Lactobacillus reuteri TISTR 2736 alleviates type 2 diabetes in rats via the hepatic IRS1/PI3K/AKT signaling pathway by mitigating oxidative stress and inflammatory mediators

被引:0
作者
Pakaew, Kamonthip [1 ]
Chonpathompikunlert, Pennapa [2 ]
Wongmanee, Navinee [1 ]
Rojanaverawong, Worarat [1 ]
Sitdhipol, Jaruwan [2 ]
Thaveethaptaikul, Punnathorn [2 ]
Charoenphon, Natthawut [3 ]
Hanchang, Wanthanee [1 ,4 ]
机构
[1] Naresuan Univ, Fac Med Sci, Dept Physiol, Phitsanulok 65000, Thailand
[2] Thailand Inst Sci & Technol Res TISTR, Biodivers Res Ctr BRC, Pathum Thani 12120, Thailand
[3] Naresuan Univ, Fac Med Sci, Dept Anat, Phitsanulok 65000, Thailand
[4] Naresuan Univ, Ctr Excellence Med Biotechnol, Phitsanulok 65000, Thailand
关键词
<italic>Lactobacillus reuteri</italic>; Type; 2; diabetes; Carbohydrate metabolism; Insulin signaling; HIGH-FAT DIET; INSULIN SENSITIVITY; METABOLISM; GLUCOSE; LIVER; MODEL; ACIDOPHILUS; OIL; L;
D O I
10.1007/s00394-024-03529-1
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
PurposeThis study investigated the beneficial effects of Lactobacillus reuteri TISTR 2736 on glucose homeostasis, carbohydrate metabolism, and the underlying mechanisms of its actions in type 2 diabetic (T2D) rats.MethodsA rat model of T2D was established by a combination of a high-fat diet and streptozotocin. The diabetic rats were treated daily with L. reuteri TISTR 2736 (2 x 108 CFU/day) for 30 days. Biochemical, histopathological, and molecular analyses were carried out to determine insulin signaling, carbohydrate metabolism, oxidative stress, and inflammation.ResultsThe results demonstrated that treatment with L. reuteri TISTR 2736 significantly ameliorated fasting blood glucose and glucose intolerance, and improved insulin sensitivity indices in the diabetic rats. The hepatic histopathology was improved with L. reuteri TISTR 2736 treatment, which was correlated with a reduction of hepatic lipid profiles. L. reuteri TISTR 2736 significantly reduced glycogen content, fructose 1,6-bisphosphatase activity, and phosphoenolpyruvate carboxykinase 1 protein expression, and enhanced hexokinase activity in the diabetic liver. The downregulation of IRS1 and phosphorylated IRS1Ser307 and upregulation of PI3K and phosphorylated AKTSer473 proteins in the liver were found in the L. reuteri TISTR 2736-treated diabetic group. Furthermore, it was able to suppress oxidative stress and inflammation in the diabetic rats, as demonstrated by decreased malondialdehyde and protein levels of NF-kappa B, IL-6 and TNF-alpha, but increased antioxidant enzyme activities of superoxide dismutase, catalase, and glutathione peroxidase.ConclusionBy inhibiting oxidative and inflammatory stress, L. reuteri TISTR 2736 alleviated hyperglycemia and improved carbohydrate metabolism through activating IRS1/PI3K/AKT pathway in the T2D rats.
引用
收藏
页数:20
相关论文
共 50 条
  • [11] Tangganjian decoction ameliorates type 2 diabetes mellitus and nonalcoholic fatty liver disease in rats by activating the IRS/PI3K/AKT signaling pathway
    Fan, Yanbo
    He, Zhiwei
    Wang, Wei
    Li, Jingjing
    Hu, Aimin
    Li, Li
    Yan, Ling
    Li, Zhijie
    Yin, Qiang
    BIOMEDICINE & PHARMACOTHERAPY, 2018, 106 : 733 - 737
  • [12] Gancao Xiexin Decoction exerts anti-hyperglycemic and anti-hyperlipidemic effects in type 2 diabetes mellitus rats via IRS2/PI3K/Akt pathway
    Yang, Bo
    Chen, Junxian
    Li, Yiqun
    Liu, Lingling
    Zhong, Yunchang
    Tan, Hongtao
    TROPICAL JOURNAL OF PHARMACEUTICAL RESEARCH, 2023, 22 (06) : 1219 - 1229
  • [13] Network Pharmacology Analysis, Molecular Docking Integrated Experimental Verification Reveal the Mechanism of Gynostemma pentaphyllum in the Treatment of Type II Diabetes by Regulating the IRS1/PI3K/Akt Signaling Pathway
    Yang, Songqin
    Zhao, Mao
    Lu, Mingxing
    Feng, Yuhan
    Zhang, Xia
    Wang, Daoping
    Jiang, Wenwen
    CURRENT ISSUES IN MOLECULAR BIOLOGY, 2024, 46 (06) : 5561 - 5581
  • [14] Dibutyl phthalate exposure aggravates type 2 diabetes by disrupting the insulin-mediated PI3K/AKT signaling pathway
    Deng, Ting
    Zhang, Yu
    Wu, Yang
    Ma, Ping
    Duan, Jiufei
    Qin, Wei
    Yang, Xu
    Chen, Mingqing
    TOXICOLOGY LETTERS, 2018, 290 : 1 - 9
  • [15] Effects of D-Pinitol on Insulin Resistance through the PI3K/Akt Signaling Pathway in Type 2 Diabetes Mellitus Rats
    Gao, Yunfeng
    Zhang, Mengna
    Wu, Tianchen
    Xu, Mengying
    Cai, Haonan
    Zhang, Zesheng
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2015, 63 (26) : 6019 - 6026
  • [16] Antidiabetic effects of polysaccharide from azuki bean (Vigna angularis) in type 2 diabetic rats via insulin/PI3K/AKT signaling pathway
    Wu, Guangjie
    Bai, Zhouya
    Wan, Yujun
    Shi, Huifang
    Huang, Xiaojun
    Nie, Shaoping
    FOOD HYDROCOLLOIDS, 2020, 101 (101)
  • [17] C2CD4B Evokes Oxidative Stress and Vascular Dysfunction via a PI3K/Akt/PKCα-Signaling Pathway
    Di Pietro, Paola
    Abate, Angela Carmelita
    Prete, Valeria
    Damato, Antonio
    Venturini, Eleonora
    Rusciano, Maria Rosaria
    Izzo, Carmine
    Visco, Valeria
    Ciccarelli, Michele
    Vecchione, Carmine
    Carrizzo, Albino
    ANTIOXIDANTS, 2024, 13 (01)
  • [18] Sea Buckthorn Fruit Oil Extract Alleviates Insulin Resistance through the PI3K/Akt Signaling Pathway in Type 2 Diabetes Mellitus Cells and Rats
    Gao, Shan
    Guo, Qing
    Qin, Chengguang
    Shang, Rui
    Zhang, Zesheng
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2017, 65 (07) : 1328 - 1336
  • [19] Cinnamaldehyde ameliorates STZ-induced rat diabetes through modulation of IRS1/PI3K/AKT2 pathway and AGEs/RAGE interaction
    Marwa E. Abdelmageed
    George S. Shehatou
    Rami A. Abdelsalam
    Ghada M. Suddek
    Hatem A. Salem
    Naunyn-Schmiedeberg's Archives of Pharmacology, 2019, 392 : 243 - 258
  • [20] Effects of Hydroxysafflor Yellow A on the PI3K/AKT Pathway and Apoptosis of Pancreatic β-Cells in Type 2 Diabetes Mellitus Rats
    Lee, Maosheng
    Li, Huilin
    Zhao, Hengxia
    Suo, Miao
    Liu, Deliang
    DIABETES METABOLIC SYNDROME AND OBESITY-TARGETS AND THERAPY, 2020, 13 : 1097 - 1107