Literature DB >> 30779009

Creatine, Creatine Kinase, and Aging.

Nathalie Sumien1, Ritu A Shetty1, Eric B Gonzales2.   

Abstract

With an ever aging population, identifying interventions that can alleviate age-related functional declines has become increasingly important. Dietary supplements have taken center stage based on various health claims and have become a multi-million dollar business. One such supplement is creatine, a major contributor to normal cellular physiology. Creatine, an energy source that can be endogenously synthesized or obtained through diet and supplement, is involved primarily in cellular metabolism via ATP replenishment. The goal of this chapter is to summarize how creatine and its associated enzyme, creatine kinase, act under normal physiological conditions, and how altered levels of either may lead to detrimental functional outcomes. Furthermore, we will focus on the effect of aging on the creatine system and how supplementation may affect the aging process and perhaps reverse it.

Entities:  

Keywords:  Aging; Anti-aging intervention; Creatine; Creatine kinase; Motor and cognitive function; Muscle function; Supplementation

Mesh:

Substances:

Year:  2018        PMID: 30779009     DOI: 10.1007/978-981-13-2835-0_6

Source DB:  PubMed          Journal:  Subcell Biochem        ISSN: 0306-0225


  10 in total

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Review 3.  Common questions and misconceptions about creatine supplementation: what does the scientific evidence really show?

Authors:  Jose Antonio; Darren G Candow; Scott C Forbes; Bruno Gualano; Andrew R Jagim; Richard B Kreider; Eric S Rawson; Abbie E Smith-Ryan; Trisha A VanDusseldorp; Darryn S Willoughby; Tim N Ziegenfuss
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Review 4.  Metabolic Basis of Creatine in Health and Disease: A Bioinformatics-Assisted Review.

Authors:  Diego A Bonilla; Richard B Kreider; Jeffrey R Stout; Diego A Forero; Chad M Kerksick; Michael D Roberts; Eric S Rawson
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6.  Distinct Serum and Fecal Metabolite Profiles Linking With Gut Microbiome in Older Adults With Frailty.

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8.  Redox-mediated regulation of aging and healthspan by an evolutionarily conserved transcription factor HLH-2/Tcf3/E2A.

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Authors:  Teodora Bucaciuc Mracica; Anca Anghel; Catalin Florentin Ion; Corina Violeta Moraru; Robi Tacutu; Gligor Andrei Lazar
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10.  To Synthesize Hydroxyapatite by Modified Low Temperature Method Loaded with Bletilla striata Polysaccharide as Antioxidant for the Prevention of Sarcopenia by Intramuscular Administration.

Authors:  Ya-Jyun Liang; Jia-Yu Hong; I-Hsuan Yang; Xin-Ran Zhou; Yi-Wen Lin; Tzu-Chieh Lin; Chun-Han Hou; Feng-Huei Lin
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  10 in total

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