Animal models of frailty: current applications in clinical research

Alice E Kane,1 Sarah N Hilmer,2–4 John Mach,2–4 Sarah J Mitchell,5 Rafael de Cabo,5 Susan E Howlett1 1Department of Pharmacology, Dalhousie University, Halifax, NS, Canada; 2Kolling Institute of Medical Research and Sydney Medical School, University of Sydney, 3Department of Cli...

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Autores principales: Kane AE, Hilmer SN, Mach J, Mitchell SJ, de Cabo R, Howlett SE
Formato: article
Lenguaje:EN
Publicado: Dove Medical Press 2016
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Acceso en línea:https://doaj.org/article/fecc6d14458b4e42ace086040a41627d
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Sumario:Alice E Kane,1 Sarah N Hilmer,2–4 John Mach,2–4 Sarah J Mitchell,5 Rafael de Cabo,5 Susan E Howlett1 1Department of Pharmacology, Dalhousie University, Halifax, NS, Canada; 2Kolling Institute of Medical Research and Sydney Medical School, University of Sydney, 3Department of Clinical Pharmacology, 4Department of Aged Care, Royal North Shore Hospital, Sydney, NSW, Australia; 5National Institute on Aging, National Institutes of Health, Baltimore, MD, USA Abstract: The ethical, logistical, and biological complications of working with an older population of people inherently limits clinical studies of frailty. The recent development of animal models of frailty, and tools for assessing frailty in animal models provides an invaluable opportunity for frailty research. This review summarizes currently published animal models of frailty including the interleukin-10 knock-out mouse, the mouse frailty phenotype assessment tool, and the mouse clinical frailty index. It discusses both current and potential roles of these models in research into mechanisms of frailty, interventions to prevent/delay frailty, and the effect of frailty on outcomes. Finally, this review discusses some of the challenges and opportunities of translating research findings from animals to humans. Keywords: mouse models, frailty index, frailty phenotype, IL-10 knock-out