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植物乳杆菌 NC8 及其代谢产物乙酸盐通过抑制 NLRP3 缓解 1 型糖尿病。

Lactobacillus Plantarum NC8 and its metabolite acetate alleviate type 1 diabetes via inhibiting NLRP3.

机构信息

College of Veterinary Medicine, Jilin Agricultural University, Changchun, China; Jilin Provincial Engineering Research Center of Animal Probiotics, Jilin Provincial Key Laboratory of Animal Microecology and Healthy Breeding, Jilin Agricultural University, Changchun, China; Engineering Research Center of Microecological Vaccines (Drugs) for Major Animal Diseases, Ministry of Education, Jilin Agricultural University, Changchun, China.

College of Veterinary Medicine, Jilin Agricultural University, Changchun, China; Jilin Provincial Engineering Research Center of Animal Probiotics, Jilin Provincial Key Laboratory of Animal Microecology and Healthy Breeding, Jilin Agricultural University, Changchun, China; Engineering Research Center of Microecological Vaccines (Drugs) for Major Animal Diseases, Ministry of Education, Jilin Agricultural University, Changchun, China.

出版信息

Microb Pathog. 2023 Sep;182:106237. doi: 10.1016/j.micpath.2023.106237. Epub 2023 Jul 6.

Abstract

A healthy organism is the result of host-microbiome co-evolution. Microbial metabolites can also stimulate immune cells to reduce intestinal inflammation and permeability. Gut dysbiosis will lead to a variety of autoimmune diseases, such as Type 1 diabetes (T1D). Most of probiotics, such as Lactobacillus casei, Lactobacillus reuteri, Bifidobacterium bifidium, and Streptococcus thermophiles, can improve the intestinal flora structure of the host, reduce intestinal permeability, and relieve symptoms of T1D patients if ingested above probiotics in sufficient amounts. Lactobacillus Plantarum NC8, a kind of Lactobacillus, whether it has an effect on T1D, and the mechanism of it regulating T1D is still unclear. As a member of the inflammatory family, NLRP3 inflammasome can enhance inflammatory responses by promoting the production and secretion of proinflammatory cytokines. Many previous studies had shown that NLRP3 also plays an important role in the development of T1D. When the NLRP3 gene is deleted, the disease progression of T1D will be delayed. Therefore, this study investigated whether Lactobacillus Plantarum NC8 can alleviate T1D by regulating NLRP3. The results demonstrated that Lactobacillus Plantarum NC8 and its metabolites acetate play a role in T1D by co-modulating NLRP3. Lactobacillus Plantarum NC8 and acetate can reduce the damage of T1D in the model mice, even if orally administered them in the early stage of T1D. The number of Th1/Th17 cells in the spleen and pancreatic lymph nodes (PLNs) of T1D mice were significantly reduced by oral Lactobacillus Plantarum NC8 or acetate. The expression of NLRP3 in the pancreas of T1D mice or murine macrophages of inflammatory model were significantly inhibited by treatment with Lactobacillus Plantarum NC8 or acetate. In addition, the number of macrophages in the pancreas were significantly reduced by the treatment with Lactobacillus Plantarum NC8 or acetate. In summary, this study indicated that the regulatory mechanism of Lactobacillus Plantarum NC8 and its metabolite acetate to T1D maybe via inhibiting NLRP3 and provides a novel insights into the mechanism of the alleviated role of probiotics to T1D.

摘要

健康的机体是宿主-微生物组共同进化的结果。微生物代谢产物也可以刺激免疫细胞,减少肠道炎症和通透性。肠道菌群失调会导致多种自身免疫性疾病,如 1 型糖尿病(T1D)。大多数益生菌,如干酪乳杆菌、罗伊氏乳杆菌、双歧杆菌和嗜热链球菌,可改善宿主肠道菌群结构,降低肠道通透性,并减轻 T1D 患者的症状,如果摄入足够数量的上述益生菌。植物乳杆菌 NC8 是一种乳杆菌,它是否对 T1D 有作用,以及它调节 T1D 的机制尚不清楚。作为炎症家族的一员,NLRP3 炎性体可以通过促进促炎细胞因子的产生和分泌来增强炎症反应。许多先前的研究表明,NLRP3 在 T1D 的发展中也起着重要作用。当 NLRP3 基因缺失时,T1D 的疾病进展将被延迟。因此,本研究探讨了植物乳杆菌 NC8 是否可以通过调节 NLRP3 来缓解 T1D。结果表明,植物乳杆菌 NC8 及其代谢物乙酸盐通过共同调节 NLRP3 来发挥作用。植物乳杆菌 NC8 和乙酸盐可以减轻 T1D 模型小鼠的损伤,即使在 T1D 早期给予它们口服。T1D 小鼠脾和胰腺淋巴结(PLN)中的 Th1/Th17 细胞数量因口服植物乳杆菌 NC8 或乙酸盐而显著减少。NLRP3 在 T1D 小鼠胰腺或炎症模型中巨噬细胞的表达因用植物乳杆菌 NC8 或乙酸盐处理而显著抑制。此外,植物乳杆菌 NC8 或乙酸盐处理可显著减少胰腺中的巨噬细胞数量。总之,本研究表明,植物乳杆菌 NC8 及其代谢物乙酸盐对 T1D 的调节机制可能是通过抑制 NLRP3 实现的,并为益生菌缓解 T1D 作用的机制提供了新的见解。

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