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Controls of Hyperglycemia Improves Dysregulated Microbiota in Diabetic Mice

Authors :
Rita Bottino
Zuhui Pu
Ying Lu
Hanchen Zhang
Zhicheng Zou
Yuanzheng Peng
Lisha Mou
Liang Sun
Zhoubin Fang
Shan Lin
Zhiming Cai
Michael F. Knoll
Jiao Chen
Chuanghua Qiu
Mengtao Cao
Yifan Dai
Source :
Transplantation. 105(9)
Publication Year :
2021

Abstract

Background Type 1 diabetes (T1DM) is a chronic autoimmune disease characterized by T-cell-mediated destruction of insulin-producing beta cells. Evidence shows that patients with T1DM and mice used in specific diabetic models both exhibit changes in their intestinal microbiota and dysregulated microbiota contributes to the pathogenesis of T1DM. Islet transplantation (Tx) is poised to play an important role in the treatment of T1DM. However, whether treatment of T1DM with islet Tx can rescue dysregulated microbiota remains unclear. Methods In this study, we induced diabetic C57BL/6 mice with streptozotocin. Then treatment with either insulin administration, or homogenic or allogenic islet Tx was performed to the diabetic mice. Total DNA was isolated from fecal pellets and high-throughput 16S rRNA sequencing was used to investigate intestinal microbiota composition. Results The overall microbial diversity was comparable between control (nonstreptozotocin treated) and diabetic mice. Our results showed the ratio of the Bacteroidetes: Firmicutes between nondiabetic and diabetic mice was significant different. Treatment with islet Tx or insulin partially corrects the dysregulated bacterial composition. At the genus level, Bacteroides, Odoribacter, and Alistipes were associated with the progression and treatment efficacy of the disease, which may be used as a biomarker to predict curative effect of treatment for patients with T1DM. Conclusions Collectively, our results indicate that diabetic mice show changed microbiota composition and that treatment with insulin and islet Tx can partially correct the dysregulated microbiota.

Details

ISSN :
15346080
Volume :
105
Issue :
9
Database :
OpenAIRE
Journal :
Transplantation
Accession number :
edsair.doi.dedup.....3149c5a133e2155c3f8a309c2a9fe12f