J K. Sethi

Affiliations: 
Clinical Biochemistry University of Cambridge, Cambridge, England, United Kingdom 
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"J Sethi"
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Cross-listing: Chemistry Tree

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Patel MN, Bernard WG, Milev NB, et al. (2015) Hematopoietic IKBKE limits the chronicity of inflammasome priming and metaflammation. Proceedings of the National Academy of Sciences of the United States of America. 112: 506-11
Robinson KA, Hegyi K, Hannun YA, et al. (2014) Go-6976 reverses hyperglycemia-induced insulin resistance independently of cPKC inhibition in adipocytes. Plos One. 9: e108963
Carobbio S, Hagen RM, Lelliott CJ, et al. (2013) Adaptive changes of the Insig1/SREBP1/SCD1 set point help adipose tissue to cope with increased storage demands of obesity. Diabetes. 62: 3697-708
Hu CZ, Sethi JK, Hagen T. (2012) The role of the cullin-5 e3 ubiquitin ligase in the regulation of insulin receptor substrate-1. Biochemistry Research International. 2012: 282648
Virtue S, Feldmann H, Christian M, et al. (2012) A new role for lipocalin prostaglandin d synthase in the regulation of brown adipose tissue substrate utilization. Diabetes. 61: 3139-47
Virtue S, Masoodi M, Velagapudi V, et al. (2012) Lipocalin prostaglandin D synthase and PPARγ2 coordinate to regulate carbohydrate and lipid metabolism in vivo. Plos One. 7: e39512
Rajwani A, Ezzat V, Smith J, et al. (2012) Increasing circulating IGFBP1 levels improves insulin sensitivity, promotes nitric oxide production, lowers blood pressure, and protects against atherosclerosis. Diabetes. 61: 915-24
Prieur X, Mok CY, Velagapudi VR, et al. (2011) Differential lipid partitioning between adipocytes and tissue macrophages modulates macrophage lipotoxicity and M2/M1 polarization in obese mice. Diabetes. 60: 797-809
Sethi JK, Vidal-Puig AJ. (2011) Adipose tissue development, structure and function Metabolic Basis of Obesity. 53-68
Sethi JK. (2010) Activatin' human adipose progenitors in obesity. Diabetes. 59: 2354-7
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