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Multisystem physiological perspective of human frailty and its modulation by physical activity.

Publication ,  Journal Article
Taylor, JA; Greenhaff, PL; Bartlett, DB; Jackson, TA; Duggal, NA; Lord, JM
Published in: Physiol Rev
April 1, 2023

"Frailty" is a term used to refer to a state characterized by enhanced vulnerability to, and impaired recovery from, stressors compared with a nonfrail state, which is increasingly viewed as a loss of resilience. With increasing life expectancy and the associated rise in years spent with physical frailty, there is a need to understand the clinical and physiological features of frailty and the factors driving it. We describe the clinical definitions of age-related frailty and their limitations in allowing us to understand the pathogenesis of this prevalent condition. Given that age-related frailty manifests in the form of functional declines such as poor balance, falls, and immobility, as an alternative we view frailty from a physiological viewpoint and describe what is known of the organ-based components of frailty, including adiposity, the brain, and neuromuscular, skeletal muscle, immune, and cardiovascular systems, as individual systems and as components in multisystem dysregulation. By doing so we aim to highlight current understanding of the physiological phenotype of frailty and reveal key knowledge gaps and potential mechanistic drivers of the trajectory to frailty. We also review the studies in humans that have intervened with exercise to reduce frailty. We conclude that more longitudinal and interventional clinical studies are required in older adults. Such observational studies should interrogate the progression from a nonfrail to a frail state, assessing individual elements of frailty to produce a deep physiological phenotype of the syndrome. The findings will identify mechanistic drivers of frailty and allow targeted interventions to diminish frailty progression.

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Published In

Physiol Rev

DOI

EISSN

1522-1210

Publication Date

April 1, 2023

Volume

103

Issue

2

Start / End Page

1137 / 1191

Location

United States

Related Subject Headings

  • Physiology
  • Obesity
  • Humans
  • Frailty
  • Frail Elderly
  • Exercise
  • Aged
  • Adiposity
  • 3208 Medical physiology
  • 11 Medical and Health Sciences
 

Citation

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Chicago
ICMJE
MLA
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Taylor, J. A., Greenhaff, P. L., Bartlett, D. B., Jackson, T. A., Duggal, N. A., & Lord, J. M. (2023). Multisystem physiological perspective of human frailty and its modulation by physical activity. Physiol Rev, 103(2), 1137–1191. https://doi.org/10.1152/physrev.00037.2021
Taylor, Joseph A., Paul L. Greenhaff, David B. Bartlett, Thomas A. Jackson, Niharika A. Duggal, and Janet M. Lord. “Multisystem physiological perspective of human frailty and its modulation by physical activity.Physiol Rev 103, no. 2 (April 1, 2023): 1137–91. https://doi.org/10.1152/physrev.00037.2021.
Taylor JA, Greenhaff PL, Bartlett DB, Jackson TA, Duggal NA, Lord JM. Multisystem physiological perspective of human frailty and its modulation by physical activity. Physiol Rev. 2023 Apr 1;103(2):1137–91.
Taylor, Joseph A., et al. “Multisystem physiological perspective of human frailty and its modulation by physical activity.Physiol Rev, vol. 103, no. 2, Apr. 2023, pp. 1137–91. Pubmed, doi:10.1152/physrev.00037.2021.
Taylor JA, Greenhaff PL, Bartlett DB, Jackson TA, Duggal NA, Lord JM. Multisystem physiological perspective of human frailty and its modulation by physical activity. Physiol Rev. 2023 Apr 1;103(2):1137–1191.

Published In

Physiol Rev

DOI

EISSN

1522-1210

Publication Date

April 1, 2023

Volume

103

Issue

2

Start / End Page

1137 / 1191

Location

United States

Related Subject Headings

  • Physiology
  • Obesity
  • Humans
  • Frailty
  • Frail Elderly
  • Exercise
  • Aged
  • Adiposity
  • 3208 Medical physiology
  • 11 Medical and Health Sciences