Carlo Manno

Physiology and Biophysics Rush University, Chicago, IL, United States 
"Carlo Manno"
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Tammineni ER, Kraeva N, Figueroa L, et al. (2020) Intracellular calcium leak lowers glucose storage in human muscle, promoting hyperglycemia and diabetes. Elife. 9
Ferreira Gregorio J, Pequera G, Manno C, et al. (2017) The voltage sensor of excitation-contraction coupling in mammals: Inactivation and interaction with Ca(2). The Journal of General Physiology
Karam C, Yi J, Xiao Y, et al. (2017) Absence of physiological Ca(2+) transients is an initial trigger for mitochondrial dysfunction in skeletal muscle following denervation. Skeletal Muscle. 7: 6
Manno C, Figueroa LC, Gillespie D, et al. (2017) Calsequestrin depolymerizes when calcium is depleted in the sarcoplasmic reticulum of working muscle. Proceedings of the National Academy of Sciences of the United States of America
Ríos E, Figueroa L, Manno C, et al. (2015) The couplonopathies: A comparative approach to a class of diseases of skeletal and cardiac muscle. The Journal of General Physiology. 145: 459-74
Manno C, Ríos E. (2015) A better method to measure total calcium in biological samples yields immediate payoffs. The Journal of General Physiology. 145: 167-71
Manno C, Figueroa L, Royer L, et al. (2013) Altered Ca2+ concentration, permeability and buffering in the myofibre Ca2+ store of a mouse model of malignant hyperthermia. The Journal of Physiology. 591: 4439-57
Manno C, Figueroa L, Fitts R, et al. (2013) Confocal imaging of transmembrane voltage by SEER of di-8-ANEPPS. The Journal of General Physiology. 141: 371-87
Manno C, Sztretye M, Figueroa L, et al. (2013) Dynamic measurement of the calcium buffering properties of the sarcoplasmic reticulum in mouse skeletal muscle. The Journal of Physiology. 591: 423-42
Figueroa L, Shkryl VM, Zhou J, et al. (2012) Synthetic localized calcium transients directly probe signalling mechanisms in skeletal muscle. The Journal of Physiology. 590: 1389-411
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