1.
UCP1-independent signaling involving SERCA2b-mediated calcium cycling regulates beige fat thermogenesis and systemic glucose homeostasis
by Ikeda, Kenji
Nature medicine, 2017-12, Vol.23 (12), p.1454-1465

2.
An AMP-activated protein kinase-stabilizing peptide ameliorates adipose tissue wasting in cancer cachexia in mice
by Rohm, Maria
Nature medicine, 2016-10, Vol.22 (10), p.1120-1130

3.
T3 and Glucose Coordinately Stimulate ChREBP-Mediated Ucp1 Expression in Brown Adipocytes From Male Mice
by Katz, Liora S Liora S
Endocrinology (Philadelphia), 2017-10-25, Vol.159 (1), p.557-569

4.
Evolutionary Genetics of Hypoxia and Cold Tolerance in Mammals
by Zhu, Kangli
Journal of molecular evolution, 2018-10-16, Vol.86 (9), p.618-634

5.
Monoterpene phenolic compound thymol promotes browning of 3T3-L1 adipocytes
by Choi, Jae Heon
European journal of nutrition, 2016-07-18, Vol.56 (7), p.2329-2341

6.
JAK2 promotes brown adipose tissue function and is required for diet- and cold-induced thermogenesis in mice
by Shi, Sally Yu
Diabetologia, 2015-10-29, Vol.59 (1), p.187-196

7.
Lipopolysaccharide-binding protein is a negative regulator of adipose tissue browning in mice and humans
by Gavaldà-Navarro, Aleix
Diabetologia, 2016-06-25, Vol.59 (10), p.2208-2218

8.
UCP1 -3826 A>G polymorphism affects weight, fat mass, and risk of type 2 diabetes mellitus in grade III obese patients
by Nicoletti, Carolina Ferreira, Ph.D
Nutrition (Burbank, Los Angeles County, Calif.), 2016, Vol.32 (1), p.83-87

9.
Fermented goat milk consumption during anaemia recovery: ergogenic effect and improvement of skeletal muscle homeostasis
by Moreno-Fernandez, Jorge
European journal of nutrition, 2016-07-13, Vol.56 (7), p.2277-2287

10.
Anion carriers in fatty acid-mediated physiological uncoupling
by Skulachev, V P
Journal of bioenergetics and biomembranes, 1999-10, Vol.31 (5), p.431-445

11.
Genetic and functional characterization of clonally derived adult human brown adipocytes
by Shinoda, Kosaku
Nature medicine, 2015-04, Vol.21 (4), p.389-394

12.
Fattening the role of Ca 2+ cycling in adaptive thermogenesis
by Gamu, Daniel
Nature medicine, 2017-12-07, Vol.23 (12), p.1403

13.
Sarcolipin is a newly identified regulator of muscle-based thermogenesis in mammals
by Bal, Naresh C
Nature medicine, 2012-10, Vol.18 (10), p.1575-1579

14.
Human 'brite/beige' adipocytes develop from capillary networks, and their implantation improves metabolic homeostasis in mice
by Min, So Yun
Nature medicine, 2016-03, Vol.22 (3), p.312-318

15.
Inhibiting peripheral serotonin synthesis reduces obesity and metabolic dysfunction by promoting brown adipose tissue thermogenesis
by Crane, Justin D
Nature medicine, 2015-02, Vol.21 (2), p.166-172

16.
Anatomical localization, gene expression profiling and functional characterization of adult human neck brown fat
by Cypess, Aaron M
Nature medicine, 2013-05, Vol.19 (5), p.635-639

17.
Superoxide activates mitochondrial uncoupling proteins
by Brand, Martin D
Nature (London), 2002-01-03, Vol.415 (6867), p.96-99

18.
Brown Adipose Tissue in Adult Humans: A Metabolic Renaissance
by Lee, Paul
Endocrine reviews, 2013-06, Vol.34 (3), p.413-438

19.
A new era in brown adipose tissue biology: molecular control of brown fat development and energy homeostasis
by Kajimura, Shingo
Annual review of physiology, 2014, Vol.76 (1), p.225-249

20.
Alternatively activated macrophages do not synthesize catecholamines or contribute to adipose tissue adaptive thermogenesis
by Fischer, Katrin
Nature medicine, 2017-05, Vol.23 (5), p.623-630
