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Nicotinamide mononucleotide promotes pancreatic islet function through the SIRT1 pathway in mice after severe burns
Xinzhu Liu1, Dawei Li1, Zhaoxing Liu1
1Department of Burns and Plastic Surgery, the Fourth Medical Center, Chinese PLA General Hospital, Beijing 100048, China.
Objective:
The high levels of oxidative stress and apoptosis of pancreatic islet cells after severe burns lead to the dysfunction of islets and glucose metabolism disorders. Silent information regulator of transcription 1 (SIRT1) can decrease oxidative stress and apoptosis of islets in diabetes mellitus. This study aimed to investigate the role of SIRT1 on pancreatic islets and whether nicotinamide mononucleotide (NMN) can impact the function of pancreatic islets after severe burns.
Methods:
A 30% total body surface area full-thickness burn model was established using male C57BL/6 mice, and mice were randomized into sham group, burn group, burn + NMN group and burn + NMN + EX-527 group. The concentration of nicotinamide adenine dinucleotide (NAD), the expression of SIRT1, apoptosis induction, mitochondrial function and related signalling pathways of pancreatic islets at 24 h after severe burns were tested.
Results:
Severe burns led to decreased NAD level and SIRT1 expression of pancreatic islets, increased apoptosis rate, and mitochondrial dysfunction of pancreatic islets. NAD repletion by NMN and upregulation of SIRT1 expression reduced the phosphorylation and acetylation levels of NF-κB p65 and burn-induced apoptosis. Meanwhile, the mitochondrial function of islets was rescued by NMN treatment through the SIRT1/UCP2 axis and SIRT1/PGC1-α axis. In addition, the fasting blood glucose decreased and glucose-stimulated insulin secretion was improved with NMN treatment after severe burns. This protective effect of NMN could be abolished by EX-527, the inhibitor of SIRT1.
Conclusion:
NMN can increase the concentration of NAD+ of pancreatic islets and regulate SIRT1 and its downstream targets, thereby reducing apoptosis, maintaining mitochondrial function and improving pancreatic islet function after severe burn injury.
Insights
Nicotinamide mononucleotide (NMN) protects pancreatic islet cells after severe burns by boosting NAD+ levels and activating SIRT1. This reduces cell death, improves mitochondrial function, and restores glucose metabolism.
Area of Science:
- Biochemistry
- Metabolic Disorders
- Burn Injury Research
Background:
- Severe burns induce oxidative stress and apoptosis in pancreatic islet cells, leading to islet dysfunction and glucose metabolism disorders.
- Silent information regulator of transcription 1 (SIRT1) is known to mitigate oxidative stress and apoptosis in pancreatic islets, particularly in diabetes mellitus.
Purpose of the Study:
- To investigate the role of SIRT1 in pancreatic islet function following severe burn injury.
- To determine if nicotinamide mononucleotide (NMN) can improve pancreatic islet function after severe burns.
Main Methods:
- A 30% total body surface area full-thickness burn model was established in male C57BL/6 mice.
- Mice were divided into sham, burn, burn + NMN, and burn + NMN + EX-527 (SIRT1 inhibitor) groups.
- Pancreatic islet analyses included NAD+ concentration, SIRT1 expression, apoptosis, mitochondrial function, and signaling pathways at 24 hours post-burn.
Main Results:
- Severe burns decreased NAD+ levels and SIRT1 expression, increasing islet apoptosis and mitochondrial dysfunction.
- NMN treatment upregulated SIRT1, reduced NF-κB p65 phosphorylation/acetylation, and decreased burn-induced apoptosis.
- NMN improved islet mitochondrial function via SIRT1/UCP2 and SIRT1/PGC1-α pathways, lowering blood glucose and enhancing insulin secretion. EX-527 abolished these effects.
Conclusions:
- NMN enhances NAD+ concentration in pancreatic islets, activating SIRT1 and its downstream targets.
- NMN treatment reduces apoptosis, preserves mitochondrial function, and improves pancreatic islet function after severe burn injury.
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