D-BHB supplementation before moderate-intensity exercise suppresses lipolysis and selectively blunts exercise-induced long-chain acylcarnitine increase in pilot study of patients with long-chain fatty acid oxidation disorders

IF 3.7 2区 生物学 Q2 ENDOCRINOLOGY & METABOLISM
Ashley N. Gregor , Philippe Delerive , Bernard Cuenoud , Irina Monnard , Karine Redeuil , Cary O. Harding , Melanie B. Gillingham
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引用次数: 0

Abstract

Patients with long-chain fatty acid oxidation disorders (LC-FAOD) have impaired endogenous ketone production due to defects in the beta-oxidation pathway. We explored supplementation of exogenous D-beta-hydroxybutyrate (D-BHB) as an alternative source of energy in a randomized, double-blinded crossover pilot study. Participants ≥18 years of age with a diagnosis of LC-FAOD completed two moderate-intensity treadmill exercises following an oral supplementation of D-BHB salts or an isocaloric maltodextrin beverage. Five subjects (1 VLCADD, 2 CPT2D, 2 LCHADD), 60 % male, mean age = 33 years were enrolled. Mild to moderate GI symptoms were related to ingestion of D-BHB. Plasma D-BHB was increased after oral D-BHB compared to maltodextrin (p < .001) with an average concentration of 0.43 mM in the post-exercise period. During exercise, free fatty acids (p = .01), fold change in long-chain acylcarnitine species (LC-AC) (p ≤ .03) and systolic BP (p = .02) were lower after D-BHB compared to the maltodextrin beverage. D-BHB suppresses lipolysis and selectively blunts exercise-induced long-chain acylcarnitines. There were no differences between beverages in acetylcarnitine, blood glucose, creatine kinase, VO2, HR, RPE or respiratory exchange ratio. Consumption of the D-BHB beverage was safe and well-tolerated. Plasma D-BHB levels achieved mild ketosis and suppressed lipolysis and the associated rise in LC-AC, but fell short of stimulating the energetic effects that might have resulted in altered exercise parameters such as RER, or HR. In conclusion, our results provide a strong rationale for future studies aimed toward defining the optimal multiple-dose regimen of D-BHB per day that might improve exercise tolerance and understanding the long-term impact of treatment in LC-FAOD subjects.

Abstract Image

长链脂肪酸氧化紊乱(LC-FAOD)患者由于β-氧化途径的缺陷而导致内源性酮体生成受损。我们在一项随机、双盲交叉试验研究中探索了补充外源性 D-β-羟丁酸(D-BHB)作为替代能量来源的方法。年龄≥18 岁、诊断为 LC-FAOD 的参与者在口服 D-BHB 盐或等热量麦芽糊精饮料后完成两次中等强度的跑步机运动。五名受试者(1 名 VLCADD、2 名 CPT2D、2 名 LCHADD)中 60% 为男性,平均年龄为 33 岁。轻度至中度消化道症状与摄入 D-BHB 有关。与麦芽糊精相比,口服 D-BHB 后血浆中的 D-BHB 增加(p <.001),运动后的平均浓度为 0.43 mM。在运动过程中,与麦芽糊精饮料相比,口服 D-BHB 后游离脂肪酸(p = .01)、长链酰基肉碱种类(LC-AC)的折叠变化(p ≤ .03)和收缩压(p = .02)均有所降低。D-BHB 可抑制脂肪分解,并选择性地减弱运动诱导的长链酰基肉碱。不同饮料在乙酰肉碱、血糖、肌酸激酶、VO2、心率、RPE 或呼吸交换比方面没有差异。饮用 D-BHB 饮料安全且耐受性良好。血浆中的 D-BHB 水平达到了轻度酮症,抑制了脂肪分解和与之相关的低密度脂蛋白胆碱酯酶(LC-AC)的升高,但不足以刺激能量效应,从而可能导致运动参数(如 RER 或 HR)的改变。总之,我们的研究结果为今后的研究提供了强有力的依据,这些研究旨在确定每天服用多剂量 D-BHB 的最佳方案,从而提高运动耐受性,并了解治疗对 LC-FAOD 受试者的长期影响。
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来源期刊
Molecular genetics and metabolism
Molecular genetics and metabolism 生物-生化与分子生物学
CiteScore
5.90
自引率
7.90%
发文量
621
审稿时长
34 days
期刊介绍: Molecular Genetics and Metabolism contributes to the understanding of the metabolic and molecular basis of disease. This peer reviewed journal publishes articles describing investigations that use the tools of biochemical genetics and molecular genetics for studies of normal and disease states in humans and animal models.
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