• Title/Summary/Keyword: Lifespan. Oxidative stress

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Buckwheat Extract Increases Resistance to Oxidative Stress and Lifespan in Caenorhabditis elegans (꼬마선충에서 메밀 추출물에 의한 산화성 스트레스 저항성 증가 및 수명 연장 효과)

  • Kim, Chul Kyu;Park, Sang Kyu
    • Korean Journal of Medicinal Crop Science
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    • v.21 no.1
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    • pp.1-6
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    • 2013
  • Buckwheat (Fagopyrum esculentum) has been known for having strong anti-oxidant, anti-mutagenic, and anti-carcinogenic activities. The free radical theory of aging, also known as the oxidative stress theory of aging, claims that cellular oxidative damage accumulated with time is a major causal factor of aging. In the present study, we investigated the effect of buckwheat extracts on resistance to oxidative stress and aging using Caenorhabditis elegans as a model system. Survival under an oxidative-stress condition induced by paraquat increased markedly following 500mg/L buckwheat extracts treatment, suggesting lower cellular oxidative damage by buckwheat extracts. A lifespan assay also revealed that treatment of buckwheat extracts significantly extended both the mean and maximum lifespan in C. elegans. Interestingly, this lifespan-extension by buckwheat extracts was not accompanied by reduced fertility. These findings suggest that buckwheat extracts can confer longevity phenotype to C. elegans through its strong anti-oxidant activity and support the aging theory which emphasizes a pivotal role of oxidative stress during aging.

Lifespan Extending and Stress Resistant Properties of Vitexin from Vigna angularis in Caenorhabditis elegans

  • Lee, Eun Byeol;Kim, Jun Hyeong;Cha, Youn-Soo;Kim, Mina;Song, Seuk Bo;Cha, Dong Seok;Jeon, Hoon;Eun, Jae Soon;Han, Sooncheon;Kim, Dae Keun
    • Biomolecules & Therapeutics
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    • v.23 no.6
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    • pp.582-589
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    • 2015
  • Several theories emphasize that aging is closely related to oxidative stress and disease. The formation of excess ROS can lead to DNA damage and the acceleration of aging. Vigna angularis is one of the important medicinal plants in Korea. We isolated vitexin from V. angularis and elucidated the lifespan-extending effect of vitexin using the Caenorhabditis elegans model system. Vitexin showed potent lifespan extensive activity and it elevated the survival rates of nematodes against the stressful environments including heat and oxidative conditions. In addition, our results showed that vitexin was able to elevate antioxidant enzyme activities of worms and reduce intracellular ROS accumulation in a dose-dependent manner. These studies demonstrated that the increased stress tolerance of vitexin-mediated nematode could be attributed to increased expressions of stress resistance proteins such as superoxide dismutase (SOD-3) and heat shock protein (HSP-16.2). In this work, we also studied whether vitexin-mediated longevity activity was associated with aging-related factors such as progeny, food intake, growth and movement. The data revealed that these factors were not affected by vitexin treatment except movement. Vitexin treatment improved the body movement of aged nematode, suggesting vitexin affects healthspan as well as lifespan of nematode. These results suggest that vitexin might be a probable candidate which could extend the human lifespan.

Effects of Acorn Powder on Lifespan and a Resistance to Oxidative Stress in Caenorhabditis elegans (도토리 분말이 선충의 산화성 스트레스 저항성과 수명에 미치는 효과)

  • Lee, Soon-Young;Lee, Jin-Sun;Park, Sang-Kyu
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.42 no.5
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    • pp.670-674
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    • 2013
  • The free radical theory of aging suggests that oxidative damage caused by free radicals plays a key role in normal aging. We measured the anti-oxidant activity of acorns and asked whether it can modulate the aging process in Caenorhabditis elegans. Different concentrations of acorn powder were added to culture medium, followed by the monitoring of fertility and survival under oxidative stress. The anti-oxidant activity of 500 mg/L of acorn powder exhibited significant increases in the resistance to oxidative stress in vivo. Acorn powder also significantly extended both the mean and maximum lifespan of C. elegans (the mean lifespan was increased up to 22.4%). The fertility assay indicates the lifespan extension from acorn does not accompany a reduced reproduction, which is common in long-lived mutants. These findings indicate that acorn has a strong antioxidant activity and can induce longevity without the trade-off of reduced reproduction in C. elegans.

Effects of genistin from Vigna angularis on Lifespan-extending in Caenorhabditis elegans (팥에서 분리한 Genistin이 선충의 수명연장에 미치는 영향)

  • Lee, Eun Byeol;Ahn, Dalrae;Kim, Ban Ji;Lee, So Yeon;Cha, Youn-Soo;Kim, Mina;Song, Seuk Bo;Kim, Dae Keun
    • Korean Journal of Pharmacognosy
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    • v.46 no.1
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    • pp.17-22
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    • 2015
  • Previous phytochemical studies of Vigna angularis (Ohwi) Ohwi & Ohashi (Leguminosae) have shown the presence of saponins and flavonoids. From the seed of V. angularis, genistein-7-O-${\beta}$-D-glucopyranoside (genistin) was isolated. Lifespan-extending effect of genistin was elucidated using Caenorhabditis elegans model system. Genistin showed potent lifespan extension of worms under normal culture condition. This compound also exhibited the protective effects against thermal and oxidative stress conditions. In the case of heat stress, genistin-treated worms exhibited enhanced survival rate, compared to control worms. In addition, genistin-fed worms lived longer than control worms under oxidative stress induced by paraquat. To verify the possible mechanism of genistin-mediated increased lifespan and stress resistance of worms, we investigated whether genistin might alter superoxide dismutase (SOD), catalase activities and intracellular ROS levels. Our results showed that genistin was able to elevate SOD and catalase activities of worms and reduce intracellular ROS accumulation in a dose-dependent manner.

The Longevity Properties of 1,2,3,4,6-Penta-O-Galloyl-β-D-Glucose from Curcuma longa in Caenorhabditis elegans

  • Ahn, Dalrae;Cha, Dong Seok;Lee, Eun Byeol;Kim, Ban Ji;Lee, So Yeon;Jeon, Hoon;Ahn, Min-Sil;Lim, Hye Won;Lee, Heon Yong;Kim, Dae Keun
    • Biomolecules & Therapeutics
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    • v.21 no.6
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    • pp.442-446
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    • 2013
  • Here in this study, we isolated 1,2,3,4,6-penta-O-galloyl-${\beta}$-D-glucose (PGG) from Curcuma longa L. and elucidated the lifespan-extending effect of PGG using Caenorhabditis elegans model system. In the present study, PGG demonstrated potent lifespan extension of worms under normal culture condition. Then, we determined the protective effects of PGG on the stress conditions such as thermal and oxidative stress. In the case of heat stress, PGG-treated worms exhibited enhanced survival rate, compared to control worms. In addition, PGG-fed worms lived longer than control worms under oxidative stress induced by paraquat. To verify the possible mechanism of PGG-mediated increased lifespan and stress resistance of worms, we investigated whether PGG might alter superoxide dismutase (SOD) activities and intracellular ROS levels. Our results showed that PGG was able to elevate SOD activities of worms and reduce intracellular ROS accumulation in a dose-dependent manner.

Moringa oleifera Prolongs Lifespan via DAF-16/FOXO Transcriptional Factor in Caenorhabditis elegans

  • Im, Jun Sang;Lee, Ha Na;Oh, Jong Woo;Yoon, Young Jin;Park, Jin Suck;Park, Ji Won;Kim, Jung Hoon;Kim, Yong Sung;Cha, Dong Seok;Jeon, Hoon
    • Natural Product Sciences
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    • v.22 no.3
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    • pp.201-208
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    • 2016
  • Here in this study, we investigated the lifespan-extending effect and underlying mechanism of methanolic extract of Moringa olelifa leaves (MML) using Caenorhabditis elegans (C. elegans) model system. To define the longevity properties of MML we conducted lifespan assay and MML showed significant increase in lifespan under normal culture condition. In addition, MML elevated stress tolerance of C. elegans to endure against thermal, oxidative and osmotic stress conditions. Our data also revealed that increased activities of antioxidant enzymes and expressions of stress resistance proteins were attributed to MML-mediated enhanced stress resistance. We further investigated the involvement of MML on the aging-related factors such as growth, food intake, fertility, and motility. Interestingly, MML significantly reduced growth and egg-laying, suggesting these factors were closely linked with MML-mediated longevity. We also observed the movement of aged worms to estimate the effects of MML on the health span. Herein, MML efficiently elevated motility of aged worms, indicating MML may affect health span as well as lifespan. Our genetic analysis using knockout mutants showed that lifespan-extension activity of MML was interconnected with several genes such as skn-1, sir-2.1, daf-2, age-1 and daf-16. Based on these results, we could conclude that MML prolongs the lifespan of worms via activation of SKN-1 and SIR-2.1 and inhibition of insulin/IGF pathway, followed by DAF-16 activation.

Acanthopanax sessiliflorus stem confers increased resistance to environmental stresses and lifespan extension in Caenorhabditis elegans

  • Park, Jin-Kook;Kim, Chul-Kyu;Gong, Sang-Ki;Yu, A-Reum;Lee, Mi-Young;Park, Sang-Kyu
    • Nutrition Research and Practice
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    • v.8 no.5
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    • pp.526-532
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    • 2014
  • BACKGROUND/OBJECTIVES: Acanthopanax sessiliflorus is a native Korean plant and used as a traditional medicine or an ingredient in many Korean foods. The free radical theory of aging suggests that cellular oxidative stress caused by free radicals is the main cause of aging. Free radicals can be removed by cellular anti-oxidants. MATERIALS/METHODS: Here, we examined the anti-oxidant activity of Acanthopanax sessiliflorus extract both in vitro and in vivo. Survival of nematode C. elegans under stress conditions was also compared between control and Acanthopanax sessiliflorus extract-treated groups. Then, anti-aging effect of Acanthopanax sessiliflorus extract was monitored in C. elegans. RESULTS: Stem extract significantly reduced oxidative DNA damage in lymphocyte, which was not observed by leaves or root extract. Survival of C. elegans under oxidative-stress conditions was significantly enhanced by Acanthopanax sessiliflorus stem extract. In addition, Acanthopanax sessiliflorus stem increased resistance to other environmental stresses, including heat shock and ultraviolet irradiation. Treatment with Acanthopanax sessiliflorus stem extract significantly extended both mean and maximum lifespan in C. elegans. However, fertility was not affected by Acanthopanax sessiliflorus stem. CONCLUSION: Different parts of Acanthopanax sessiliflorus have different bioactivities and stem extract have strong anti-oxidant activity in both rat lymphocytes and C. elegans, and conferred a longevity phenotype without reduced reproduction in C. elegans, which provides conclusive evidence to support the free radical theory of aging.

Lifespan Extending Effects of Fractions of Red Bean Sprouts (팥콩나물 분획물의 수명연장 효과)

  • Lee, Eun Byeol;Kim, Jun Hyeong;Park, Jae Jun;Shin, Moon Ki;Lee, Jae Seung;Xing, Ming Ming;Cha, Youn-Soo;Kim, Mina;Song, Seuk Bo;Kim, Dae Keun
    • Korean Journal of Pharmacognosy
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    • v.46 no.3
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    • pp.214-222
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    • 2015
  • Recently, many studies have focused on the aging and oxidative stress. Several papers reported that Vigna angularis has various biological properties including antiaging, antioxidative and anti-inflammatory activities. Methanol extract from the red bean sprouts was successively partitioned as n-hexane, methylene chloride, ethyl acetate, n-butanol and H2O soluble fractions. We had studied lifespan extending and stress resistant effects of the fractions using Caenorhabditis elegans. Superoxide dismutase (SOD), catalase activities, and intracellular reactive oxygen species (ROS) levels were also investigated. Moreover, we had studied to find any significant change in aging-related factors such as reproduction, food intake, growth and movement of C. elegans. Our results represent that ethyl acetate fraction showed the most potent lifespan extending and stress resistant effects, and this fraction was able to elevate SOD and catalase activities of worms, and reduce intracellular ROS accumulation.

Genistein from Vigna angularis Extends Lifespan in Caenorhabditis elegans

  • Lee, Eun Byeol;Ahn, Dalrae;Kim, Ban Ji;Lee, So Yeon;Seo, Hyun Won;Cha, Youn-Soo;Jeon, Hoon;Eun, Jae Soon;Cha, Dong Seok;Kim, Dae Keun
    • Biomolecules & Therapeutics
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    • v.23 no.1
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    • pp.77-83
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    • 2015
  • The seed of Vigna angularis has long been cultivated as a food or a folk medicine in East Asia. Genistein (4',5,7-trihydroxyisoflavone), a dietary phytoestrogen present in this plant, has been known to possess various biological properties. In this study, we investigated the possible lifespan-extending effects of genistein using Caenorhabditis elegans model system. We found that the lifespan of nematode was significantly prolonged in the presence of genistein under normal culture condition. In addition, genistein elevated the survival rate of nematode against stressful environment including heat and oxidative conditions. Further studies demonstrated that genistein-mediated increased stress tolerance of nematode could be attributed to enhanced expressions of stress resistance proteins such as superoxide dismutase (SOD-3) and heat shock protein (HSP-16.2). Moreover, we failed to find genistein-induced significant change in aging-related factors including reproduction, food intake, and growth, indicating genistein exerts longevity activity independent of affecting these factors. Genistein treatment also led to an up-regulation of locomotory ability of aged nematode, suggesting genistein affects healthspan as well as lifespan of nematode. Our results represent that genistein has beneficial effects on the lifespan of C. elegans under both of normal and stress condition via elevating expressions of stress resistance proteins.

Lindera obtusiloba Extends Lifespan of Caenorhabditis elegans

  • Kim, Ha Na;Seo, Hyun Won;Kim, Bong Seok;Lim, Hyun Ju;Lee, Ha Na;Park, Jin Suck;Yoon, Young Jin;Oh, Jong Woo;Oh, Mi Jin;Kwon, Jin;Oh, Chan Ho;Cha, Dong Seok;Jeon, Hoon
    • Natural Product Sciences
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    • v.21 no.2
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    • pp.128-133
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    • 2015
  • Lindera obtusiloba has been widely used as a traditional medicine for the treatment of lots of diseases, including abdominal pain, bruise, and hepatocirrhosis. Here in this study, we elucidated the lifespan-extending effect of methanolic extract of Lindera obtusiloba (MLO) using Caenorhabditis elegans model system. We found that MLO has potent lifespan extension activities under normal culture condition. Then, we determined the protective effects of MLO on the stress conditions such as osmotic, thermal and oxidative stress. To reveal possible mechanism of MLO-mediated lifespan, we further investigated the effect of MLO on the antioxidant enzyme activities and intracellular ROS levels. Our results demonstrated that superoxide dismutase and catalase activities were significantly up-regulated by MLO treatment, resulted in reduced intracellular ROS levels. In this work, we also tested whether MLO-mediated longevity activity was associated with aging-related factors such as food intake and growth. Our data revealed that both of pharyngeal pumping rate and body length were significantly shifted by MLO treatment, indicating these factors were involved in MLO's lifespan-extension effects. Although MLO induces reduction in food intake, the body movement of MLO-fed aged worms was not decreased, compared to untreated control worms, indicating MLO might extend lifespan without affecting healthspan.