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Page 1
Remodeling of Hepatocyte Mitochondrial Metabolism and De Novo Lipogenesis During the Embryonic-to-Neonatal Transition in Chickens.
Front Physiol. 2022 Apr 21;13:870451. doi: 10.3389/fphys.2022.870451. eCollection 2022.
Front Physiol. 2022.
PMID: 35530509
Free PMC article.
Dietary Macronutrient Composition Differentially Modulates the Remodeling of Mitochondrial Oxidative Metabolism during NAFLD.
Kattapuram N, Zhang C, Muyyarikkandy MS, Surugihalli C, Muralidaran V, Gregory T, Sunny NE.
Kattapuram N, et al. Among authors: surugihalli c.
Metabolites. 2021 Apr 26;11(5):272. doi: 10.3390/metabo11050272.
Metabolites. 2021.
PMID: 33926132
Free PMC article.
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Branched-chain amino acids alter cellular redox to induce lipid oxidation and reduce de novo lipogenesis in the liver.
Surugihalli C, Muralidaran V, Ryan CE, Patel K, Zhao D, Sunny NE.
Surugihalli C, et al.
Am J Physiol Endocrinol Metab. 2023 Apr 1;324(4):E299-E313. doi: 10.1152/ajpendo.00307.2022. Epub 2023 Feb 15.
Am J Physiol Endocrinol Metab. 2023.
PMID: 36791321
Free PMC article.
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Hepatic Mitochondrial Oxidative Metabolism and Lipogenesis Synergistically Adapt to Mediate Healthy Embryonic-to-Neonatal Transition in Chicken.
Surugihalli C, Porter TE, Chan A, Farley LS, Maguire M, Zhang C, Kattapuram N, Muyyarikkandy MS, Liu HC, Sunny NE.
Surugihalli C, et al.
Sci Rep. 2019 Dec 27;9(1):20167. doi: 10.1038/s41598-019-56715-1.
Sci Rep. 2019.
PMID: 31882889
Free PMC article.
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Branched chain amino acids and carbohydrate restriction exacerbate ketogenesis and hepatic mitochondrial oxidative dysfunction during NAFLD.
Muyyarikkandy MS, McLeod M, Maguire M, Mahar R, Kattapuram N, Zhang C, Surugihalli C, Muralidaran V, Vavilikolanu K, Mathews CE, Merritt ME, Sunny NE.
Muyyarikkandy MS, et al. Among authors: surugihalli c.
FASEB J. 2020 Nov;34(11):14832-14849. doi: 10.1096/fj.202001495R. Epub 2020 Sep 12.
FASEB J. 2020.
PMID: 32918763
Free PMC article.
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Comparative Error-Free and Error-Prone Translesion Synthesis of N(2)-2'-Deoxyguanosine Adducts Formed by Mitomycin C and Its Metabolite, 2,7-Diaminomitosene, in Human Cells.
Bose A, Surugihalli C, Pande P, Champeil E, Basu AK.
Bose A, et al. Among authors: surugihalli c.
Chem Res Toxicol. 2016 May 16;29(5):933-9. doi: 10.1021/acs.chemrestox.6b00087. Epub 2016 Apr 27.
Chem Res Toxicol. 2016.
PMID: 27082015
Free PMC article.
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