Effect of heat-killed Streptococcus thermophilus on type 2 diabetes rats

Background and Aims The link between gut microbiota and type 2 diabetes (T2D) has been addressed by numerous studies. Streptococcus thermophilus from fermented milk products, has been used as a probiotic in previous research. However, whether heat-killed S. thermophilus can improve the glycemic para...

Full description

Bibliographic Details
Main Authors: Xiangyang Gao, Fei Wang, Peng Zhao, Rong Zhang, Qiang Zeng
Format: Article
Language:English
Published: PeerJ Inc. 2019-06-01
Series:PeerJ
Subjects:
Online Access:https://peerj.com/articles/7117.pdf
id doaj-787248a5ae4f4df9b1b3c1e988b93cc3
record_format Article
spelling doaj-787248a5ae4f4df9b1b3c1e988b93cc32020-11-25T01:51:15ZengPeerJ Inc.PeerJ2167-83592019-06-017e711710.7717/peerj.7117Effect of heat-killed Streptococcus thermophilus on type 2 diabetes ratsXiangyang Gao0Fei Wang1Peng Zhao2Rong Zhang3Qiang Zeng4Health Management Institute, The Second Medical Center of Chinese PLA General Hospital, Beijing, ChinaHealth Management Institute, The Second Medical Center of Chinese PLA General Hospital, Beijing, ChinaHealth Management Institute, The Second Medical Center of Chinese PLA General Hospital, Beijing, ChinaHealth Management Institute, The Second Medical Center of Chinese PLA General Hospital, Beijing, ChinaHealth Management Institute, The Second Medical Center of Chinese PLA General Hospital, Beijing, ChinaBackground and Aims The link between gut microbiota and type 2 diabetes (T2D) has been addressed by numerous studies. Streptococcus thermophilus from fermented milk products, has been used as a probiotic in previous research. However, whether heat-killed S. thermophilus can improve the glycemic parameters of diabetic rats remains unanswered. In this study, we evaluated the effect of heat-killed S. thermophilus on T2D model rats and the potential mechanisms of the effect. Methods Zucker diabetic fatty (ZDF) rats were used to generate a diabetic rat model induced by feeding a high-fat diet. Heat-killed S. thermophilus were orally administered to normal and diabetic rats for 12 weeks. Intestinal microbiota analysis, histology analysis, oral glucose tolerance test and measurement of inflammatory factors were performed. Results We found that heat-killed S. thermophilus treatment reduced fasting blood glucose levels and alleviated glucose intolerance and total cholesterol in diabetic ZDF rats. Additionally, heat-killed S. thermophilus increased the interleukin 10 while reducing the levels of lipopolysaccharide, interleukin 6, and tumor necrosis factor-α in diabetic ZDF rats. The heat-killed S. thermophilus treatment can normalize the structure of the intestinal and colon mucosal layer of diabetic rats. The characteristics of the gut microbiota in heat-killed S. thermophilus-treated and control rats were similar. At the genus level, the abundances of beneficial bacteria, including Ruminococcaceae, Veillonella, Coprococcus, and Bamesiella, were all significantly elevated by heat-killed S. thermophilus treatment in ZDF diabetic rats. Conclusion Our study supports the hypothesis that treatment with heat-killed S. thermophilus could effectively improve glycemic parameters in T2D model rats. In addition, the potential mechanisms underlying the protection maybe include changing the composition of gut microbiota, reinforcing the intestinal epithelial barrier and the immunity of the intestinal mucosa, decreasing the level of inflammation, and then reducing the insulin resistance.https://peerj.com/articles/7117.pdfDiabetesGut microbiotaHeat-killed Streptococcus thermophilusZDF rats
collection DOAJ
language English
format Article
sources DOAJ
author Xiangyang Gao
Fei Wang
Peng Zhao
Rong Zhang
Qiang Zeng
spellingShingle Xiangyang Gao
Fei Wang
Peng Zhao
Rong Zhang
Qiang Zeng
Effect of heat-killed Streptococcus thermophilus on type 2 diabetes rats
PeerJ
Diabetes
Gut microbiota
Heat-killed Streptococcus thermophilus
ZDF rats
author_facet Xiangyang Gao
Fei Wang
Peng Zhao
Rong Zhang
Qiang Zeng
author_sort Xiangyang Gao
title Effect of heat-killed Streptococcus thermophilus on type 2 diabetes rats
title_short Effect of heat-killed Streptococcus thermophilus on type 2 diabetes rats
title_full Effect of heat-killed Streptococcus thermophilus on type 2 diabetes rats
title_fullStr Effect of heat-killed Streptococcus thermophilus on type 2 diabetes rats
title_full_unstemmed Effect of heat-killed Streptococcus thermophilus on type 2 diabetes rats
title_sort effect of heat-killed streptococcus thermophilus on type 2 diabetes rats
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2019-06-01
description Background and Aims The link between gut microbiota and type 2 diabetes (T2D) has been addressed by numerous studies. Streptococcus thermophilus from fermented milk products, has been used as a probiotic in previous research. However, whether heat-killed S. thermophilus can improve the glycemic parameters of diabetic rats remains unanswered. In this study, we evaluated the effect of heat-killed S. thermophilus on T2D model rats and the potential mechanisms of the effect. Methods Zucker diabetic fatty (ZDF) rats were used to generate a diabetic rat model induced by feeding a high-fat diet. Heat-killed S. thermophilus were orally administered to normal and diabetic rats for 12 weeks. Intestinal microbiota analysis, histology analysis, oral glucose tolerance test and measurement of inflammatory factors were performed. Results We found that heat-killed S. thermophilus treatment reduced fasting blood glucose levels and alleviated glucose intolerance and total cholesterol in diabetic ZDF rats. Additionally, heat-killed S. thermophilus increased the interleukin 10 while reducing the levels of lipopolysaccharide, interleukin 6, and tumor necrosis factor-α in diabetic ZDF rats. The heat-killed S. thermophilus treatment can normalize the structure of the intestinal and colon mucosal layer of diabetic rats. The characteristics of the gut microbiota in heat-killed S. thermophilus-treated and control rats were similar. At the genus level, the abundances of beneficial bacteria, including Ruminococcaceae, Veillonella, Coprococcus, and Bamesiella, were all significantly elevated by heat-killed S. thermophilus treatment in ZDF diabetic rats. Conclusion Our study supports the hypothesis that treatment with heat-killed S. thermophilus could effectively improve glycemic parameters in T2D model rats. In addition, the potential mechanisms underlying the protection maybe include changing the composition of gut microbiota, reinforcing the intestinal epithelial barrier and the immunity of the intestinal mucosa, decreasing the level of inflammation, and then reducing the insulin resistance.
topic Diabetes
Gut microbiota
Heat-killed Streptococcus thermophilus
ZDF rats
url https://peerj.com/articles/7117.pdf
work_keys_str_mv AT xiangyanggao effectofheatkilledstreptococcusthermophilusontype2diabetesrats
AT feiwang effectofheatkilledstreptococcusthermophilusontype2diabetesrats
AT pengzhao effectofheatkilledstreptococcusthermophilusontype2diabetesrats
AT rongzhang effectofheatkilledstreptococcusthermophilusontype2diabetesrats
AT qiangzeng effectofheatkilledstreptococcusthermophilusontype2diabetesrats
_version_ 1724997601348026368