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二甲双胍、雷帕霉素和白藜芦醇对大、小品种犬原代成纤维细胞衰老过程中细胞代谢的影响。

Effects of metformin, rapamycin, and resveratrol on cellular metabolism of canine primary fibroblast cells isolated from large and small breeds as they age.

机构信息

Department of Biology, Colgate University, 13 Oak Dr, Hamilton, NY, 13346, USA.

Department of Mathematics, Colgate University, 13 Oak Dr, Hamilton, NY, 13346, USA.

出版信息

Geroscience. 2021 Aug;43(4):1669-1682. doi: 10.1007/s11357-021-00349-7. Epub 2021 Mar 17.

Abstract

Small breed dogs have longer lifespans than their large breed counterparts. Previous work demonstrated that primary fibroblast cells isolated from large breed young and old dogs have a persistent glycolytic metabolic profile compared with cells from small breed dogs. Here, we cultured primary fibroblast cells from small and large, young and old dogs and treated these cells with three commercially available drugs that show lifespan and health span benefits, and have been shown to reduce glycolytic rates: rapamycin (rapa), resveratrol (res) and metformin (met). We then measured aerobic and anaerobic cellular respiration in these cells. We found that rapa and res increased rates of non-glycolytic acidification in small and large breed puppies and basal oxygen consumption rates (OCR) in small and large breed puppies. Rapa increased proton leak and non-mitochondrial respiration in small and large breed puppies. Maximal respiration was significantly altered with rapa treatment but in opposing ways: large breed puppies showed a significant increase in maximal respiration when treated with rapa, and small old dogs demonstrated a significant decrease in maximal respiration when treated with rapa. In opposition to rapa treatments, met significantly decreased basal OCR levels in cells from small and large breed puppies. Our data suggest that rapa treatments may be metabolically beneficial to dogs when started early in life and more beneficial in larger breeds.

摘要

小型犬的寿命比大型犬长。以前的研究表明,与小型犬的成纤维细胞相比,从小型犬和大型犬幼龄和老龄犬中分离出的原代成纤维细胞具有持续的糖酵解代谢特征。在这里,我们从小型犬和大型犬幼龄和老龄犬中培养原代成纤维细胞,并将这些细胞用三种已上市的药物进行处理,这些药物具有延长寿命和健康寿命的益处,并已被证明可以降低糖酵解率:雷帕霉素(rapa)、白藜芦醇(res)和二甲双胍(met)。然后,我们测量了这些细胞的需氧和厌氧细胞呼吸。我们发现,rapa 和 res 增加了小型和大型犬幼崽中非糖酵解酸化的速率以及小型和大型犬幼崽中的基础耗氧率(OCR)。雷帕霉素增加了小型和大型犬幼崽中的质子泄漏和非线粒体呼吸。雷帕霉素处理显著改变了最大呼吸作用,但方式相反:用雷帕霉素处理大型犬幼崽时,最大呼吸作用显著增加,而用雷帕霉素处理小型老龄犬时,最大呼吸作用显著降低。与雷帕霉素处理相反,met 显著降低了小型和大型犬幼崽细胞的基础 OCR 水平。我们的数据表明,雷帕霉素治疗在生命早期开始对犬可能具有代谢益处,并且对大型犬更有益。

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