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中链甘油三酯调节代谢转换的生酮作用。

Medium Chain Triglycerides Modulate the Ketogenic Effect of a Metabolic Switch.

作者信息

Vandenberghe Camille, St-Pierre Valérie, Fortier Mélanie, Castellano Christian-Alexandre, Cuenoud Bernard, Cunnane Stephen C

机构信息

Research Center on Aging, Sherbrooke, QC, Canada.

Nestlé Health Science, Lausanne, Switzerland.

出版信息

Front Nutr. 2020 Jan 31;7:3. doi: 10.3389/fnut.2020.00003. eCollection 2020.

Abstract

Ketones provide an alternative brain fuel and may be neuroprotective in older people. Little is known of how to optimize the ketogenic effect of C8:0-C10:0 medium chain triglyceride supplement (kMCT). Metabolic switching (MS) from glucose to ketones as a fuel may have metabolic benefits but has not been extensively studied in humans. The objective of the present study was to use an 8 h metabolic study day protocol to assess the influence of typical components of MS, including a kMCT supplement, low-carbohydrate meal and meal timing, on blood ketones, glucose, insulin and free fatty acids (FFA). In one test, the effect of age was also investigated. Over the 8 h metabolic study day, two 10 g doses of the kMCT increased the plasma ketone response by 19% while reducing overall glycemia by 12% without altering insulin or FFA levels. Moreover, a single early meal (breakfast but no lunch) potentiated the ketogenic effect of MS over 8 h, compared to a single delayed meal (lunch but no breakfast). Age and the low carbohydrate meal did not affect the ketones response. We conclude that an 8-h test period can be used to assess metabolic changes during short-term MS. kMCT provide a robust short-term increase in ketones and might enhance the metabolic effectiveness of short-term or intermittent fasting as a component of MS.

摘要

酮类可作为大脑的替代燃料,可能对老年人具有神经保护作用。关于如何优化C8:0 - C10:0中链甘油三酯补充剂(kMCT)的生酮效果,目前所知甚少。从葡萄糖代谢转换为以酮类作为燃料可能具有代谢益处,但在人类中尚未得到广泛研究。本研究的目的是采用8小时代谢研究日方案,评估代谢转换的典型组成部分(包括kMCT补充剂、低碳水化合物餐和用餐时间)对血酮、血糖、胰岛素和游离脂肪酸(FFA)的影响。在一项测试中,还研究了年龄的影响。在8小时代谢研究日期间,两次服用10克kMCT使血浆酮反应增加了19%,同时使总体血糖降低了12%,而未改变胰岛素或FFA水平。此外,与单一延迟用餐(午餐但不吃早餐)相比,单一早期用餐(早餐但不吃午餐)在8小时内增强了代谢转换的生酮效果。年龄和低碳水化合物餐并未影响酮反应。我们得出结论,8小时测试期可用于评估短期代谢转换期间的代谢变化。kMCT可使酮类在短期内显著增加,并可能增强短期或间歇性禁食作为代谢转换组成部分的代谢效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f05/7005013/0329bfc1d859/fnut-07-00003-g0001.jpg

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