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Authors whose works are in public domain in at least one jurisdiction

List of works by Katrine D Galsgaard

1-15 of 15 results

Disruption of glucagon receptor signaling causes hyperaminoacidemia exposing a possible liver-alpha-cell axis

scientific article published on 3 October 2017

Evidence of a liver-alpha cell axis in humans: hepatic insulin resistance attenuates relationship between fasting plasma glucagon and glucagonotropic amino acids

scientific article published on 5 January 2018

Hyperglucagonemia correlates with plasma levels of non-branched-chain amino acids in patients with liver disease independent of type 2 diabetes

scientific article published on 28 September 2017

The liver-alpha cell axis and type 2 diabetes

scientific article published on 01 October 2019

Glucagon Receptor Signaling and Lipid Metabolism

scientific article published on 24 April 2019

Circulating Glucagon 1-61 Regulates Blood Glucose by Increasing Insulin Secretion and Hepatic Glucose Production

scientific article published in November 2017

Why is it so difficult to measure glucagon-like peptide-1 in a mouse?

scientific article published in July 2017

Glucose and amino acid metabolism in mice depend mutually on glucagon and insulin receptor signaling

scientific article published on 26 February 2019

Glucagon Receptor Signaling and Glucagon Resistance

scientific article published on 05 July 2019

Single incretin receptor knockout mice do not compensate by increasing glucose-stimulated secretion of the remaining incretin hormone

Evaluation of Commercially Available Glucagon Receptor Antibodies and Glucagon Receptor Expression

In Vivo Inhibition of Dipeptidyl Peptidase 4 and Neprilysin Activity Enables Measurement of GLP-1 Secretion in Male Rats

scientific article published on 4 November 2025

Female glucagon receptor knockout mice are prone to steatosis but resistant to weight gain when fed a MASH‐promoting GAN diet and a high‐fat diet

Inhibition of dipeptidyl peptidase 4 allows accurate measurement of GLP-1 secretion in mice

Glucagon receptor activation contributes to the development of kidney injury