a human-like senescence-associated secretory phenotype is conserved in mouse cells dependent on physiological oxygen一个人形senescence-associated分泌表型是守恒的老鼠细胞依赖于生理上的氧气.pdfVIP
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a human-like senescence-associated secretory phenotype is conserved in mouse cells dependent on physiological oxygen一个人形senescence-associated分泌表型是守恒的老鼠细胞依赖于生理上的氧气
A Human-Like Senescence-Associated Secretory Phenotype Is Conserved in Mouse Cells Dependent on Physiological Oxygen ´ 1,2¤a 1,2. 1,2.¤b 1¤c Jean-Philippe Coppe , Christopher K. Patil , Francis Rodier , Ana Krtolica , Christian M. ´ 3 1¤d 4¤e 4 1,2,5 Beausejour , Simona Parrinello , J. Graeme Hodgson , Koei Chin , Pierre-Yves Desprez , Judith Campisi1,2* 1 Life Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California, United States of America, 2 Buck Institute for Age Research, Novato, California, United ´ ´ ´ ´ ´ States of America, 3 Centre de Recherche du CHU Ste-Justine et Departement de Pharmacologie, Universite de Montreal, Montreal, Quebec, Canada, 4 Department of Laboratory Medicine, Comprehensive Cancer Center, University of California San Francisco, San Francisco, California, United States of America, 5 California Pacific Medical Center Research Institute, San Francisco, California, United States of America Abstract Cellular senescence irreversibly arrests cell proliferation in response to oncogenic stimuli. Human cells develop a senescence-associated secretory phenotype (SASP), which increases the secretion of cytokines and other factors that alter the behavior of neighboring cells. We show here that ‘‘senescent’’ mouse fibroblasts, which arrested growth after repeated passage under standard culture conditions (20% oxygen),
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