A complex systems approach to aging biology

被引:0
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作者
Alan A. Cohen
Luigi Ferrucci
Tamàs Fülöp
Dominique Gravel
Nan Hao
Andres Kriete
Morgan E. Levine
Lewis A. Lipsitz
Marcel G. M. Olde Rikkert
Andrew Rutenberg
Nicholas Stroustrup
Ravi Varadhan
机构
[1] University of Sherbrooke,PRIMUS Research Group, Department of Family Medicine
[2] Research Center on Aging and Research Center of Centre Hospitalier Universitaire de Sherbrooke,Butler Columbia Aging Center and Department of Environmental Health Sciences, Mailman School of Public Health
[3] Columbia University,Department of Medicine, Geriatric Division
[4] Intramural Research Program of the National Institute on Aging,Department of Biology
[5] University of Sherbrooke,Section of Molecular Biology, Division of Biological Sciences
[6] University of Sherbrooke,School of Biomedical Engineering, Science and Health Systems
[7] University of California,Department of Pathology
[8] San Diego,Beth Israel Deaconess Medical Center
[9] Drexel University,Department of Geriatrics
[10] Yale School of Medicine,Department of Physics and Atmospheric Science
[11] Hebrew SeniorLife,Centre for Genomic Regulation (CRG)
[12] Hinda and Arthur Marcus Institute for Aging Research,Department of Oncology, Quantitative Sciences Division
[13] and Harvard Medical School,undefined
[14] Radboud University Medical Centre,undefined
[15] Dalhousie University,undefined
[16] The Barcelona Institute of Science and Technology,undefined
[17] Universitat Pompeu Fabra (UPF),undefined
[18] Johns Hopkins University,undefined
来源
Nature Aging | 2022年 / 2卷 / 7期
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摘要
Having made substantial progress understanding molecules, cells, genes and pathways, aging biology research is now moving toward integration of these parts, attempting to understand how their joint dynamics may contribute to aging. Such a shift of perspective requires the adoption of a formal complex systems framework, a transition being facilitated by large-scale data collection and new analytical tools. Here, we provide a theoretical framework to orient researchers around key concepts for this transition, notably emergence, interaction networks and resilience. Drawing on evolutionary theory, network theory and principles of homeostasis, we propose that organismal function is accomplished by the integration of regulatory mechanisms at multiple hierarchical scales, and that the disruption of this ensemble causes the phenotypic and functional manifestations of aging. We present key examples at scales ranging from sub-organismal biology to clinical geriatrics, outlining how this approach can potentially enrich our understanding of aging.
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页码:580 / 591
页数:11
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