| Literature DB >> 32607636 |
Samantha Maurotti1, Cristina Russo2, Vincenzo Musolino3, Saverio Nucera3, Micaela Gliozzi3, Miriam Scicchitano3, Francesca Bosco3, Valeria Maria Morittu4, Monica Ragusa4, Elisa Mazza1, Roberta Pujia1, Carmine Gazzaruso5, Domenico Britti4, Maria Teresa Valenti6, Michela Deiana6,7, Stefano Romeo1,8, Sandro Giannini9, Luca Dalle Carbonare6, Vincenzo Mollace3, Arturo Pujia1, Tiziana Montalcini10.
Abstract
C-peptide therapy protects against diabetic micro- and macrovascular damages and neuropatic complications. However, to date, the role of C-peptide in preventing diabetes-related bone loss has not been investigated. Our aim was to evaluate if C-peptide infusion improves bone quality in diabetic rats. Twenty-three male Wistar rats were randomly divided into three groups: normal control group; sham diabetic control group; diabetic plus C-peptide group. Diabetes was induced by streptozotocin injection and C-peptide was delivered subcutaneously for 6 weeks. We performed micro-CT and histological testing to assess several trabecular microarchitectural parameters. At the end, diabetic plus C-peptide rats had a higher serum C-peptide (p = 0.02) and calcium (p = 0.04) levels and tibia weight (p = 0.02) than the diabetic control group. The diabetic plus C-peptide group showed a higher trabecular thickness and cross-sectional thickness than the diabetic control group (p = 0.01 and p = 0.03). Both the normal control and diabetic plus C-peptide groups had more Runx-2 and PLIN1 positive cells in comparison with the diabetic control group (p = 0.045 and p = 0.034). Diabetic rats receiving C-peptide had higher quality of trabecular bone than diabetic rats not receiving this treatment. If confirmed, C-peptide could have a role in improving bone quality in diabetes.Entities:
Keywords: Bone microarchitectural parameters; Diabetic rat model; Osteoporosis; Type 1 diabetes mellitus; c-peptide
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Year: 2020 PMID: 32607636 DOI: 10.1007/s00223-020-00716-0
Source DB: PubMed Journal: Calcif Tissue Int ISSN: 0171-967X Impact factor: 4.333