Literature DB >> 31713638

Caloric restriction maintains stem cells through niche and regulates stem cell aging.

Nagarajan Maharajan1,2, Karthikeyan Vijayakumar1,2, Chul Ho Jang3, Goang-Won Cho4,5.   

Abstract

The functional loss of adult stem cells is a major cause of aging and age-related diseases. Changes in the stem cell niche, increased energy metabolic rate, and accumulation of cell damage severely affect the function and regenerative capacity of stem cells. Reducing the cellular damage and maintaining a pristine stem cell niche by regulating the energy metabolic pathways could be ideal for the proper functioning of stem cells and tissue homeostasis. Numerous studies point out that caloric restriction (CR) has beneficiary effects on stem cell maintenance and tissue regeneration. Recent researches indicate the preventive nature of calorie restriction in stem cells by modulating the stem cell niche through the reduction of energy metabolism and eventually decrease stem cell damage. In this review, we have focused on the general stimuli of stem cell aging, particularly the energy metabolism as an intrinsic influence and stem cell niche as an extrinsic influence in different adult stem cells. Further, we discussed the mechanism behind CR in different adult stem cells and their niche. Finally, we conclude on how CR can enhance the stem cell function and tissue homeostasis through the stem cells niche.

Entities:  

Keywords:  Aging; Caloric restriction; Energy metabolism; Longevity; Stem cell niche; Stem cells

Mesh:

Year:  2019        PMID: 31713638     DOI: 10.1007/s00109-019-01846-1

Source DB:  PubMed          Journal:  J Mol Med (Berl)        ISSN: 0946-2716            Impact factor:   4.599


  112 in total

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6.  Caloric restriction delays disease onset and mortality in rhesus monkeys.

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8.  An empty Drosophila stem cell niche reactivates the proliferation of ectopic cells.

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9.  Short-term treatment with rapamycin and dietary restriction have overlapping and distinctive effects in young mice.

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Review 3.  Aging of mesenchymal stem cell: machinery, markers, and strategies of fighting.

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5.  Delayed Treatment With Low-intensity Extracorporeal Shock Wave Therapy in an Irreversible Rat Model of Stress Urinary Incontinence.

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6.  Aging and Caloric Restriction Modulate the DNA Methylation Profile of the Ribosomal RNA Locus in Human and Rat Liver.

Authors:  Noémie Gensous; Francesco Ravaioli; Chiara Pirazzini; Roberto Gramignoli; Ewa Ellis; Gianluca Storci; Miriam Capri; Stephen Strom; Ezio Laconi; Claudio Franceschi; Paolo Garagnani; Fabio Marongiu; Maria Giulia Bacalini
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7.  Camphorquinone Promotes the Antisenescence Effect via Activating AMPK/SIRT1 in Stem Cells and D-Galactose-Induced Aging Mice.

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  7 in total

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