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3401por Tanisawa, Kumpei, Mikami, Eri, Fuku, Noriyuki, Honda, Yoko, Honda, Shuji, Ohsawa, Ikuro, Ito, Masafumi, Endo, Shogo, Ihara, Kunio, Ohno, Kinji, Kishimoto, Yuki, Ishigami, Akihito, Maruyama, Naoki, Sawabe, Motoji, Iseki, Hiroyoshi, Okazaki, Yasushi, Hasegawa-Ishii, Sanae, Takei, Shiro, Shimada, Atsuyoshi, Hosokawa, Masanori, Mori, Masayuki, Higuchi, Keiichi, Takeda, Toshio, Higuchi, Mitsuru, Tanaka, Masashi“…BACKGROUND: Senescence-accelerated mice (SAM) are a series of mouse strains originally derived from unexpected crosses between AKR/J and unknown mice, from which phenotypically distinct senescence-prone (SAMP) and -resistant (SAMR) inbred strains were subsequently established. …”
Publicado 2013
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3402por Acharyya, Swarnali“…In a second study on HER2-driven breast cancer, Angelini and colleagues investigate how the constitutively active, truncated carboxy-terminal fragment of HER2, p95HER2, promotes metastatic progression through non-cellautonomous secretion of factors from senescent cells. These new findings advance our understanding of HER2 biology in the context of HER2 activation as well as offer new insights into our understanding of drug sensitivity and metastatic progression.…”
Publicado 2013
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3403por Gambino, Valentina, De Michele, Giulia, Venezia, Oriella, Migliaccio, Pierluigi, Dall'Olio, Valentina, Bernard, Loris, Minardi, Simone Paolo, Fazia, Maria Agnese Della, Bartoli, Daniela, Servillo, Giuseppe, Alcalay, Myriam, Luzi, Lucilla, Giorgio, Marco, Scrable, Heidi, Pelicci, Pier Giuseppe, Migliaccio, Enrica“…Oxidative stress is a determining factor of cellular senescence and aging and a potent inducer of the tumour-suppressor p53. …”
Publicado 2013
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3404“…Cellular senescence is post-mitotic or oncogene-induced events combined with nuclear remodeling. …”
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3405por Zhou, Zhong-Wei, Liu, Cong, Li, Tang-Liang, Bruhn, Christopher, Krueger, Anja, Min, WooKee, Wang, Zhao-Qi, Carr, Antony M.“…AAD inactivation impaired cell proliferation, promoted premature senescence and compromised Chk1 signalling following UV irradiation. …”
Publicado 2013
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3406por Thijssen, Peter E., Tobi, Elmar W., Balog, Judit, Schouten, Suzanne G., Kremer, Dennis, El Bouazzaoui, Fatiha, Henneman, Peter, Putter, Hein, Eline Slagboom, P., Heijmans, Bastiaan T., Van der Maarel, Silvère M.“…Upon senescence, both subtelomeres were characterized by a decrease in markers of constitutive heterochromatin, suggesting relative chromatin relaxation. …”
Publicado 2013
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3408por ZHOU, Bing-rong, GUO, Xian-fei, ZHANG, Jia-an, XU, Yang, LI, Wei, WU, Di, YIN, Zhi-qiang, Permatasari, Felicia, LUO, Dan“…It has also been reported that miR-34c-5p may be involved in senescence-related mechanisms. We propose that miR-34c-5p may play a crucial role in senescence of normal human primary dermal fibroblasts. …”
Publicado 2013
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3409por Despars, Geneviève, Carbonneau, Cynthia L., Bardeau, Pascal, Coutu, Daniel L., Beauséjour, Christian M.“…DNA damage can lead to the induction of cellular senescence. In particular, we showed that exposure to ionizing radiation (IR) leads to the senescence of bone marrow-derived multipotent stromal cells (MSC) and osteoblast-like stromal cells (OB–SC), a phenotype associated with bone loss. …”
Publicado 2013
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3410“…Of note, senescent hMESCs exhibited high resistance to apoptosis. …”
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3411por Li, Ying-Bo, Zhong, Zhang-Feng, Chen, Mei-Wan, Bao, Jiao-Lin, Wu, Guo-Sheng, Zhang, Qing-Wen, Lee, Simon Ming-Yuen, Hoi, Pui-Man, Wang, Yi-Tao“…In this study, t-BHP-induced premature senescence model in human fibroblasts was chosen to explore the protective effects of a curcuminoid, bisdemethoxycurcumin (BDMC), on cellular senescence. …”
Publicado 2013
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3412“…Cellular senescence was induced using a stress-induced premature senescence protocol consisting of three successive once-daily exposure of cells to 1×10(−8) mol/L angiotensin II and was dependent upon the type-1 angiotensin II receptor. …”
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3413por Matsuyama, Makoto, Tanaka, Hiroki, Inoko, Akihito, Goto, Hidemasa, Yonemura, Shigenobu, Kobori, Kyoko, Hayashi, Yuko, Kondo, Eisaku, Itohara, Shigeyoshi, Izawa, Ichiro, Inagaki, Masaki“…Because the mRNA level of the senescence (aging)-related gene was significantly elevated in samples from VIM(SA/SA), the lens phenotype suggests a possible causal relationship between chromosomal instability and premature aging.…”
Publicado 2013
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3414Senescence Marker Protein 30 Has a Cardio-Protective Role in Doxorubicin-Induced Cardiac Dysfunctionpor Miyata, Makiko, Suzuki, Satoshi, Misaka, Tomofumi, Shishido, Tetsuro, Saitoh, Shu-ichi, Ishigami, Akihito, Kubota, Isao, Takeishi, Yasuchika“…BACKGROUND: Senescence marker protein 30 (SMP30), which was originally identified as an aging marker protein, is assumed to act as a novel anti-aging factor in the liver, lungs and brain. …”
Publicado 2013
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3417“…Introduction of “reprogramming factors”, Oct4, Sox2, Klf4, cMyc and Lin28, into senescent fibroblasts and measuring the changes in HP1β mobility as reprogramming proceeds shows that the mobility of HP1β in senescent cells increases and by day 9 is the same as that found in young fibroblasts. …”
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3418por Schellenberg, Anne, Mauen, Sébastien, Koch, Carmen Mareike, Jans, Ralph, de Waele, Peter, Wagner, Wolfgang“…BACKGROUND: Tracking of replicative senescence is of fundamental relevance in cellular therapy. …”
Publicado 2014
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3419por Greussing, Ruth, Hackl, Matthias, Charoentong, Pornpimol, Pauck, Alexander, Monteforte, Rossella, Cavinato, Maria, Hofer, Edith, Scheideler, Marcel, Neuhaus, Michael, Micutkova, Lucia, Mueck, Christoph, Trajanoski, Zlatko, Grillari, Johannes, Jansen-Dürr, Pidder“…BACKGROUND: Cellular senescence can be induced by a variety of extrinsic stimuli, and sustained exposure to sunlight is a key factor in photoaging of the skin. …”
Publicado 2013
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3420SIRT1 ameliorates age-related senescence of mesenchymal stem cells via modulating telomere shelterinpor Chen, Huiqiang, Liu, Xianbao, Zhu, Wei, Chen, Han, Hu, Xinyang, Jiang, Zhi, Xu, Yinchuan, Wang, Lihan, Zhou, Yu, Chen, Panpan, Zhang, Na, Hu, Dexing, Zhang, Ling, Wang, Yaping, Xu, Qiyuan, Wu, Rongrong, Yu, Hong, Wang, Jian'an“…Here, we describe the effects of SIRT1, a NAD(+)-dependent deacetylase, on age-related MSCs senescence. Knockdown of SIRT1 in young MSCs induced cellular senescence and inhibited cell proliferation whereas overexpression of SIRT1 in aged MSCs reversed the senescence phenotype and stimulated cell proliferation. …”
Publicado 2014
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