheliale-icam-expression-in-abhaengigkeit-der-plazentaren-progranulinsynthese</loc>
		<lastmod>2019-11-26T12:36:28+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=targeting-e2f1-downstream-pathways-in-invasive-bladder-cancer-for-therapeutic-intervention-by-combining-crispr-cas9-mediated-genome-editing-and-adenoviral-vectors</loc>
		<lastmod>2019-11-26T12:36:28+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=3330</loc>
		<lastmod>2019-11-26T12:36:29+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=parakrine-effekte-der-trophoblastaeren-progranulinexpression-auf-humane-umbilikale-endothelzellen-vitro</loc>
		<lastmod>2019-11-26T12:38:59+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=parakrine-effekte-der-trophoblastaeren-progranulinexpression-auf-humane-umbilikale-endothelzellen-vitro</loc>
		<lastmod>2019-11-26T12:39:19+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=melanoma-associated-hypopigmentation-sign-emt-propelled-metastatic-spread-towards-identification-molecular-particularities-2</loc>
		<lastmod>2019-11-26T12:39:41+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=melanoma-associated-hypopigmentation-sign-emt-propelled-metastatic-spread-towards-identification-molecular-particularities-2</loc>
		<lastmod>2019-11-26T12:39:41+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=conserved-e2f1-activated-gene-regulatory-network-encompassing-monocarboxylic-acid-transporter-1-co-operating-antisense-lncrna-slc16a1-as1-common-downstream-targets-mediates-bladder-ca</loc>
		<lastmod>2019-11-26T12:40:45+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=conserved-e2f1-activated-gene-regulatory-network-encompassing-monocarboxylic-acid-transporter-1-co-operating-antisense-lncrna-slc16a1-as1-common-downstream-targets-mediates-bladder-ca</loc>
		<lastmod>2019-11-26T12:40:45+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=clinical-functional-implications-microrna-182-ret-gene-mutation-induced-progression-medullary-thyroid-cancer-2</loc>
		<lastmod>2019-11-26T12:42:23+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=clinical-functional-implications-microrna-182-ret-gene-mutation-induced-progression-medullary-thyroid-cancer-2</loc>
		<lastmod>2019-11-26T12:42:23+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=e2f1-signaling-promotes-chemoresistance-lymphogenic-metastasis-penile-cancer-revealing-new-prognostic-biomarkers-2</loc>
		<lastmod>2019-11-26T12:42:24+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=e2f1-signaling-promotes-chemoresistance-lymphogenic-metastasis-penile-cancer-revealing-new-prognostic-biomarkers-2</loc>
		<lastmod>2019-11-26T12:42:24+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=epigenetic-master-regulator-epc1-decisive-factor-e2f1-silence-cell-death-activate-metastatic-gene-signatures-response-dna-damage</loc>
		<lastmod>2019-11-26T12:42:26+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=epigenetic-master-regulator-epc1-decisive-factor-e2f1-silence-cell-death-activate-metastatic-gene-signatures-response-dna-damage</loc>
		<lastmod>2019-11-26T12:42:26+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=identification-novel-anti-metastatic-drugs-targeting-oncogenic-e2f1coregulatory-complexes-applying-systems-pharmacology-approach-2</loc>
		<lastmod>2019-11-26T12:42:26+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=identification-novel-anti-metastatic-drugs-targeting-oncogenic-e2f1coregulatory-complexes-applying-systems-pharmacology-approach-2</loc>
		<lastmod>2019-11-26T12:42:26+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=3122</loc>
		<lastmod>2019-11-26T12:42:27+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=3122</loc>
		<lastmod>2019-11-26T12:42:27+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=3124</loc>
		<lastmod>2019-11-26T12:42:28+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=3124</loc>
		<lastmod>2019-11-26T12:42:28+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=igf1r-signaling-connects-dnp73-mediated-emt-acquisition-cancer-stem-cell-properties-2</loc>
		<lastmod>2019-11-26T12:42:30+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=igf1r-signaling-connects-dnp73-mediated-emt-acquisition-cancer-stem-cell-properties-2</loc>
		<lastmod>2019-11-26T12:42:30+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=untersuchungen-zu-funktion-und-regulation-von-progranulin-humanen-villoesen-trophoblastzellen-und-deren-einfluss-auf-die-endothelzellfunktion-2</loc>
		<lastmod>2019-11-26T12:42:32+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=untersuchungen-zu-funktion-und-regulation-von-progranulin-humanen-villoesen-trophoblastzellen-und-deren-einfluss-auf-die-endothelzellfunktion-2</loc>
		<lastmod>2019-11-26T12:42:32+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=igf1r-signaling-connects-dnp73-mediated-emt-acquisition-cancer-stem-cell-properties-3</loc>
		<lastmod>2019-11-26T12:42:32+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=igf1r-signaling-connects-dnp73-mediated-emt-acquisition-cancer-stem-cell-properties-3</loc>
		<lastmod>2019-11-26T12:42:32+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=novel-subventricular-zone-early-progenitor-cell-specific-adenoviral-vector-brain-stem-cell-bioengineering-2</loc>
		<lastmod>2019-11-26T12:42:32+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=novel-subventricular-zone-early-progenitor-cell-specific-adenoviral-vector-brain-stem-cell-bioengineering-2</loc>
		<lastmod>2019-11-26T12:42:32+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=microrna-expression-signature-discriminates-metastatic-non-metastatic-penile-carcinoma-2</loc>
		<lastmod>2019-11-26T12:42:33+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=microrna-expression-signature-discriminates-metastatic-non-metastatic-penile-carcinoma-2</loc>
		<lastmod>2019-11-26T12:42:34+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=crossing-border-dnp73-cancer-metastasis</loc>
		<lastmod>2019-11-26T12:42:35+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=crossing-border-dnp73-cancer-metastasis</loc>
		<lastmod>2019-11-26T12:42:35+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenoviral-mediated-specific-targeting-of-hepatic-stellate-cells-as-a-selective-therapeutic-approach-in-liver-fibrosis</loc>
		<lastmod>2019-11-26T12:42:37+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenoviral-mediated-specific-targeting-of-hepatic-stellate-cells-as-a-selective-therapeutic-approach-in-liver-fibrosis</loc>
		<lastmod>2019-11-26T12:42:37+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=expression-of-and-cd8-t-cell-responses-to-wilmstumor-gene-1-wt1-in-patients-with-aml-or-mds-after-chemotherapy-and-allogeneic-stem-cell-transplantation-2</loc>
		<lastmod>2019-11-26T12:42:38+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=zpi-deficiency-results-in-a-high-thrombosis-risk-in-generalized-shwartzman-reaction-2</loc>
		<lastmod>2019-11-26T12:42:39+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=zpi-deficiency-results-in-a-high-thrombosis-risk-in-generalized-shwartzman-reaction-2</loc>
		<lastmod>2019-11-26T12:42:39+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=expression-of-rhamm-and-wt1-as-well-as-t-cell-responses-to-these-antigens-before-and-after-allogeneic-stem-cell-transplantation-in-patients-with-leukemia</loc>
		<lastmod>2019-11-26T12:42:39+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=expression-of-rhamm-and-wt1-as-well-as-t-cell-responses-to-these-antigens-before-and-after-allogeneic-stem-cell-transplantation-in-patients-with-leukemia</loc>
		<lastmod>2019-11-26T12:42:39+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=expression-of-and-cd8-t-cell-responses-to-wilmstumor-gene-1-wt1-in-patients-with-aml-or-mds-after-chemotherapy-and-allogeneic-stem-cell-transplantation-2</loc>
		<lastmod>2019-11-26T12:42:39+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=cell-specific-targeting-of-hepatic-stellate-cells-as-therapeutic-approach-in-liver-fibrosis</loc>
		<lastmod>2019-11-26T12:42:40+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=cell-specific-targeting-of-hepatic-stellate-cells-as-therapeutic-approach-in-liver-fibrosis</loc>
		<lastmod>2019-11-26T12:42:41+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=expression-of-rhamm-and-wt1-before-and-after-allogeneic-stem-cell-transplantation-in-patients-with-acute-myeloid-leukemia-aml</loc>
		<lastmod>2019-11-26T12:42:42+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=expression-of-rhamm-and-wt1-before-and-after-allogeneic-stem-cell-transplantation-in-patients-with-acute-myeloid-leukemia-aml</loc>
		<lastmod>2019-11-26T12:42:43+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=zpi-deficiency-results-in-a-high-thrombosis-risk-in-generalized-shwartzman-reaction</loc>
		<lastmod>2019-11-26T12:42:44+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=zpi-deficiency-results-in-a-high-thrombosis-risk-in-generalized-shwartzman-reaction</loc>
		<lastmod>2019-11-26T12:42:44+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=cancer-specific-peptide-tagged-ad-vectors-in-systemic-therapy-of-aggressive-solid-tumors</loc>
		<lastmod>2019-11-26T12:42:45+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=cancer-specific-peptide-tagged-ad-vectors-in-systemic-therapy-of-aggressive-solid-tumors</loc>
		<lastmod>2019-11-26T12:42:46+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=new-perspective-in-the-anti-angiogenic-treatment-of-metastatic-skin-cancer</loc>
		<lastmod>2019-11-26T12:42:46+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=new-perspective-in-the-anti-angiogenic-treatment-of-metastatic-skin-cancer</loc>
		<lastmod>2019-11-26T12:42:46+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=pseudotyped-adenoviruses-mediate-gene-transfer-for-specific-intracerebral-and-intramuscular-exon-skipping-constructs</loc>
		<lastmod>2019-11-26T12:42:47+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=e2f1-determines-melanoma-progression-and-metastasis-via-egf-receptor-signaling</loc>
		<lastmod>2019-11-26T12:42:47+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=specific-lna-asos-against-oncogenic-p73-isoforms-permit-therapeutic-cancer-targeting-in-vivo</loc>
		<lastmod>2019-11-26T12:42:47+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenovirus-mediated-systemic-therapy-of-medullary-carcinoma-in-the-thyroid-glands-of-retc634r-transgenic-mice-through-targeted-expression-of-ret-deltatk</loc>
		<lastmod>2019-11-26T12:42:48+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=pseudotyped-adenoviruses-mediate-gene-transfer-for-specific-intracerebral-and-intramuscular-exon-skipping-constructs</loc>
		<lastmod>2019-11-26T12:42:48+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=e2f1-determines-melanoma-progression-and-metastasis-via-egf-receptor-signaling</loc>
		<lastmod>2019-11-26T12:42:48+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=specific-lna-asos-against-oncogenic-p73-isoforms-permit-therapeutic-cancer-targeting-in-vivo</loc>
		<lastmod>2019-11-26T12:42:48+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenovirus-mediated-systemic-therapy-of-medullary-carcinoma-in-the-thyroid-glands-of-retc634r-transgenic-mice-through-targeted-expression-of-ret-deltatk</loc>
		<lastmod>2019-11-26T12:42:49+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=specific-and-long-term-genetic-engineering-of-adult-stem-cells-in-the-rodent-brain-by-peptide-tagged-ad-vectors</loc>
		<lastmod>2019-11-26T12:42:50+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=specific-and-long-term-genetic-engineering-of-adult-stem-cells-in-the-rodent-brain-by-peptide-tagged-ad-vectors</loc>
		<lastmod>2019-11-26T12:42:50+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=selective-targeting-of-adenoviral-vectors-to-neural-precursor-cells-in-the-hippocampus-of-adult-mice-new-prospects-for-in-situ-gene-therapy</loc>
		<lastmod>2019-11-26T12:42:52+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=the-p53-family-inhibitor-deltanp73-induces-autonomous-growth-and-hepatocarcinogenesis-in-transgenic-mice</loc>
		<lastmod>2019-11-26T12:42:52+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=the-p53-family-inhibitor-deltanp73-induces-autonomous-growth-and-hepatocarcinogenesis-in-transgenic-mice</loc>
		<lastmod>2019-11-26T12:42:52+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=selective-targeting-of-adenoviral-vectors-to-neural-precursor-cells-in-the-hippocampus-of-adult-mice-new-prospects-for-in-situ-gene-therapy</loc>
		<lastmod>2019-11-26T12:42:53+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=molecular-mechanisms-of-hepatocarcinogenesis-in-dnp73-transgenic-mice-significance-of-n-terminally-truncated-p73-species-for-liver-cancer-therapy</loc>
		<lastmod>2019-11-26T12:42:54+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=molecular-mechanisms-of-hepatocarcinogenesis-in-dnp73-transgenic-mice-significance-of-n-terminally-truncated-p73-species-for-liver-cancer-therapy</loc>
		<lastmod>2019-11-26T12:42:54+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=differential-regulation-of-hepatitis-b-virus-core-promoterenhancer-ii-by-tap73-and-its-oncogenic-counterpart-dnp73-implications-for-hepatocarcinogenesis</loc>
		<lastmod>2019-11-26T12:42:54+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=differential-regulation-of-hepatitis-b-virus-core-promoterenhancer-ii-by-tap73-and-its-oncogenic-counterpart-dnp73-implications-for-hepatocarcinogenesis</loc>
		<lastmod>2019-11-26T12:42:54+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=selective-transduction-of-adult-neural-precursor-cells-in-the-mouse-dentate-gyrus-by-adenoviral-vectors-new-prospects-to-utilize-the-therapeutic-potential-of-stem-cells-in-the-adult-brain</loc>
		<lastmod>2019-11-26T12:42:55+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=selective-transduction-of-adult-neural-precursor-cells-in-the-mouse-dentate-gyrus-by-adenoviral-vectors-new-prospects-to-utilize-the-therapeutic-potential-of-stem-cells-in-the-adult-brain</loc>
		<lastmod>2019-11-26T12:42:55+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=conjugating-polymer-vector-to-magnetic-nanobeads-enhances-local-gene-expression-in-the-heart-2</loc>
		<lastmod>2019-11-26T12:42:56+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=anti-apoptotic-bcl-2-gene-modified-rat-mscs-improves-heart-function-after-myocardial-infarction</loc>
		<lastmod>2019-11-26T12:42:56+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=anti-apoptotic-bcl-2-gene-modified-rat-mscs-improves-heart-function-after-myocardial-infarction</loc>
		<lastmod>2019-11-26T12:42:56+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=solid-nanobeads-prevents-polycations-from-entering-the-nuclei-and-enhanced-transfection-efficiency-2</loc>
		<lastmod>2019-11-26T12:42:57+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=solid-nanobeads-prevents-polycations-from-entering-the-nuclei-and-enhanced-transfection-efficiency-2</loc>
		<lastmod>2019-11-26T12:42:57+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=conjugating-polymer-vector-to-magnetic-nanobeads-enhances-local-gene-expression-in-the-heart-2</loc>
		<lastmod>2019-11-26T12:42:57+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=overexpression-of-bcl-2-prevented-mscs-from-apoptosis-and-improved-heart-function-3</loc>
		<lastmod>2019-11-26T12:42:58+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=overexpression-of-bcl-2-prevented-mscs-from-apoptosis-and-improved-heart-function-3</loc>
		<lastmod>2019-11-26T12:42:58+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenovirus-mediated-ta-p73beta-gene-transfer-leads-to-chemosensitization-of-human-malignant-melanoma</loc>
		<lastmod>2019-11-26T12:42:59+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenovirus-mediated-ta-p73beta-gene-transfer-leads-to-chemosensitization-of-human-malignant-melanoma</loc>
		<lastmod>2019-11-26T12:42:59+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=magnetic-nanobeads-for-local-gene-delivery-a-novel-vector-for-myocardial-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:00+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=magnetic-nanobeads-for-local-gene-delivery-a-novel-vector-for-myocardial-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:00+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=magnetic-nanobeads-for-guided-gene-delivery-to-the-heart</loc>
		<lastmod>2019-11-26T12:43:01+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=bcl-2-protects-rat-mscs-from-apoptosis-and-improves-heart-function</loc>
		<lastmod>2019-11-26T12:43:02+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=bcl-2-protects-rat-mscs-from-apoptosis-and-improves-heart-function</loc>
		<lastmod>2019-11-26T12:43:02+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=magnetic-nanobeads-for-guided-gene-delivery-to-the-heart</loc>
		<lastmod>2019-11-26T12:43:02+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenoviraler-gentransfer-von-p53-hemmt-die-proliferation-humaner-tenonfibroblasten</loc>
		<lastmod>2019-11-26T12:43:03+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenoviraler-gentransfer-von-p53-hemmt-die-proliferation-humaner-tenonfibroblasten</loc>
		<lastmod>2019-11-26T12:43:03+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=discovery-of-targeting-peptides-for-selective-therapy-of-medullary-thyroid-carcinoma</loc>
		<lastmod>2019-11-26T12:43:04+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=discovery-of-targeting-peptides-for-selective-therapy-of-medullary-thyroid-carcinoma</loc>
		<lastmod>2019-11-26T12:43:04+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=loss-of-neoplastic-phenotype-by-specific-inhibition-of-ret-oncogene-signalling-in-a-transgenic-model-of-primary-medullary-thyroid-carcinoma</loc>
		<lastmod>2019-11-26T12:43:04+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=loss-of-neoplastic-phenotype-by-specific-inhibition-of-ret-oncogene-signalling-in-a-transgenic-model-of-primary-medullary-thyroid-carcinoma</loc>
		<lastmod>2019-11-26T12:43:04+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=high-efficiency-of-p73-beta-in-p53-null-pancreatic-carcinoma-resistant-against-wild-type-p53-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:05+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=inhibition-of-ret-autophosphorylation-by-adenoviral-expressed-ret-delta-tk-implications-for-medullary-thyroid-carcinoma-therapy</loc>
		<lastmod>2019-11-26T12:43:06+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=inhibition-of-ret-autophosphorylation-by-adenoviral-expressed-ret-delta-tk-implications-for-medullary-thyroid-carcinoma-therapy</loc>
		<lastmod>2019-11-26T12:43:06+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=high-efficiency-of-p73-beta-in-p53-null-pancreatic-carcinoma-resistant-against-wild-type-p53-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:06+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=update-on-adenoviruses-and-retargeting</loc>
		<lastmod>2019-11-26T12:43:07+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=inhibition-of-oncogenic-ret-signaling-by-ad-vector-mediated-expression-of-a-dominant-negative-ret-mutant-implications-for-medullary-thyroid-cancer-treatment</loc>
		<lastmod>2019-11-26T12:43:08+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=inhibition-of-oncogenic-ret-signaling-by-ad-vector-mediated-expression-of-a-dominant-negative-ret-mutant-implications-for-medullary-thyroid-cancer-treatment</loc>
		<lastmod>2019-11-26T12:43:08+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=update-on-adenoviruses-and-retargeting</loc>
		<lastmod>2019-11-26T12:43:08+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=gentherapie-des-hepatozellularen-karzinoms-hcc-in-vivo-evaluation-einer-adenoviralen-transfektion-von-interleukin-12b7-1-im-murmeltier-mittels-magnetresonanz-tomographie-mrt</loc>
		<lastmod>2019-11-26T12:43:09+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=gentherapie-des-hepatozellularen-karzinoms-hcc-in-vivo-evaluation-einer-adenoviralen-transfektion-von-interleukin-12b7-1-im-murmeltier-mittels-magnetresonanz-tomographie-mrt</loc>
		<lastmod>2019-11-26T12:43:09+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=large-nontransplanted-hepatocellular-carcinoma-in-woodchucks-treatment-with-adenovirus-mediated-delivery-of-interleukin-12b7-1-genes</loc>
		<lastmod>2019-11-26T12:43:10+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=implications-of-n-terminal-truncated-p73-for-cancer</loc>
		<lastmod>2019-11-26T12:43:10+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=implications-of-n-terminal-truncated-p73-for-cancer</loc>
		<lastmod>2019-11-26T12:43:10+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=regression-of-large-nontransplanted-hepatocellular-carcinoma-following-adenovirus-mediated-interleukin-12b7-1-gene-delivery-in-woodchucks</loc>
		<lastmod>2019-11-26T12:43:11+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=large-nontransplanted-hepatocellular-carcinoma-in-woodchucks-treatment-with-adenovirus-mediated-delivery-of-interleukin-12b7-1-genes</loc>
		<lastmod>2019-11-26T12:43:11+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=regression-of-large-nontransplanted-hepatocellular-carcinoma-following-adenovirus-mediated-interleukin-12b7-1-gene-delivery-in-woodchucks</loc>
		<lastmod>2019-11-26T12:43:12+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=enhanced-therapeutic-efficacy-of-gemcitabine-in-pancreatic-cancer-by-adenovirus-mediated-e2f1-gene-transfer</loc>
		<lastmod>2019-11-26T12:43:23+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=enhanced-therapeutic-efficacy-of-gemcitabine-in-pancreatic-cancer-by-adenovirus-mediated-e2f1-gene-transfer</loc>
		<lastmod>2019-11-26T12:43:23+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=treatment-of-large-virus-induced-primary-liver-tumors-in-woodchucks-by-adenovirus-mediated-delivery-of-il-12b7-1-genes</loc>
		<lastmod>2019-11-26T12:43:27+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=treatment-of-large-virus-induced-primary-liver-tumors-in-woodchucks-by-adenovirus-mediated-delivery-of-il-12b7-1-genes</loc>
		<lastmod>2019-11-26T12:43:32+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=restenosis-prevention-successful-inhibition-of-vsmc-cell-cycle-progression-by-adenovirus-mediated-delivery-of-a-pro-apoptotic-dominant-negativ-e2f1-mutant</loc>
		<lastmod>2019-11-26T12:43:33+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=role-of-p73-in-cancer-tumor-suppressor-gene-or-oncogene-2</loc>
		<lastmod>2019-11-26T12:43:34+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=role-of-p73-in-cancer-tumor-suppressor-gene-or-oncogene-2</loc>
		<lastmod>2019-11-26T12:43:34+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=restenosis-prevention-successful-inhibition-of-vsmc-cell-cycle-progression-by-adenovirus-mediated-delivery-of-a-pro-apoptotic-dominant-negativ-e2f1-mutant</loc>
		<lastmod>2019-11-26T12:43:34+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=magnetic-resonance-imaging-in-in-vivo-evaluation-of-hepatocellular-carcinomas-hcc-post-gene-therapy-adenoviral-transfection-of-interleukin-12b7-1-in-woodchucks</loc>
		<lastmod>2019-11-26T12:43:35+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=magnetic-resonance-imaging-in-in-vivo-evaluation-of-hepatocellular-carcinomas-hcc-post-gene-therapy-adenoviral-transfection-of-interleukin-12b7-1-in-woodchucks</loc>
		<lastmod>2019-11-26T12:43:35+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenovirus-mediated-e2f1-gene-transfer-enhances-therapeutic-efficacy-of-gemcitabine-in-pancreatic-cancer</loc>
		<lastmod>2019-11-26T12:43:36+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=adenovirus-mediated-e2f1-gene-transfer-enhances-therapeutic-efficacy-of-gemcitabine-in-pancreatic-cancer</loc>
		<lastmod>2019-11-26T12:43:36+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=anti-cancer-therapy-using-adenovirus-vectors-expressing-immunomodulatory-genes</loc>
		<lastmod>2019-11-26T12:43:37+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=anti-cancer-therapy-using-adenovirus-vectors-expressing-immunomodulatory-genes</loc>
		<lastmod>2019-11-26T12:43:37+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=regulation-of-adenoviral-delivered-toxic-genes-by-4-hydroxy-tamoxifen-4-oht-binding-to-the-estrogen-receptor-for-safe-cancer-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:38+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=regulation-of-adenoviral-delivered-toxic-genes-by-4-hydroxy-tamoxifen-4-oht-binding-to-the-estrogen-receptor-for-safe-cancer-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:38+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=inducible-activation-of-ad-vector-delivered-toxic-transgenes-for-safe-cancer-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:40+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=e1a-overcomes-the-apoptosis-block-in-bcrabl-positive-leukemia-cells-and-renders-cells-susceptible-to-induction-of-apoptosis-by-chemotherapeutic-agents</loc>
		<lastmod>2019-11-26T12:43:41+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=e1a-overcomes-the-apoptosis-block-in-bcrabl-positive-leukemia-cells-and-renders-cells-susceptible-to-induction-of-apoptosis-by-chemotherapeutic-agents</loc>
		<lastmod>2019-11-26T12:43:41+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=development-of-an-adenovirus-vector-for-tamoxifen-regulated-induction-of-apoptosis-by-a-dominant-negative-e2f1-estrogen-receptor-fusion-protein</loc>
		<lastmod>2019-11-26T12:43:41+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=inducible-activation-of-ad-vector-delivered-toxic-transgenes-for-safe-cancer-gene-therapy</loc>
		<lastmod>2019-11-26T12:43:41+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=development-of-an-adenovirus-vector-for-tamoxifen-regulated-induction-of-apoptosis-by-a-dominant-negative-e2f1-estrogen-receptor-fusion-protein</loc>
		<lastmod>2019-11-26T12:43:42+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=combination-therapy-with-il-2-and-wild-type-p53-expressed-by-ad-vectors-induces-tumor-regression-in-vivo-without-cytokine-related-toxicity</loc>
		<lastmod>2019-11-26T12:43:43+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=interleukin-12-and-b7-1-costimulatory-molecule-expressed-by-an-adenovirus-vector-act-synergistically-to-facilitate-tumor-regression</loc>
		<lastmod>2019-11-26T12:43:43+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=interleukin-12-and-b7-1-costimulatory-molecule-expressed-by-an-adenovirus-vector-act-synergistically-to-facilitate-tumor-regression</loc>
		<lastmod>2019-11-26T12:43:43+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=combination-therapy-with-il-2-and-wild-type-p53-expressed-by-ad-vectors-induces-tumor-regression-in-vivo-without-cytokine-related-toxicity</loc>
		<lastmod>2019-11-26T12:43:44+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=transformation-defective-e1a-products-of-the-ad12-non-oncogenic-host-range-mutant-cs-1-are-able-to-disrupt-e2f-containing-complexes-and-to-transactivate-e2f-motif-containing-promoters</loc>
		<lastmod>2019-11-26T12:43:46+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=transformation-defective-e1a-products-of-the-ad12-non-oncogenic-host-range-mutant-cs-1-are-able-to-disrupt-e2f-containing-complexes-and-to-transactivate-e2f-motif-containing-promoters</loc>
		<lastmod>2019-11-26T12:43:46+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=cell-density-dependent-growth-reduction-in-interferon-alpha-resistant-u937-vr-unravels-different-mechanisms-of-e2f-1-inactivation</loc>
		<lastmod>2019-11-26T12:43:47+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=cell-density-dependent-growth-reduction-in-interferon-alpha-resistant-u937-vr-unravels-different-mechanisms-of-e2f-1-inactivation</loc>
		<lastmod>2019-11-26T12:43:47+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=influence-of-somatostatin-analogues-on-medullary-thyroid-carcinoma-in-vitro</loc>
		<lastmod>2020-09-04T10:38:38+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=influence-of-somatostatin-analogues-on-medullary-thyroid-carcinoma-in-vitro</loc>
		<lastmod>2020-09-04T10:38:39+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=bedeutung-der-sauerstoffkonzentration-fuer-die-plazentare-progranulinexpression-im-ersten-trimenon</loc>
		<lastmod>2020-09-05T08:49:04+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=5934</loc>
		<lastmod>2021-09-28T10:28:23+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=5934</loc>
		<lastmod>2021-09-28T10:28:57+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=maintaining-hepatic-pd-l1-expression-improves-sepsis-survival-in-a-murine-polymicrobial-sepsis-model-by-tolerizing-ctl</loc>
		<lastmod>2021-09-28T10:29:50+00:00</lastmod>
	</url>
	<url>
		<loc>https://www.iegt-rostock.de/?abstracts=maintaining-hepatic-pd-l1-expression-improves-sepsis-survival-in-a-murine-polymicrobial-sepsis-model-by-tolerizing-ctl</loc>
		<lastmod>2021-09-28T10:29:50+00:00</lastmod>
	</url>
</urlset>
<!-- XML Sitemap generated by Yoast SEO --><!-- permalink_structure ends with slash (/) but REQUEST_URI does not end with slash (/) -->