Softened food reduces weight loss in the streptozotocin-induced male mouse model of diabetic nephropathy

Author:

Nørgaard Sisse A123,Sand Fredrik W1,Sørensen Dorte B2ORCID,Abelson Klas SP4ORCID,Søndergaard Henrik3

Affiliation:

1. Diabetes & Cardiovascular Pharmacology, Novo Nordisk A/S, Denmark

2. Department of Veterinary Disease Biology, University of Copenhagen, Denmark

3. Diabetes Complications Pharmacology, Novo Nordisk A/S, Denmark

4. Department of Experimental Medicine, University of Copenhagen, Denmark

Abstract

The streptozotocin (STZ)-induced diabetic mouse is a widely used model of diabetes and diabetic nephropathy (DN). However, it is a well-known issue that this model is challenged by high weight loss, which despite supportive measures often results in high euthanization rates. To overcome these issues, we hypothesized that supplementing STZ-induced diabetic mice with water-softened chow in addition to normal chow would reduce weight loss, lower the need for supportive treatment, and reduce the number of mice reaching the humane endpoint of 20% weight loss. In a 15 week STZ-induced DN study we demonstrated that diabetic male mice receiving softened chow had reduced acute weight loss following STZ treatment ( p = 0.045) and additionally fewer mice were euthanized due to weight loss. By supplementing the diabetic mice with softened chow, no mice reached 20% weight loss whereas 37.5% of the mice without this supplement reached this humane endpoint ( p = 0.0027). Excretion of corticosterone metabolites in faeces was reduced in diabetic mice on softened chow ( p = 0.0007), suggesting lower levels of general stress. Finally, it was demonstrated that the water-softened chow supplement did not significantly affect the induction of key disease parameters, i.e. %HbA1C and albuminuria nor result in abnormal teeth wear. In conclusion, supplementation of softened food is refining the STZ-induced diabetic mouse model significantly by reducing stress, weight loss and the number of animals sacrificed due to humane endpoints, while maintaining the key phenotypes of diabetes and nephropathy.

Publisher

SAGE Publications

Subject

General Veterinary,Animal Science and Zoology

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