Age-dependent decline in fin regenerative capacity in the short-lived fish Nothobranchius furzeri

被引:49
作者
Wendler, Sebastian [1 ]
Hartmann, Nils [1 ]
Hoppe, Beate [1 ]
Englert, Christoph [1 ,2 ]
机构
[1] Fritz Lipmann Inst FLI, Leibniz Inst Age Res, Mol Genet Lab, D-07745 Jena, Germany
[2] Univ Jena, Fac Biol & Pharm, D-07743 Jena, Germany
关键词
aging; caudal fin; epimorphic regeneration; short lifespan; teleost killifish; ZEBRAFISH DANIO-RERIO; TISSUE REGENERATION; ADULT ZEBRAFISH; CAUDAL FIN; CELLS; SENESCENCE; GROWTH; PROLIFERATION; MECHANISMS; EXPRESSION;
D O I
10.1111/acel.12367
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The potential to regenerate declines with age in a wide range of organisms. A popular model system to study the mechanisms of regeneration is the fin of teleost fish, which has the ability to fully regrow upon amputation. Here, we used the short-lived killifish Nothobranchius furzeri to analyse the impact of aging on fin regeneration in more detail. We observed that young fish were able to nearly completely (98%) regenerate their amputated caudal fins within 4weeks, whereas middle-aged fish reached 78%, old fish 57% and very old fish 46% of their original fin size. The difference in growth rate between young and old fish was already significant at 3days post amputation (dpa) and increased with time. We therefore hypothesized that early events are crucial for the age-related differences in regenerative capacity. Indeed, we could observe a higher percentage of proliferating cells in early regenerating fin tissue of young fish compared with aged fish and larger fractions of apoptotic cells in aged fish. Furthermore, young fish showed peak upregulation of several genes involved in fgf and wnt/-catenin signalling at an earlier time point than old fish. Our findings suggest that regenerative processes are initiated earlier and that regeneration overall is more efficient in younger fish.
引用
收藏
页码:857 / 866
页数:10
相关论文
共 43 条
  • [1] AKIMENKO MA, 1995, DEVELOPMENT, V121, P347
  • [2] Behaviour of Telomere and Telomerase during Aging and Regeneration in Zebrafish
    Anchelin, Monique
    Murcia, Laura
    Alcaraz-Perez, Francisca
    Garcia-Navarro, Esther M.
    Cayuela, Maria L.
    [J]. PLOS ONE, 2011, 6 (02):
  • [3] Rapid growth, early maturation and short generation time in African annual fishes
    Blazek, Radim
    Polacik, Matej
    Reichard, Martin
    [J]. EVODEVO, 2013, 4
  • [4] Factors Promoting Increased Rate of Tissue Regeneration: The Zebrafish Fin as a Tool for Examining Tissue Engineering Design Concepts
    Boominathan, Vijay P.
    Ferreira, Tracie L.
    [J]. ZEBRAFISH, 2012, 9 (04) : 207 - 219
  • [5] MICE REGROW THE TIPS OF THEIR FORETOES
    BORGENS, RB
    [J]. SCIENCE, 1982, 217 (4561) : 747 - 750
  • [6] Small molecule-mediated disruption of Wnt-dependent signaling in tissue regeneration and cancer
    Chen, Baozhi
    Dodge, Michael E.
    Tang, Wei
    Lu, Jianming
    Ma, Zhiqiang
    Fan, Chih-Wei
    Wei, Shuguang
    Hao, Wayne
    Kilgore, Jessica
    Williams, Noelle S.
    Roth, Michael G.
    Amatruda, James F.
    Chen, Chuo
    Lum, Lawrence
    [J]. NATURE CHEMICAL BIOLOGY, 2009, 5 (02) : 100 - 107
  • [7] Rejuvenation of aged progenitor cells by exposure to a young systemic environment
    Conboy, IM
    Conboy, MJ
    Wagers, AJ
    Girma, ER
    Weissman, IL
    Rando, TA
    [J]. NATURE, 2005, 433 (7027) : 760 - 764
  • [8] DOUGLAS BS, 1972, AUST PAEDIATR J, V8, P86
  • [9] Regenerative capacity in newts is not altered by repeated regeneration and ageing
    Eguchi, Goro
    Eguchi, Yukiko
    Nakamura, Kenta
    Yadav, Manisha C.
    Millan, Jose Luis
    Tsonis, Panagiotis A.
    [J]. NATURE COMMUNICATIONS, 2011, 2
  • [10] Sustained production of ROS triggers compensatory proliferation and is required for regeneration to proceed
    Gauron, Carole
    Rampon, Christine
    Bouzaffour, Mohamed
    Ipendey, Eliane
    Teillon, Jeremie
    Volovitch, Michel
    Vriz, Sophie
    [J]. SCIENTIFIC REPORTS, 2013, 3