Protective role of nano-selenium-enriched Bifidobacterium longum in delaying the onset of streptozotocin-induced diabetes

Author:

Lin Yan12,Ren Yongzhe1,Zhang Yan34,Zhou Junjie1,Zhou Feng1,Zhao Quan1,Xu Genxing134,Hua Zichun145ORCID

Affiliation:

1. School of Life Sciences, State Key Laboratory of Pharmaceutical Biotechnology, Nanjing University, Nanjing 210023, Jiangsu, People's Republic of China

2. School of Nursing, Xinxiang Medical University, Xinxiang 453000, Henan, People's Republic of China

3. Nanjing Industrial Innovation Center for Pharmaceutical Biotechnology, Nanjing Genrecom Laboratories, Ltd., Nanjing 210031, Jiangsu, People's Republic of China

4. Changzhou High-Tech Research Institute of Nanjing University, Jiangsu Target Pharma Laboratories Inc., Changzhou 213164, Jiangsu, People's Republic of China

5. Shenzhen Research Institute, Nanjing University, Shenzhen 518057, Guangdong, People's Republic of China

Abstract

Bifidobacterium longum (B. longum) could accumulate Selenium (Se) and nano-Se in the form of Se-B. longum and Nano-Se-B. longum, respectively . In this study, the effect of Nano-Se-B. longum in diabetic mice was evaluated. Physiological and metabolic parameters such as blood glucose, body weight, serum insulin level, intraperitoneal glucose tolerance test (IPGTT), food intake, water consumption and urine output were evaluated. The expression of insulin signalling pathway-related proteins was evaluated by western blotting. Haematoxylin and eosin (H&E) was used for histological examination of the liver, pancreas and kidney sections. Creatinine levels in serum (SCr) and blood urea nitrogen (BUN) were measured. Nano-Se-B. longum was the best in terms of delaying the onset of diabetes. Nano-Se-B. longum decreased blood glucose and body weight compared with those noted for the model group. IPGTT, food intake, water consumption and urine output significantly increased and serum insulin levels significantly decreased in the model group compared with those in all the Nano-Se-B. longum -treated mice. Histological results showed that the Nano-Se-B. longum -treated mice were better than the model group mice in terms of pathological changes. The expression of insulin signalling pathway-related proteins was upregulated in the Nano-Se-B. longum -treated groups. A significant increase in SCr and BUN levels was noted in the model group. This study for the first time reported the dose-dependent preventive effect of Nano-Se-B. longum on the onset of diabetes and renal damage. The mechanism may be related to changes in insulin signalling.

Funder

Shenzhen Science and Technology Innovation Committee

the Chinese National Natural Sciences Foundation

Shenzhen Peacock Plan

the National Key R&D Research Program by Ministry of Science and Technology

Publisher

The Royal Society

Subject

Multidisciplinary

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1. New insights into the role of nanotechnology in Bifidobacterium biomedical applications;Advances in Natural Sciences: Nanoscience and Nanotechnology;2024-04-22

2. Probiotics in the Management of Diabetes;Advances in Probiotics for Health and Nutrition;2024-02-21

3. Advances in the Study of Selenium‐Enriched Probiotics: From the Inorganic Se into Se Nanoparticles;Molecular Nutrition & Food Research;2023-10-02

4. A Review of Selenium (Se) Nanoparticles: From Synthesis to Applications;Particle & Particle Systems Characterization;2023-09-04

5. Novel Insight into the Effect of Probiotics in the Regulation of the Most Important Pathways Involved in the Pathogenesis of Type 2 Diabetes Mellitus;Probiotics and Antimicrobial Proteins;2023-05-10

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