Lawrence Mandarino

Affiliations: 
Arizona State University, Tempe, AZ, United States 
Area:
Physiology Biology, Cell Biology, Biochemistry
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"Lawrence Mandarino"
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Publications

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Zapata Bustos R, Coletta DK, Galons JP, et al. (2023) Nonequilibrium thermodynamics and mitochondrial protein content predict insulin sensitivity and fuel selection during exercise in human skeletal muscle. Frontiers in Physiology. 14: 1208186
Mandarino LJ, Willis WT. (2023) Can non-equilibrium thermodynamics explain skeletal muscle insulin resistance due to low mitochondrial content? The Lancet. Diabetes & Endocrinology. 11: 149-151
Barakati N, Zapata Bustos R, Coletta DK, et al. (2022) Fuel Selection in Skeletal Muscle Exercising at Low Intensity; Reliance on Carbohydrate in Very Sedentary Individuals. Metabolic Syndrome and Related Disorders
Bustos RZ, Langlais PR, Coletta DK, et al. (2020) 166-OR: Lower Response of Connective Tissue Growth Factor (CTGF) to Exercise Characterizes Insulin Resistant Muscle Diabetes. 69
Tran L, Kras KA, Hoffman N, et al. (2018) Lower Fasted-State but Greater Increase in Muscle Protein Synthesis in Response to Elevated Plasma Amino Acids in Obesity. Obesity (Silver Spring, Md.)
Tran L, Hanavan PD, Campbell LE, et al. (2016) Prolonged Exposure of Primary Human Muscle Cells to Plasma Fatty Acids Associated with Obese Phenotype Induces Persistent Suppression of Muscle Mitochondrial ATP Synthase β Subunit. Plos One. 11: e0160057
Xie X, Yi Z, Sinha S, et al. (2016) Proteomics analyses of subcutaneous adipocytes reveal novel abnormalities in human insulin resistance. Obesity (Silver Spring, Md.). 24: 1506-14
McLean CS, Mielke C, Cordova JM, et al. (2015) Gene and MicroRNA Expression Responses to Exercise; Relationship with Insulin Sensitivity. Plos One. 10: e0127089
Everman S, Mandarino LJ, Carroll CC, et al. (2015) Effects of acute exposure to increased plasma branched-chain amino acid concentrations on insulin-mediated plasma glucose turnover in healthy young subjects. Plos One. 10: e0120049
Mielke C, Lefort N, McLean CG, et al. (2014) Adenine nucleotide translocase is acetylated in vivo in human muscle: Modeling predicts a decreased ADP affinity and altered control of oxidative phosphorylation. Biochemistry. 53: 3817-29
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