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Lipid-lowering fibrates extend C. elegans lifespan in a NHR-49/PPARalpha-dependent manner

机译:降脂贝特类药物以NHR-49 / PPARalpha依赖性方式延长秀丽隐杆线虫的寿命

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摘要

Compounds that delay aging in model organisms may be of significant interest to anti-aging medicine, since these substances potentially provide pharmaceutical approaches to promote healthy lifespan in humans. We here aimed to test whether pharmaceutical concentrations of three fibrates, pharmacologically established serum lipid-lowering drugs and ligands of the nuclear receptor PPARalpha in mammals, are capable of extending lifespan in a nematodal model organism for aging processes, the roundworm Caenorhabditis elegans.Adult C. elegans (wild-type N2 as well as two nhr-49-deficient strains, RB1716 and VC870) were maintained on agar plates and were fed E. coli strain OP50 bacteria. Bezafibrate, clofibrate, and fenofibrate were applied to the agar, respectively, to test whether they may promote longevity by quantifying survival in the presence and absence of the respective compounds.All three fibrates extended C. elegans N2 lifespan when applied at a concentration of 10 micromolar. Bezafibrate additionally extended C. elegans N2 lifespan at concentrations of 1 micromolar and 0.1 micromolar. In strains deficient for nhr-49, a functional orthologue of the mammalian peroxisome proliferator-activated receptor alpha (PPARalpha), all three compounds were incapable of extending lifespan.Taken together, fibrates promote C. elegans longevity in an NHR-49-dependent manner possibly by promoting mitohormesis and suggesting that these compounds may promote lifespan also in mammals.
机译:延缓模型生物衰老的化合物可能是抗衰老医学的重要兴趣,因为这些物质可能提供药物途径来促进人类健康的寿命。我们的目标是测试哺乳动物中三种贝特类药物的浓度,药理学上确定的降低血清脂质的药物和核受体PPARalpha的配体是否能够延长线虫模型生物的衰老过程(the虫秀丽隐杆线虫)。将线虫(野生型N2以及两个nhr-49缺陷型菌株RB1716和VC870)保持在琼脂平板上,并喂以大肠杆菌菌株OP50细菌。分别在琼脂上施用苯扎贝特,氯贝贝特和非诺贝特,通过定量存在或不存在各自化合物的存活率来测试它们是否可以延长寿命。当以10的浓度施用时,所有三种贝特类均可延长秀丽隐杆线虫N2的寿命。微摩尔。苯扎贝特进一步延长线虫线虫N2的寿命,浓度为1微摩尔和0.1微摩尔。在缺乏nhr-49的菌株中,这是哺乳动物过氧化物酶体增殖物激活的受体α(PPARalpha)的功能直系同源物,所有这三种化合物均无法延长寿命。纤维合在一起,以NHR-49依赖性方式促进秀丽隐杆线虫的寿命。可能是通过促进线粒体运动并暗示这些化合物也可以延长哺乳动物的寿命。

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