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Electrolyzed-reduced water increases resistance to oxidative stress, fertility, and lifespan via insulin/IGF-1-like signal in C. elegans

Authors
Park, Seul-KiPark, Sang-Kyu
Issue Date
2013
Publisher
Sociedad de Biologia de Chile
Keywords
Electrolyzed-reduced water; aging; daf-16; fertility; lifespan
Citation
Biological Research, v.46, no.2, pp 147 - 152
Pages
6
Journal Title
Biological Research
Volume
46
Number
2
Start Page
147
End Page
152
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/14568
DOI
10.4067/S0716-97602013000200005
ISSN
0716-9760
0717-6287
Abstract
Electrolyzed-reduced water (ERW) scavenges reactive oxygen species and is a powerful anti-oxidant. A positive correlation between oxidative stress and aging has been proved in many model organisms. In Caenorhabditis elegans, many long-lived mutants showed reduced fertility as a trade off against longevity phenotype. We aimed to study the effect of ERW on oxidative stress, fertility and lifespan of C. elegans. We also investigated the genetic pathway involved in the effect of ERW on resistance to oxidative stress and lifespan. We compared lifespan and fertility of worms in media prepared with distilled water and ERW. ERW significantly extended lifespan and increased the number of progeny produced. Then the effect of ERW on resistance to oxidative stress and lifespan of long-lived mutants was determined. ERW increased resistance to oxidative stress and lifespan of eat-2, a genetic model of dietary restriction, but had no effect on those of age-1, which is involved in insulin/insulin-like growth factor (IGF)-1-like signal. In addition, knockdown of daf-16, the downstream mediator of insulin/IGF-1-like signal, completely prevented the effect of ERW on lifespan. These findings suggest that ERW can extend lifespan without accompanying reduced fertility and modulate resistance to oxidative stress and lifespan via insulin/IGF-1-like signal in C. elegans.
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