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Sophie R Sayers

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

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Diabetologia|August 20, 2016
Monomeric eNAMPT in the development of experimental diabetes in mice: a potential target for type 2 diabetes treatmentJulius Kieswich, Sophie R Sayers, Marta F Silvestre, et al.
Plos One|March 25, 2016
Proglucagon Promoter Cre-Mediated AMPK Deletion in Mice Increases Circulating GLP-1 Levels and Oral Glucose ToleranceSophie R Sayers, Frank Reimann, Fiona M Gribble, et al.
Scientific Reports|October 19, 2017
Carnosine scavenging of glucolipotoxic free radicals enhances insulin secretion and glucose uptakeMichael J Cripps, Katie Hanna, Charlie Lavilla, et al.
Diabetes|February 11, 2016
Disallowance of Acot7 in β-Cells Is Required for Normal Glucose Tolerance and Insulin SecretionAida Martinez-Sanchez, Timothy J Pullen, Pauline Chabosseau, et al.
Molecular Metabolism|June 30, 2020
Psoriatic skin inflammation induces a pre-diabetic phenotype via the endocrine actions of skin secretomeElizabeth A Evans, Sophie R Sayers, Xenia Kodji, et al.
Endocrinology|June 11, 2026
eNAMPT induces alpha-cell mass expansion but impaired glucagon counter regulatory responseSophie R Sayers, Vesela S Gesheva, Jithu J Varghese, et al.
Biochemical Pharmacology|November 4, 2019
Identification of a subset of trace amine-associated receptors and ligands as potential modulators of insulin secretionMichael J Cripps, Marta Bagnati, Tania A Jones, et al.
Free Radical Biology & Medicine|August 29, 2021
Carnosine protects stimulus-secretion coupling through prevention of protein carbonyl adduction events in cells under metabolic stressCharlie Jr Lavilla, Merell P Billacura, Katie Hanna, et al.
Diabetologia|November 17, 2019
Structure-functional changes in eNAMPT at high concentrations mediate mouse and human beta cell dysfunction in type 2 diabetesSophie R Sayers, Rebecca L Beavil, Nicholas H F Fine, et al.
Cell Death & Disease|June 4, 2026
NAMPT activity plays a key role in driving autoimmune processes that mediate beta-cell death and type 1 diabetes development in miceDaniel Egbase, Sophie R Sayers, Naila Haq, et al.
Pageof 1

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

Sort By:
Pageof 1
Diabetologia|August 20, 2016
Monomeric eNAMPT in the development of experimental diabetes in mice: a potential target for type 2 diabetes treatmentJulius Kieswich, Sophie R Sayers, Marta F Silvestre, et al.
Plos One|March 25, 2016
Proglucagon Promoter Cre-Mediated AMPK Deletion in Mice Increases Circulating GLP-1 Levels and Oral Glucose ToleranceSophie R Sayers, Frank Reimann, Fiona M Gribble, et al.
Scientific Reports|October 19, 2017
Carnosine scavenging of glucolipotoxic free radicals enhances insulin secretion and glucose uptakeMichael J Cripps, Katie Hanna, Charlie Lavilla, et al.
Diabetes|February 11, 2016
Disallowance of Acot7 in β-Cells Is Required for Normal Glucose Tolerance and Insulin SecretionAida Martinez-Sanchez, Timothy J Pullen, Pauline Chabosseau, et al.
Molecular Metabolism|June 30, 2020
Psoriatic skin inflammation induces a pre-diabetic phenotype via the endocrine actions of skin secretomeElizabeth A Evans, Sophie R Sayers, Xenia Kodji, et al.
Endocrinology|June 11, 2026
eNAMPT induces alpha-cell mass expansion but impaired glucagon counter regulatory responseSophie R Sayers, Vesela S Gesheva, Jithu J Varghese, et al.
Biochemical Pharmacology|November 4, 2019
Identification of a subset of trace amine-associated receptors and ligands as potential modulators of insulin secretionMichael J Cripps, Marta Bagnati, Tania A Jones, et al.
Free Radical Biology & Medicine|August 29, 2021
Carnosine protects stimulus-secretion coupling through prevention of protein carbonyl adduction events in cells under metabolic stressCharlie Jr Lavilla, Merell P Billacura, Katie Hanna, et al.
Diabetologia|November 17, 2019
Structure-functional changes in eNAMPT at high concentrations mediate mouse and human beta cell dysfunction in type 2 diabetesSophie R Sayers, Rebecca L Beavil, Nicholas H F Fine, et al.
Cell Death & Disease|June 4, 2026
NAMPT activity plays a key role in driving autoimmune processes that mediate beta-cell death and type 1 diabetes development in miceDaniel Egbase, Sophie R Sayers, Naila Haq, et al.
Pageof 1