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317 related items for PubMed ID: 33707431
21. CD81 Controls Beige Fat Progenitor Cell Growth and Energy Balance via FAK Signaling. Oguri Y, Shinoda K, Kim H, Alba DL, Bolus WR, Wang Q, Brown Z, Pradhan RN, Tajima K, Yoneshiro T, Ikeda K, Chen Y, Cheang RT, Tsujino K, Kim CR, Greiner VJ, Datta R, Yang CD, Atabai K, McManus MT, Koliwad SK, Spiegelman BM, Kajimura S. Cell; 2020 Aug 06; 182(3):563-577.e20. PubMed ID: 32615086 [Abstract] [Full Text] [Related]
22. Betatrophin knockdown induces beiging and mitochondria biogenesis of white adipocytes. Liao ZZ, Qi XY, Wang YD, Li JY, Gu QQ, Hu C, Hu Y, Sun H, Ran L, Yang J, Liu JH, Xiao XH. J Endocrinol; 2020 Apr 06; 245(1):93-100. PubMed ID: 32027602 [Abstract] [Full Text] [Related]
23. A novel role for PTK2B in cultured beige adipocyte differentiation. Ni B, Farrar JS, Chen S, Lownik JC, Celi FS. Biochem Biophys Res Commun; 2018 Jul 02; 501(4):851-857. PubMed ID: 29750960 [Abstract] [Full Text] [Related]
24. Transient p53 inhibition sensitizes aged white adipose tissue for beige adipocyte recruitment by blocking mitophagy. Fu W, Liu Y, Sun C, Yin H. FASEB J; 2019 Jan 02; 33(1):844-856. PubMed ID: 30052487 [Abstract] [Full Text] [Related]
25. CD137 negatively affects "browning" of white adipose tissue during cold exposure. Srivastava RK, Moliner A, Lee ES, Nickles E, Sim E, Liu C, Schwarz H, Ibáñez CF. J Biol Chem; 2020 Feb 14; 295(7):2034-2042. PubMed ID: 31919095 [Abstract] [Full Text] [Related]
26. A miR-327-FGF10-FGFR2-mediated autocrine signaling mechanism controls white fat browning. Fischer C, Seki T, Lim S, Nakamura M, Andersson P, Yang Y, Honek J, Wang Y, Gao Y, Chen F, Samani NJ, Zhang J, Miyake M, Oyadomari S, Yasue A, Li X, Zhang Y, Liu Y, Cao Y. Nat Commun; 2017 Dec 12; 8(1):2079. PubMed ID: 29233981 [Abstract] [Full Text] [Related]
27. Thermogenic activity of UCP1 in human white fat-derived beige adipocytes. Bartesaghi S, Hallen S, Huang L, Svensson PA, Momo RA, Wallin S, Carlsson EK, Forslöw A, Seale P, Peng XR. Mol Endocrinol; 2015 Jan 12; 29(1):130-9. PubMed ID: 25389910 [Abstract] [Full Text] [Related]
28. Molecular signatures and functional analysis of beige adipocytes induced from in vivo intra-abdominal adipocytes. Xue H, Wang Z, Hua Y, Ke S, Wang Y, Zhang J, Pan YH, Huang W, Irwin DM, Zhang S. Sci Adv; 2018 Jul 12; 4(7):eaar5319. PubMed ID: 30116775 [Abstract] [Full Text] [Related]
29. Scd1 controls de novo beige fat biogenesis through succinate-dependent regulation of mitochondrial complex II. Liu K, Lin L, Li Q, Xue Y, Zheng F, Wang G, Zheng C, Du L, Hu M, Huang Y, Shao C, Kong X, Melino G, Shi Y, Wang Y. Proc Natl Acad Sci U S A; 2020 Feb 04; 117(5):2462-2472. PubMed ID: 31953260 [Abstract] [Full Text] [Related]
30. Differential actions of PPAR-α and PPAR-β/δ on beige adipocyte formation: A study in the subcutaneous white adipose tissue of obese male mice. Rachid TL, Silva-Veiga FM, Graus-Nunes F, Bringhenti I, Mandarim-de-Lacerda CA, Souza-Mello V. PLoS One; 2018 Feb 04; 13(1):e0191365. PubMed ID: 29351550 [Abstract] [Full Text] [Related]
31. Thermogenic Activation Downregulates High Mitophagy Rate in Human Masked and Mature Beige Adipocytes. Szatmári-Tóth M, Shaw A, Csomós I, Mocsár G, Fischer-Posovszky P, Wabitsch M, Balajthy Z, Lányi C, Győry F, Kristóf E, Fésüs L. Int J Mol Sci; 2020 Sep 10; 21(18):. PubMed ID: 32927882 [Abstract] [Full Text] [Related]
32. FGF9 inhibits browning program of white adipocytes and associates with human obesity. Sun Y, Wang R, Zhao S, Li W, Liu W, Tang L, Wang Z, Wang W, Liu R, Ning G, Wang J, Hong J. J Mol Endocrinol; 2019 Feb 01; 62(2):79-90. PubMed ID: 30496126 [Abstract] [Full Text] [Related]
33. Mitophagy controls beige adipocyte maintenance through a Parkin-dependent and UCP1-independent mechanism. Lu X, Altshuler-Keylin S, Wang Q, Chen Y, Henrique Sponton C, Ikeda K, Maretich P, Yoneshiro T, Kajimura S. Sci Signal; 2018 Apr 24; 11(527):. PubMed ID: 29692364 [Abstract] [Full Text] [Related]
34. Isolation of the Stromal Vascular Fraction from Adipose Tissue and Subsequent Differentiation into White or Beige Adipocytes. Farrar JS, Martin RK. Methods Mol Biol; 2022 Apr 24; 2455():103-115. PubMed ID: 35212990 [Abstract] [Full Text] [Related]
35. AMP-Activated Kinase (AMPK) Activation by AICAR in Human White Adipocytes Derived from Pericardial White Adipose Tissue Stem Cells Induces a Partial Beige-Like Phenotype. Abdul-Rahman O, Kristóf E, Doan-Xuan QM, Vida A, Nagy L, Horváth A, Simon J, Maros T, Szentkirályi I, Palotás L, Debreceni T, Csizmadia P, Szerafin T, Fodor T, Szántó M, Tóth A, Kiss B, Bacsó Z, Bai P. PLoS One; 2016 Apr 24; 11(6):e0157644. PubMed ID: 27322180 [Abstract] [Full Text] [Related]
36. Cell reprogramming using extracellular vesicles from differentiating stem cells into white/beige adipocytes. Jung YJ, Kim HK, Cho Y, Choi JS, Woo CH, Lee KS, Sul JH, Lee CM, Han J, Park JH, Jo DG, Cho YW. Sci Adv; 2020 Mar 24; 6(13):eaay6721. PubMed ID: 32232152 [Abstract] [Full Text] [Related]
38. Characterization and Beige Adipogenic Potential of Human Embryo White Adipose Tissue-Derived Stem Cells. Zhang C, Wang JJ, He X, Wang C, Zhang B, Xu J, Xu W, Luo Y, Huang K. Cell Physiol Biochem; 2018 Mar 24; 51(6):2900-2915. PubMed ID: 30562744 [Abstract] [Full Text] [Related]
39. Adipocyte-specific Hypoxia-inducible gene 2 promotes fat deposition and diet-induced insulin resistance. DiStefano MT, Roth Flach RJ, Senol-Cosar O, Danai LV, Virbasius JV, Nicoloro SM, Straubhaar J, Dagdeviren S, Wabitsch M, Gupta OT, Kim JK, Czech MP. Mol Metab; 2016 Dec 24; 5(12):1149-1161. PubMed ID: 27900258 [Abstract] [Full Text] [Related]