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videnskabelig artikel articol științific wetenschappelijk artikel 2010年论文 tieteellinen artikkeli artikulong pang-agham مقالة علمية نشرت في 20 يوليو 2010 2010年论文 vetenskaplig artikel 2010年論文 scientific article published on 20 July 2010 мақолаи илмӣ 2010年论文 2010年の論文 artículu científicu espublizáu en 2010 научная статья vedecký článok article scientifique articolo scientifico artikel ilmiah 2010年論文 vitenskapelig artikkel artigo científico 2010年论文 наукова стаття, опублікована в липні 2010 bài báo khoa học ২০ জুলাই ২০১০-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ 2010年論文 научни чланак scientific article published on 20 July 2010 2010年論文 tudományos cikk artigo científico artykuł naukowy научни чланак scientific article published on 20 July 2010 wissenschaftlicher Artikel vitskapeleg artikkel 2010년 논문 บทความทางวิทยาศาสตร์ מאמר מדעי bilimsel makale artikull shkencor article scientific teaduslik artikkel article científic 2010年论文 scienca artikolo vědecký článek სამეცნიერო სტატია 2010年論文 artigo científico επιστημονικό άρθρο naučni članak 2010 nî lūn-bûn 2010年论文 научна статия artículo científico publicado en 2010
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Jesus Garcia-Foncillas Ion Cristobal Ruth Zarate Nerea Bitarte Eva Bandres Javier Rodriguez Valentina Boni
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miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation. miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation. miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation.
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miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation. miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation. miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation.
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miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation. miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation. miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation.
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miR-192/miR-215 influence 5-fluorouracil resistance through cell cycle-mediated mechanisms complementary to its post-transcriptional thymidilate synthase regulation
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