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Reshma Ramracheya

Showing results (1-10 of 29) with videos related to

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Clinical Medicine Insights. Endocrinology and Diabetes|February 8, 2020
PYY, a Therapeutic Option for Type 2 Diabetes?Claudia Guida, Reshma Ramracheya
Annals of the New York Academy of Sciences|January 24, 2009
Exocytotic properties of human pancreatic beta-cellsMatthias Braun, Reshma Ramracheya, Paul R Johnson, et al.
Diabetologia|June 8, 2014
ATP-regulated potassium channels and voltage-gated calcium channels in pancreatic alpha and beta cells: similar functions but reciprocal effects on secretionPatrik Rorsman, Reshma Ramracheya, Nils J G Rorsman, et al.
Current Pharmaceutical Design|June 15, 2018
New Approaches for Weight Loss: Experiments Using Animal ModelsMagnus K Olsen, Helene Johannessen, Reshma Ramracheya, et al.
Diabetes|April 24, 2010
Gamma-aminobutyric acid (GABA) is an autocrine excitatory transmitter in human pancreatic beta-cellsMatthias Braun, Reshma Ramracheya, Martin Bengtsson, et al.
Diabetes|April 9, 2008
Voltage-gated ion channels in human pancreatic beta-cells: electrophysiological characterization and role in insulin secretionMatthias Braun, Reshma Ramracheya, Martin Bengtsson, et al.
Hormones (Athens, Greece)|March 30, 2021
Theoretical study of the interactions between peptide tyrosine tyrosine [PYY (1-36)], a newly identified modulator in type 2 diabetes pathophysiology, with receptors NPY1R and NPY4RYee Siew Choong, Yee Ying Lim, Jia Xin Soong, et al.
Diabetes|June 16, 2010
Membrane potential-dependent inactivation of voltage-gated ion channels in alpha-cells inhibits glucagon secretion from human isletsReshma Ramracheya, Caroline Ward, Makoto Shigeto, et al.
Cell Metabolism|December 1, 2009
Chronic palmitate exposure inhibits insulin secretion by dissociation of Ca(2+) channels from secretory granulesMichael B Hoppa, Stephan Collins, Reshma Ramracheya, et al.
Plos Biology|May 17, 2007
A K ATP channel-dependent pathway within alpha cells regulates glucagon release from both rodent and human islets of LangerhansPatrick E MacDonald, Yang Zhang De Marinis, Reshma Ramracheya, et al.
Pageof 3

Showing results (1-10 of 29) with videos related to

Sort By:
Pageof 3
Clinical Medicine Insights. Endocrinology and Diabetes|February 8, 2020
PYY, a Therapeutic Option for Type 2 Diabetes?Claudia Guida, Reshma Ramracheya
Annals of the New York Academy of Sciences|January 24, 2009
Exocytotic properties of human pancreatic beta-cellsMatthias Braun, Reshma Ramracheya, Paul R Johnson, et al.
Diabetologia|June 8, 2014
ATP-regulated potassium channels and voltage-gated calcium channels in pancreatic alpha and beta cells: similar functions but reciprocal effects on secretionPatrik Rorsman, Reshma Ramracheya, Nils J G Rorsman, et al.
Current Pharmaceutical Design|June 15, 2018
New Approaches for Weight Loss: Experiments Using Animal ModelsMagnus K Olsen, Helene Johannessen, Reshma Ramracheya, et al.
Diabetes|April 24, 2010
Gamma-aminobutyric acid (GABA) is an autocrine excitatory transmitter in human pancreatic beta-cellsMatthias Braun, Reshma Ramracheya, Martin Bengtsson, et al.
Diabetes|April 9, 2008
Voltage-gated ion channels in human pancreatic beta-cells: electrophysiological characterization and role in insulin secretionMatthias Braun, Reshma Ramracheya, Martin Bengtsson, et al.
Hormones (Athens, Greece)|March 30, 2021
Theoretical study of the interactions between peptide tyrosine tyrosine [PYY (1-36)], a newly identified modulator in type 2 diabetes pathophysiology, with receptors NPY1R and NPY4RYee Siew Choong, Yee Ying Lim, Jia Xin Soong, et al.
Diabetes|June 16, 2010
Membrane potential-dependent inactivation of voltage-gated ion channels in alpha-cells inhibits glucagon secretion from human isletsReshma Ramracheya, Caroline Ward, Makoto Shigeto, et al.
Cell Metabolism|December 1, 2009
Chronic palmitate exposure inhibits insulin secretion by dissociation of Ca(2+) channels from secretory granulesMichael B Hoppa, Stephan Collins, Reshma Ramracheya, et al.
Plos Biology|May 17, 2007
A K ATP channel-dependent pathway within alpha cells regulates glucagon release from both rodent and human islets of LangerhansPatrick E MacDonald, Yang Zhang De Marinis, Reshma Ramracheya, et al.
Pageof 3