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不同益生菌菌株乳双歧杆菌、鼠李糖乳杆菌和罗伊氏乳杆菌对脂多糖诱导炎症中肠-脑轴免疫调节的影响。

Effects of different probiotic strains B. lactis, L. rhamnosus and L. reuteri on brain-intestinal axis immunomodulation in an endotoxin-induced inflammation.

机构信息

Gabbia Biotechnology, Barra Velha - Santa Catarina, Brazil.

Biohall Research and Innovation, Itajaí, SC, Brazil.

出版信息

Mol Neurobiol. 2022 Aug;59(8):5168-5178. doi: 10.1007/s12035-022-02906-3. Epub 2022 Jun 8.

Abstract

The study evaluated the effects of supplementation with three different probiotic strains Bifidobacterium lactis (LACT GB™), Lactobacillus rhamnosus (RHAM GB™) and Lactobacillus reuteri (REUT GB™) on brain-intestinal immunomodulation in an animal model of LPS-induced inflammation. Fifty mice Balb/C were distributed into five groups: control; lipopolysaccharide (LPS); LPS + B. lactis (LACT GB™); LPS + L. rhamnosus (RHAM GB™); and LPS + L. reuteri (REUT GB™). The animals were supplemented with their respective probiotic microorganisms daily, for 30 days, at a concentration of 1 × 10 CFU/animal/day. After 30 days of supplementation, animals received the inflammatory insult by LPS (15 mg/kg). Behavioral tests, oxidative stress and inflammation were performed, as well as gut and brain histology. In the behavioral test, LPS + B. lactis group was less anxious than the other groups. Serum interleukin IL-1β and IL-6 levels increased in all groups that received the LPS insult, and there was a reduction in inflammation in the supplemented groups when compared to the LPS group in brain and gut. There is a reduction in myeloperoxidase activity and oxidative stress in groups supplemented with probiotics. In intestine histological analysis occurs damage to the tissue integrity in the LPS group, in the other hand, occurs preservation of integrity in the probiotic supplemented animals. In the brain, infiltrates of perivascular inflammatory cells can be seen in the LPS group. The three probiotic studies showed efficient immunomodulating activity and ensured integrity of the intestinal barrier function, even after the severe insult by LPS. These results show the important role of probiotics in the gut-brain axis. Graphical abstract illustratively represents the gut-brain axis and how different probiotic strains influence the immunomodulatory response releasing different pro- and anti-inflammatory cytokines, and their role in the balance of dysbiosis.

摘要

该研究评估了三种不同益生菌菌株(双歧杆菌 Lactis(LACT GB™)、鼠李糖乳杆菌(RHAM GB™)和罗伊氏乳杆菌(REUT GB™))对 LPS 诱导炎症动物模型中脑-肠免疫调节的影响。将 50 只 Balb/C 小鼠分为五组:对照组;脂多糖(LPS)组;LPS+双歧杆菌(LACT GB™)组;LPS+鼠李糖乳杆菌(RHAM GB™)组;和 LPS+罗伊氏乳杆菌(REUT GB™)组。动物每天用各自的益生菌微生物补充,持续 30 天,浓度为 1×10 CFU/动物/天。补充 30 天后,动物接受 LPS(15mg/kg)的炎症刺激。进行行为测试、氧化应激和炎症以及肠道和大脑组织学检查。在行为测试中,LPS+B. lactis 组比其他组焦虑程度更低。所有接受 LPS 刺激的组的血清白细胞介素 IL-1β 和 IL-6 水平均升高,与 LPS 组相比,补充组的大脑和肠道炎症减轻。补充益生菌的组的髓过氧化物酶活性和氧化应激降低。在肠道组织学分析中,LPS 组的组织完整性受损,而在补充益生菌的动物中,完整性得以维持。在大脑中,可以看到 LPS 组血管周围炎症细胞的浸润。三种益生菌研究均表现出有效的免疫调节活性,并确保了肠道屏障功能的完整性,即使在 LPS 严重损伤后也是如此。这些结果表明了益生菌在肠-脑轴中的重要作用。图表摘要生动地表示了肠-脑轴以及不同的益生菌菌株如何通过释放不同的促炎和抗炎细胞因子来影响免疫调节反应,以及它们在肠道菌群失调平衡中的作用。

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