Cellular Senescence: Mechanisms, Morphology, and Mouse Models

被引:54
作者
Beck, Jessica [1 ,2 ]
Horikawa, Izumi [1 ]
Harris, Curtis [1 ]
机构
[1] NCI, Lab Human Carcinogenesis, NIH, Bldg 37, Bethesda, MD 20892 USA
[2] Purdue Univ, W Lafayette, IN 47907 USA
关键词
aging; cancer; cellular senescence; chronic disease; experimental animal models; inflammation; review; SASP; SECRETORY PHENOTYPE; OXIDATIVE STRESS; MURINE MODEL; DNA-DAMAGE; REPLICATIVE SENESCENCE; PROMOTES SENESCENCE; BETA-GALACTOSIDASE; ENDOTHELIAL-CELLS; MICE DEFICIENT; P53;
D O I
10.1177/0300985820943841
中图分类号
R36 [病理学];
学科分类号
100104 ;
摘要
Cellular senescence is a cell cycle arrest in damaged or aged cells. Although this represents a critical mechanism of tumor suppression, persistence of senescent cells during aging induces chronic inflammation and tissue dysfunction through the adoption of the senescence-associated secretory phenotype (SASP). This has been shown to promote the progression of age-associated diseases such as Alzheimer's disease, pulmonary fibrosis, and atherosclerosis. As the global population ages, the role of cellular senescence in disease is becoming a more critical area of research. In this review, mechanisms, biomarkers, and pathology of cellular senescence and SASP are described with a brief discussion of literature supporting a role for cellular senescence in veterinary diseases. Cell culture and mouse models used in senescence studies are also reviewed including the senescence-accelerated mouse-prone (SAMP), senescence pathway knockout mice (p53, p21 [CDKN1A], and p16 [CDKN2A]), and the more recently developed senolysis mice, which allow for direct visualization and elimination (or lysis) of senescent cells in live mice (p16-3MR and INK-ATTAC). These and other mouse models have demonstrated the importance of cellular senescence in embryogenesis and wound healing but have also identified a therapeutic benefit for targeting persistent senescent cells in age-associated diseases including neurodegeneration, diabetes, and cardiac fibrosis.
引用
收藏
页码:747 / 757
页数:11
相关论文
共 158 条
[21]  
Campisi J, 2001, TRENDS CELL BIOL, V11, pS27, DOI 10.1016/S0962-8924(01)82148-6
[22]   Aging, Cellular Senescence, and Cancer [J].
Campisi, Judith .
ANNUAL REVIEW OF PHYSIOLOGY, VOL 75, 2013, 75 :685-705
[23]   Hyperphosphorylation of microtubule-associated protein tau in senescence-accelerated mouse (SAM) [J].
Canudas, AM ;
Gutierrez-Cuesta, J ;
Rodríguez, MI ;
Acuña-Castroviejo, D ;
Sureda, FX ;
Camins, A ;
Pallàs, M .
MECHANISMS OF AGEING AND DEVELOPMENT, 2005, 126 (12) :1300-1304
[24]   Canine rheumatoid arthritis and inflammatory cytokines [J].
Carter, SD ;
Barnes, A ;
Gilmore, WH .
VETERINARY IMMUNOLOGY AND IMMUNOPATHOLOGY, 1999, 69 (2-4) :201-214
[25]  
Chen QM, 2000, J CELL SCI, V113, P4087
[26]   The Senescence-accelerated Mouse (SAM): A Higher Oxidative Stress and Age-dependent Degenerative Diseases Model [J].
Chiba, Yoichi ;
Shimada, Atsuyoshi ;
Kumagai, Naoko ;
Yoshikawa, Keisuke ;
Ishii, Sanae ;
Furukawa, Ayako ;
Takei, Shiro ;
Sakura, Masaaki ;
Kawamura, Noriko ;
Hosokawa, Masanori .
NEUROCHEMICAL RESEARCH, 2009, 34 (04) :679-687
[27]   Control of the senescence-associated secretory phenotype by NF-κB promotes senescence and enhances chemosensitivity [J].
Chien, Yuchen ;
Scuoppo, Claudio ;
Wang, Xiaowo ;
Fang, Xueping ;
Balgley, Brian ;
Bolden, Jessica E. ;
Premsrirut, Prem ;
Luo, Weijun ;
Chicas, Agustin ;
Lee, Cheng S. ;
Kogan, Scott C. ;
Lowe, Scott W. .
GENES & DEVELOPMENT, 2011, 25 (20) :2125-2136
[28]   Senescent intimal foam cells are deleterious at all stages of atherosclerosis [J].
Childs, Bennett G. ;
Baker, Darren J. ;
Wijshake, Tobias ;
Conover, Cheryl A. ;
Campisi, Judith ;
van Deursen, Jan M. .
SCIENCE, 2016, 354 (6311) :472-477
[29]  
Chou JP, 2013, CURR PHARM DESIGN, V19, P1680
[30]   Aging in the Canine Kidney [J].
Cianciolo, R. E. ;
Benali, S. L. ;
Aresu, L. .
VETERINARY PATHOLOGY, 2016, 53 (02) :299-308