Department of Food and Nutrition, Kyung Hee University, 26, Kyungheedae-ro, Dongdaemun-gu, Seoul 02447, Korea.
Food Funct. 2021 Mar 21;12(6):2489-2497. doi: 10.1039/d0fo02984j. Epub 2021 Mar 3.
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.
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。