Centre de Recherche de Biomédecine de Strasbourg, UR 3072 Mitochondrie, Stress Oxydant et Protection Musculaire, Université de Strasbourg, 67000 Strasbourg, France.
Department of Infection and Immunity, Luxembourg Institute of Health, 4354 Esch-sur-Alzette, Luxembourg.
Nutrients. 2022 Jun 29;14(13):2721. doi: 10.3390/nu14132721.
Background: Medium Chain Fatty Acids (MCFAs) are a dietary supplement that exhibit interesting properties, due to their smaller molecular size. The acute consumption of MCFAs is expected to enhance exercise performance. However, the short-term effects of MCFAs on endurance performance remains poorly understood. The aim of our study is to evaluate the octanoic acid (C8)-rich diet effect on endurance capacity, and to explore their molecular and cellular effects. Methods: C57BL/6J mice were fed with a chow diet (Control group) or an octanoic acid-rich diet (C8 diet) for 6 weeks. Spontaneous activity, submaximal and maximal exercise tests were carried out to characterize the exercise capacities of the mice. Beta-oxidation and mitochondrial biogenesis pathways were explored in skeletal muscle by RT-qPCR, Western Blot (Quadriceps) and histochemical staining (Gastrocnemius). Results: Mice fed with a C8-rich diet presented a higher spontaneous activity (p < 0.05) and endurance capacities (p < 0.05) than the control, but no effect on maximal effort was observed. They also presented changes in the skeletal muscle metabolic phenotype, with a higher number of the oxidative fibers, rich in mitochondria. At the molecular level, the C8-diet induced an AMPK activation (p < 0.05), associated with a significant increase in PGC1a and CS gene expression and protein levels. Conclusion: Our study provided evidence that C8-enrichment as a food supplementation improves endurance capacities and activates mitochondrial biogenesis pathways leading to higher skeletal muscle oxidative capacities.
中链脂肪酸(MCFAs)是一种膳食补充剂,由于其较小的分子尺寸,表现出有趣的特性。急性摄入 MCFAs 有望增强运动表现。然而,MCFAs 对耐力表现的短期影响仍知之甚少。我们的研究旨在评估富含辛酸(C8)的饮食对耐力的影响,并探讨其分子和细胞作用。
C57BL/6J 小鼠用常规饮食(对照组)或富含辛酸的饮食(C8 饮食)喂养 6 周。进行自发活动、次最大和最大运动测试,以表征小鼠的运动能力。通过 RT-qPCR、Western Blot(股四头肌)和组织化学染色(比目鱼肌)探索骨骼肌中的β氧化和线粒体生物发生途径。
喂食富含 C8 的饮食的小鼠表现出更高的自发活动(p<0.05)和耐力能力(p<0.05),但对最大努力没有影响。它们还表现出骨骼肌代谢表型的变化,具有更多富含线粒体的氧化纤维。在分子水平上,C8 饮食诱导 AMPK 激活(p<0.05),与 PGC1a 和 CS 基因表达和蛋白水平的显著增加相关。
我们的研究提供了证据,表明 C8 富集作为一种食物补充剂可以提高耐力能力并激活导致骨骼肌氧化能力更高的线粒体生物发生途径。