Roh HC, Kumari M, Taleb S, et al. Adipocytes fail to maintain cellular identity during obesity due to reduced PPARγ activity and elevated TGFβ-SMAD signaling. Molecular metabolism. 2020;42:101086. doi:10.1016/j.molmet.2020.101086
Yan S, Kumari M, Xiao H, et al. IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. The Journal of clinical investigation. 2021;131(7). doi:10.1172/JCI144888
Li J, Li E, Czepielewski RS, et al. Neurotensin is an anti-thermogenic peptide produced by lymphatic endothelial cells. Cell metabolism. 2021;33(7):1449-1465.e6. doi:10.1016/j.cmet.2021.04.019
Westcott GP, Rosen ED. Crosstalk Between Adipose and Lymphatics in Health and Disease. Endocrinology. 2022;163(1). doi:10.1210/endocr/bqab224
Metz S, Belanich JR, Claussnitzer M, Kilpeläinen TO. Variant-to-function approaches for adipose tissue: Insights into cardiometabolic disorders. Cell genomics. 2025:100844. doi:10.1016/j.xgen.2025.100844
Simonian TL, Meyer AS, Guo J, et al. Sex and Depot Specific Adipocyte Proteome Profiling In Vivo via Intracellular Proximity Labeling. Comprehensive Physiology. 2025;15(2):e70007. doi:10.1002/cph4.70007
Simonian TL, Meyer AS, Guo J, et al. Sex and Depot Specific Adipocyte Proteome Profiling In Vivo via Intracellular Proximity Labeling. Comprehensive Physiology. 2025;15(2):e70007. doi:10.1002/cph4.70007
Group MR, Jakicic JM, Kohrt WM, et al. Molecular Transducers of Physical Activity Consortium (MoTrPAC): Human Studies Design and Protocol. Journal of applied physiology (Bethesda, Md. : 1985). 2024. doi:10.1152/japplphysiol.00102.2024
Zambrano C, Garitaonaindia MT, Salmerón D, et al. Melatonin decreases human adipose tissue insulin sensitivity. Journal of pineal research. 2024;76(5):e12965. doi:10.1111/jpi.12965
Chen Z, Ghavimi SAA, Wu M, et al. PPARγ agonist treatment reduces fibroadipose tissue in secondary lymphedema by exhausting fibroadipogenic PDGFRα+ mesenchymal cells. JCI insight. 2023;8(24). doi:10.1172/jci.insight.165324