Serum IGF-I Is Not a Reliable Pharmacodynamic Marker of Exogenous Growth Hormone Activity in Mice

Author:

Bielohuby Maximilian1,Schaab Michael2,Kummann Moritz1,Sawitzky Mandy3,Gebhardt Rolf4,Binder Gerhard5,Frystyk Jan6,Bjerre Mette6,Hoeflich Andreas3,Kratzsch Juergen2,Bidlingmaier Martin1

Affiliation:

1. Endocrine Research Unit (M.Bie., M.K., M.Bid.), Medizinische Klinik-Innenstadt, Ludwig-Maximilians University, D-80336 Munich, Germany

2. Institute of Laboratory Medicine (M.S., J.K.), Clinical Chemistry and Molecular Diagnostics, University Hospital Leipzig, D-04103 Leipzig, Germany

3. Laboratory of Mouse Genetics (M.S., A.H.), Research Unit Genetics and Biometry, Research Institute for the Biology of Farm Animals (FBN), D-18196 Dummerstorf, Germany

4. Institute of Biochemistry (R.G.), Medical Faculty, University of Leipzig, D-04251 Leipzig, Germany

5. Pediatric Endocrinology (G.B.), University Children's Hospital, D-72070 Tübingen, Germany

6. Medical Research Laboratories (J.F., M.Bje.), Clinical Institute of Medicine, Faculty of Health Sciences, Aarhus University, DK-8000 Aarhus, Denmark

Abstract

Serum IGF-I is a well-established pharmacodynamic marker of GH administration in humans and has been used for this purpose in animal studies. However, its general suitability in wild-type laboratory mice has not been demonstrated. Here we show that treatment with recombinant human GH (rhGH) in four different strains of laboratory mice increases body weight, lean body mass, and liver weight but does not increase hepatic expression and release of IGF-I. In contrast and as expected, hypophysectomized rats show a rapid increase in serum IGF-I after rhGH administration. The lack of IGF-I up-regulation in mice occurs despite hepatic activation of the Janus kinase/signal transducer and activator of transcription (JAK/STAT) pathway and is not explained by GH dose, route of administration, origin of GH (i.e. recombinant human, bovine, and murine GH), treatment duration, genetic background, sex, or formation of neutralizing antibodies. Effects on other components of the GH/IGF pathway were highly influenced by genetic background and sex but not consistently affected by rhGH treatment. We conclude that IGF-I is not a reliable indicator of the biological effects of exogenous GH treatment in genetically and pharmacologically unmodified mice. We speculate that IGF-I release is already maximal in these animals and cannot be further increased by exogenous GH treatment. This is also suggested by the observation of restored IGF-I up-regulation in isolated murine hepatocytes after rhGH treatment. Total body weight, lean body mass, and liver weight may be more reliable phenotypic indicators in these models.

Publisher

The Endocrine Society

Subject

Endocrinology

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