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植物乳杆菌和两歧双歧杆菌通过调节肠道炎症和微生物群缓解眶下腺切除诱导的干眼小鼠的眼部干燥。

Lactobacillus plantarum and Bifidobacterium bifidum alleviate dry eye in mice with exorbital lacrimal gland excision by modulating gut inflammation and microbiota.

机构信息

Department of Food and Nutrition, Kyung Hee University, 26, Kyungheedae-ro, Dongdaemun-gu, Seoul 02447, Korea.

出版信息

Food Funct. 2021 Mar 21;12(6):2489-2497. doi: 10.1039/d0fo02984j. Epub 2021 Mar 3.

Abstract

In order to understand the efficacy of probiotics against dry eye syndrome, we selected anti-inflammatory probiotics Lactobacillus plantarum NK151 and Bifidobacterium bifidum NK175, which increased the ratio of IL-10 to TNF-α expression, from the human gut bacteria collection and examined their effects on tear secretion and cornea/conjunctiva inflammation in mice with excision of the unilateral exorbital lacrimal gland and 1% atropine and 0.1% benzalkonium chloride solution (ELA)-induced dry eye. Exposure to ELA significantly reduced tear secretion in mice, assessed by the phenol red thread tear test. However, oral gavage of NK151 and/or NK175 significantly increased ELA-suppressed tear secretion, IL-10 expression, and goblet cell population and decreased the ELA-induced corneal fluorescein-staining score, IL-1β and TNF-α expression in the conjunctiva. They also suppressed ELA-induced myeloperoxidase, IL-1β, and TNF-α expression. In particular, they increased the ratio of IL-10 to TNF-α expression in the colon. Their treatments increased ELA-induced α-diversity reduction to that of the control group and partially restored ELA-shifted β-diversity to that of the control group. Oral gavage of NK151 and/or NK175 reduced ELA-induced Verrucomicrobia and Actinobacteria populations at the phylum level. Furthermore, they reduced ELA-induced Bacteroidaceae, Akkemansiaceae, and AC160630_f populations and increased ELA-suppressed Lactobacillaceae and Muribaculaceae populations at the family level. These gut bacteria populations exhibited significant correlation with the tear secretion volume. In conclusion, NK151 and/or NK175 alleviated dry eye by modulating the expression ratio of pro-inflammatory cytokines such as TNF-α and anti-inflammatory cytokines such as IL-10 and gut microbiota composition.

摘要

为了了解益生菌对干眼症的疗效,我们从人类肠道细菌中筛选出了抗炎益生菌植物乳杆菌 NK151 和双歧杆菌 NK175,它们增加了 IL-10 与 TNF-α 表达的比例,并在切除单侧眶下泪腺和 1%阿托品和 0.1%苯扎氯铵溶液(ELA)诱导的干眼症小鼠中研究了它们对泪液分泌和角膜/结膜炎症的影响。ELA 暴露显著降低了小鼠的泪液分泌,通过酚红线泪液试验评估。然而,NK151 和/或 NK175 的口服灌胃显著增加了 ELA 抑制的泪液分泌、IL-10 表达和杯状细胞数量,并降低了 ELA 诱导的角膜荧光素染色评分、结膜中的 IL-1β 和 TNF-α 表达。它们还抑制了 ELA 诱导的髓过氧化物酶、IL-1β 和 TNF-α 表达。特别是,它们增加了结肠中 IL-10 与 TNF-α 表达的比例。它们的治疗将 ELA 诱导的 α-多样性降低恢复到对照组水平,并部分恢复 ELA 移位的 β-多样性恢复到对照组水平。NK151 和/或 NK175 的口服灌胃降低了 ELA 诱导的厚壁菌门和放线菌门的丰度。此外,它们降低了 ELA 诱导的拟杆菌科、阿克曼氏菌科和 AC160630_f 科的丰度,并增加了 ELA 抑制的乳杆菌科和穆里布菌科的丰度。这些肠道细菌丰度与泪液分泌量呈显著相关性。总之,NK151 和/或 NK175 通过调节促炎细胞因子如 TNF-α 和抗炎细胞因子如 IL-10 的表达比例以及肠道微生物群组成来缓解干眼症。

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