Connell Samuel, Kawashima Motoko, Nakamura Shigeru, Imada Toshihiro, Yamamoto Hiromitsu, Tsubota Kazuo, Fukuda Shinji
Department of Ophthalmology, Keio University School of Medicine, Shinjuku-ku, Tokyo 160-8582, Japan.
Institute for Advanced Biosciences, Keio University, Tsuruoka 997-0052, Yamagata, Japan.
Int J Mol Sci. 2021 Nov 17;22(22):12384. doi: 10.3390/ijms222212384.
Lactoferrin is a glycoprotein found at high concentrations within exocrine secretions, including tears. Low levels of lactoferrin have been implicated in the loss of tear secretion and ageing. Furthermore, lactoferrin possesses a range of functionalities, including anti-inflammatory properties and the ability to modulate the gut microbiota. Expanding evidence demonstrates a crucial role of the gut microbiota in immune regulation and development. The specific composition of bacterial species of the gut has a profound influence on local and systemic inflammation, leading to a protective capacity against a number of inflammatory diseases, potentially by the induction of regulatory immune cells. In this study, we demonstrated that oral administration of lactoferrin maintains tear secretion in a restraint and desiccating stress induced mouse model of dry eye disease. Furthermore, we revealed that lactoferrin induces the reduction of inflammatory cytokines, modulates gut microbiota, and induces short-chain fatty acid production. Whereas, the antibiotic vancomycin abrogates the effects of lactoferrin on dry eye disease and significantly reduces short-chain fatty acid concentrations. Therefore, this protective effect of LF against a mice model of DED may be explained by our observations of an altered gut microbiota and an enhanced production of immunomodulatory short-chain fatty acids.
乳铁蛋白是一种糖蛋白,在外分泌分泌物(包括眼泪)中含量很高。低水平的乳铁蛋白与泪液分泌减少和衰老有关。此外,乳铁蛋白具有一系列功能,包括抗炎特性和调节肠道微生物群的能力。越来越多的证据表明肠道微生物群在免疫调节和发育中起着关键作用。肠道细菌种类的特定组成对局部和全身炎症有深远影响,可能通过诱导调节性免疫细胞,从而对多种炎症性疾病具有保护能力。在本研究中,我们证明口服乳铁蛋白可在束缚和干燥应激诱导的干眼病小鼠模型中维持泪液分泌。此外,我们发现乳铁蛋白可诱导炎性细胞因子减少、调节肠道微生物群并诱导短链脂肪酸生成。然而,抗生素万古霉素可消除乳铁蛋白对干眼病的影响,并显著降低短链脂肪酸浓度。因此,乳铁蛋白对干眼病小鼠模型的这种保护作用可能可以通过我们观察到的肠道微生物群改变和免疫调节性短链脂肪酸生成增加来解释。