Is Growth Differentiation Factor 11 a Realistic Therapeutic for Aging-Dependent Muscle Defects?

被引:31
作者
Harper, Shavonn C.
Brack, Andrew
MacDonnell, Scott
Franti, Michael
Olwin, Bradley B.
Bailey, Beth A.
Rudnicki, Michael A.
Houser, Steven R.
机构
[1] Cardiovascular Research Center, Lewis Katz School of Medicine, Temple University, 3500 N Broad St, Philadelphia, 19140, PA
[2] Eli and Edythe Broad Center of Stem Cell Research and Regeneration Medicine, Department of Orthopaedic Surgery, University of California, San Francisco
[3] Boehringer Ingelheim Pharmaceuticals, Inc, Ridgefield, CT
[4] Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder
[5] Department of Biology, Ursinus College, Collegeville, PA
[6] Regenerative Medicine Program, Ottawa Hospital Research Institute, Ottawa, ON
[7] Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa, ON
关键词
aging; myokines; myocardium; growth factors; pathological hypertrophy; SKELETAL-MUSCLE; MYOSTATIN; GDF11; AGE; HYPERTROPHY; FAILURE; ATROPHY;
D O I
10.1161/CIRCRESAHA.116.307962
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
This "Controversies in Cardiovascular Research" article evaluates the evidence for and against the hypothesis that the circulating blood level of growth differentiation factor 11 (GDF11) decreases in old age and that restoring normal GDF11 levels in old animals rejuvenates their skeletal muscle and reverses pathological cardiac hypertrophy and cardiac dysfunction. Studies supporting the original GDF11 hypothesis in skeletal and cardiac muscle have not been validated by several independent groups. These new studies have either found no effects of restoring normal GDF11 levels on cardiac structure and function or have shown that increasing GDF11 or its closely related family member growth differentiation factor 8 actually impairs skeletal muscle repair in old animals. One possible explanation for what seems to be mutually exclusive findings is that the original reagent used to measure GDF11 levels also detected many other molecules so that age-dependent changes in GDF11 are still not well known. The more important issue is whether increasing blood [GDF11] repairs old skeletal muscle and reverses age-related cardiac pathologies. There are substantial new and existing data showing that GDF8/11 can exacerbate rather than rejuvenate skeletal muscle injury in old animals. There is also new evidence disputing the idea that there is pathological hypertrophy in old C57bl6 mice and that GDF11 therapy can reverse cardiac pathologies. Finally, high [GDF11] causes reductions in body and heart weight in both young and old animals, suggestive of a cachexia effect. Our conclusion is that elevating blood levels of GDF11 in the aged might cause more harm than good.
引用
收藏
页码:1142 / 1142
页数:1
相关论文
共 50 条
  • [41] Identification and expression of a novel transcript of the growth and differentiation factor-11 gene
    Ferenc Jeanplong
    Shelley J. Falconer
    Jenny M. Oldham
    Nauman J. Maqbool
    Mark Thomas
    Alex Hennebry
    Christopher D. McMahon
    [J]. Molecular and Cellular Biochemistry, 2014, 390 : 9 - 18
  • [42] Growth differentiation factor 11: A proangiogenic drug as a potential antiaging regulating molecule
    Rochette, Luc
    Dogon, Geoffrey
    Rigal, Eve
    Zeller, Marianne
    Cottin, Yves
    Vergely, Catherine
    [J]. ARCHIVES OF CARDIOVASCULAR DISEASES, 2023, 116 (01) : 41 - 46
  • [43] The neuroprotective and neurorestorative effects of growth differentiation factor 11 in cerebral ischemic injury
    Zhao, Yan
    Wang, Li-Hong
    Peng, Ai
    Liu, Xing-Yu
    Wang, Yue
    Huang, Shu-Hong
    Liu, Ting
    Wang, Xiao-Jing
    Chen, Zhe-Yu
    [J]. BRAIN RESEARCH, 2020, 1737
  • [44] Circulating Concentrations of Growth Differentiation Factor 11 Are Heritable and Correlate With Life Span
    Zhou, Yang
    Jiang, Zixuan
    Harris, Elizabeth C.
    Reeves, Jaxk
    Chen, Xianyan
    Pazdro, Robert
    [J]. JOURNALS OF GERONTOLOGY SERIES A-BIOLOGICAL SCIENCES AND MEDICAL SCIENCES, 2016, 71 (12): : 1560 - 1563
  • [45] Identification and expression of a novel transcript of the growth and differentiation factor-11 gene
    Jeanplong, Ferenc
    Falconer, Shelley J.
    Oldham, Jenny M.
    Maqbool, Nauman J.
    Thomas, Mark
    Hennebry, Alex
    McMahon, Christopher D.
    [J]. MOLECULAR AND CELLULAR BIOCHEMISTRY, 2014, 390 (1-2) : 9 - 18
  • [46] Growth differentiation factor 11 mitigates cardiac radiotoxicity via activating AMPKα
    Li, Xia
    Ding, Dong
    Chen, Wei
    Liu, Yu
    Pan, Haisong
    Hu, Jun
    [J]. FREE RADICAL RESEARCH, 2021, 55 (02) : 176 - 185
  • [47] Growth Differentiation Factor 11 Promotes Neurovascular Recovery After Stroke in Mice
    Lu, Lu
    Bai, Xiaofei
    Cao, Yongliang
    Luo, Haiyu
    Yang, Xing
    Kang, Wing
    Shi, Mei-Juan
    Fan, Wenying
    Zhao, Bing-Qiao
    [J]. FRONTIERS IN CELLULAR NEUROSCIENCE, 2018, 12
  • [48] Aging-dependent upregulation of IL-23p19 gene expression in dendritic cells is associated with differential transcription factor binding and histone modifications
    El Mezayen, Rabab
    El Gazzar, Mohamed
    Myer, Rebecca
    High, Kevin P.
    [J]. AGING CELL, 2009, 8 (05): : 553 - 565
  • [49] Transcription factor NRF2 as potential therapeutic target for preventing muscle wasting in aging chronic kidney disease patients
    Gomez-Garcia, Erika F.
    del Campo, Fabiola Martin
    Cortes-Sanabria, Laura
    Mendoza-Carrera, Francisco
    Avesani, Carla Maria
    Stenvinkel, Peter
    Lindholm, Bengt
    Cueto-Manzano, Alfonso M.
    [J]. JOURNAL OF NEPHROLOGY, 2022, 35 (09) : 2215 - 2225
  • [50] Growth differentiation factor 11 inhibits adipogenic differentiation by activating TGF-beta/Smad signalling pathway
    Luo, Hongke
    Guo, Yuchen
    Liu, Yuting
    Wang, Yuan
    Zheng, Rixin
    Ban, Yu
    Peng, Lin
    Yuan, Quan
    Liu, Weiqing
    [J]. CELL PROLIFERATION, 2019, 52 (04)