Taurine supplementation associated with exercise increases mitochondrial activity and fatty acid oxidation gene expression in the subcutaneous white adipose tissue of obese women

内科学 内分泌学 牛磺酸 医学 脂质代谢 脂质氧化 脂肪组织 β氧化 PRDM16 白色脂肪组织 生物 生物化学 新陈代谢 氨基酸 抗氧化剂
作者
Flávia Giolo de Carvalho,Camila Brandão,Gabriela Batitucci,Anderson de Oliveira Souza,Gustavo Duarte Ferrari,Luciane C. Alberici,Vítor Rosetto Muñoz,José Rodrigo Pauli,Leandro Pereira de Moura,Eduardo R. Ropelle,Adelino Sánchez Ramos da Silva,Márcia Varella Morandi Junqueira‐Franco,Júlio Sérgio Marchini,Ellen Cristini de Freitas
出处
期刊:Clinical Nutrition [Elsevier BV]
卷期号:40 (4): 2180-2187 被引量:61
标识
DOI:10.1016/j.clnu.2020.09.044
摘要

Purpose To evaluate the effects of taurine supplementation associated or not with chronic exercise on body composition, mitochondrial function, and expression of genes related to mitochondrial activity and lipid oxidation in the subcutaneous white adipose tissue (scWAT) of obese women. Methods A randomized and double-blind trial was developed with 24 obese women (BMI 33.1 ± 2.9 kg/m2, 32.9 ± 6.3 y) randomized into three groups: Taurine supplementation group (Tau, n = 8); Exercise group (Ex, n = 8); Taurine supplementation + exercise group (TauEx, n = 8). The intervention was composed of 3 g of taurine or placebo supplementation and exercise training for eight weeks. Anthropometry, body fat composition, indirect calorimetry, scWAT biopsy for mitochondrial respiration, and gene expression related to mitochondrial activity and lipid oxidation were assessed before and after the intervention. Results No changes were observed for the anthropometric characteristics. The Ex group presented an increased resting energy expenditure rate, and the TauEx and Ex groups presented increased lipid oxidation and a decreased respiratory quotient. Both trained groups (TauEx and Ex) demonstrated improved scWAT mitochondrial respiratory capacity. Regarding mitochondrial markers, no changes were observed for the Tau group. The TauEx group had higher expression of CIDEA, PGC1a, PRDM16, UCP1, and UCP2. The genes related to fat oxidation (ACO2 and ACOX1) were increased in the Tau and Ex groups, while only the TauEx group presented increased expression of CPT1, PPARa, PPARγ, LPL, ACO1, ACO2, HSL, ACOX1, and CD36 genes. Conclusion Taurine supplementation associated with exercise improved lipid metabolism through the modulation of genes related to mitochondrial activity and fatty acid oxidation, suggesting a browning effect in the scWAT of obese women.
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