Literature DB >> 20683658

Frailty and muscle metabolism dysregulation in the elderly.

W J Evans1, G Paolisso, A M Abbatecola, A Corsonello, S Bustacchini, F Strollo, F Lattanzio.   

Abstract

The frailty syndrome is increasingly recognized by geriatricians to identify elders at an extreme risk of adverse health outcomes. The physiological changes that result in frailty are complex and up to now have been extremely difficult to characterize due to the frequent coexistence of acute and chronic illness. Frailty is characterized by an decline in the functional reserve with several alterations in diverse physiological systems, including lower energy metabolism, decreased skeletal muscle mass and quality, altered hormonal and inflammatory functions. This altered network leads to an extreme vulnerability for disease, functional dependency, hospitalization and death. One of the most important core components of the frailty syndrome is a decreased reserve in skeletal muscle functioning which is clinically characterized by a loss in muscle mass and strength (sarcopenia), in walking performance and in endurance associated with a perception of exhaustion and fatigue. There are a number of physiological changes that occur in senescent muscle tissues that have a critical effect on body metabolism. The causes of sarcopenia are multi-factorial and can include disuse, changing hormonal function, chronic diseases, inflammation, insulin resistance, and nutritional deficiencies. In this review, we will explore the dysregulation of some biological mechanisms that may contribute to the pathophysiology of the frailty syndrome through age-related changes in skeletal muscle mass and function.

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Year:  2010        PMID: 20683658     DOI: 10.1007/s10522-010-9297-0

Source DB:  PubMed          Journal:  Biogerontology        ISSN: 1389-5729            Impact factor:   4.277


  59 in total

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2.  The impact of protein supplementation on cognitive performance in frail elderly.

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Journal:  Lasers Med Sci       Date:  2017-11-27       Impact factor: 3.161

4.  Global DNA methylation in old subjects is correlated with frailty.

Authors:  Dina Bellizzi; Patrizia D'Aquila; Alberto Montesanto; Andrea Corsonello; Vincenzo Mari; Bruno Mazzei; Fabrizia Lattanzio; Giuseppe Passarino
Journal:  Age (Dordr)       Date:  2011-02-19

5.  The Predictability of Frailty Associated with Musculoskeletal Deficits: A Longitudinal Study.

Authors:  Monica C Tembo; Mohammadreza Mohebbi; Kara L Holloway-Kew; James Gaston; Sharon L Brennan-Olsen; Lana J Williams; Mark A Kotowicz; Julie A Pasco
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Review 6.  The aging musculoskeletal system and obesity-related considerations with exercise.

Authors:  Heather K Vincent; Sara N Raiser; Kevin R Vincent
Journal:  Ageing Res Rev       Date:  2012-03-15       Impact factor: 10.895

7.  Biomarker-calibrated protein intake and physical function in the Women's Health Initiative.

Authors:  Jeannette M Beasley; Betsy C Wertheim; Andrea Z LaCroix; Ross L Prentice; Marian L Neuhouser; Lesley F Tinker; Stephen Kritchevsky; James M Shikany; Charles Eaton; Zhao Chen; Cynthia A Thomson
Journal:  J Am Geriatr Soc       Date:  2013-10-28       Impact factor: 5.562

8.  PTPN22 gene functional polymorphism (rs2476601) in older adults with frailty syndrome.

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Journal:  Mol Biol Rep       Date:  2021-02-21       Impact factor: 2.316

9.  Developing a new treatment paradigm for disease prevention and healthy aging.

Authors:  Richard A Winett; Brenda M Davy; Elaina Marinik; Jyoti Savla; Sheila G Winett; Stuart M Phillips; Lesley D Lutes
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Review 10.  Frailty and safety: the example of diabetes.

Authors:  Angela M Abbatecola; Fabiola Olivieri; Andrea Corsonello; Felice Strollo; Alessia Fumagalli; Fabrizia Lattanzio
Journal:  Drug Saf       Date:  2012-01       Impact factor: 5.606

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