[1] 毛 斐,薛瑞丹,李益明.BAT分化的分子调控新进展[J].上海医学,2016, 39(1):55-58. [2] Sung S C,Jin Y H,In J H,et al.Adipose tissue remodeling: its role in energy metabolism and metabolic disorders[J].Front Endocrinol,2016,7(30):1-16. [3] Zhang H,Shan Y,Wu Y,et al.Berberine suppresses LPS induced inflammation through modulating [J].Int Immunopharmacol,2017,52:93-100. [4] Lu J,Cao Y,Cheng K,et al.Berberine regulates neurite outgrowth through AMPK dependent pathways by lowering energy status[J].Exp Cell Res,2015,334(2):194-206. [5] Jogeshwar M,Aparna B,Kimbe S.Classification of therapeutic and experimental drugs for brown adipose tissue activation: potential treatment strategies for diabetes and obesity[J].Curr Diabetes,2016,12(4):414-428. [6] Wang G X,Zhao X Y,Lin J D. The brown fat secretome: metabolic functions beyond thermogenesis[J].Trends Endocrinol Metab,2015,26(5):231-237. [7] Juan A P. Nutrition,insulin resistance and dysfunctional adipose tissue determine the different components of metabolic syndrome[J].World J Diabetes,2016,7(19):483-514. [8] Ye L,Liang S,Guo C,et al. Inhibition of M1 macrophage activation in adipose tissue by berberine improves insulin resistance[J].Life Sci,2016,166:82-91. [9] Takahashi T N,Kanda T,Liu M,et al. Regeneration of the cardiac conduction system by adipose tissue-derived stem cell[J]. Circ J,2015,79(12):2703-2712. [10] Suzuki E,Fujita D,Takahashi M,et al.Adipose tissue-derived stem cells as a therapeutic tool for cardiovascular disease[J].World J Cardiology,2015,7(8):454-465. [11] Fang L L,Neil N,Patel B S,et al.GATA-Binding factor 6 contributes to atrioventricular node development and function[J].Circ Cardiovasc Genet,2015,8:284-293. [12] Tourniaire F,Musinovic H,Gouranton E,et al. All-trans retinoic acid induces oxidative phosphorylation and mitochondria biogenesis in adipocytes[J].J Lipid Res,2015,56(6):1100-1109. [13] Abd M A,Matsuoka S,Okamatsu O Y,et al. Retinoic acid modulates lipid accumulation glucose concentration dependently through inverse regulation of SREBP-1 expression in 3T3L1adipocytes[J].Genes Cells, 2017,22(6):568-582. [14] Zhang H, Guan M, Townsend K L,et al. Micro RNA-455 regulates brown adipogenesis via a novel HIF1an AMPK-PGC1α signaling network[J].EMBO Rep,2015,16(10):1378-1393. [15] Marlatt K L, Ravussin E. Brown adipose tissue: an update on recent fifindings[J]. Curr Obes Rep,2017,6(4):389-396. [16] Moreb J S, Ucarbilyeu D A, Khan A. Use of retinoic acid/aldehyde dehydrogenase pathway as potential targeted therapy against cancer stem cells[J].Cancer Chemother Pharmacol,2017,79(2):295-301. [17] Ong F J,Ahmed B A, Oreskovich S M, et al. Recent advances in the detection of brown adipose tissue in adult humans:a review[J].Clin Sci(Lond),2018,132(10):1039-1054. [18] 梁璆荔,程金科,左 勇.ATRA 诱导小鼠间充质干细胞棕色成脂分化的分子机制[J].检验医学,2019,34(5):451-456. [19] 姜爱侠,冯 蓓,冀天基,等.新生大鼠棕色脂肪干细胞心脏细胞分化潜能研究[J].四川医学,2019,40(8):765-770. [20] 喻日成,范元硕,罗建华.盐酸小檗碱对高脂喂养大鼠棕色脂肪组织 PGC - 1α及UCP - 1基因表达的影响[J].贵州医科大学学报,2019,44(8):908-911.