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Lactoferrin, a key molecule in immune and inflammatory processes

机译:乳铁蛋白,免疫和炎症过程中的关键分子

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摘要

Lactoferrin (Lf) belongs to the family of antimicrobial molecules that constitute the principal defense line of nonvertebrate organisms. In human immunity, their roles are considerably extended, and actually exceed mere direct antimicrobial properties. As a result, Lf is involved in both innate and adaptive immunities where its modulating effects not only help the host fight against microbes but also protect the host against harmful effects of inflammation. Such beneficial effects have been noticed in studies using dietary Lf, without the experimenters always explaining the exact modes of action of Lf. Effects on mucosal and systemic immunities are indeed often observed, which make the roles of Lf tricky to decipher. It is now known that the immunomodulatory properties of Lf are due to its ability to interact with numerous cellular and molecular targets. At the cellular level, Lf modulates the migration, maturation, and functions of immune cells. At the molecular level, in addition to iron binding, interactions of Lf with a plethora of compounds, either soluble or cell-surface molecules, account for its modulatory properties. This paper reviews our current understanding of the mechanisms that explain the regulatory properties of Lf in immune and inflammatory processes.
机译:乳铁蛋白(Lf)属于构成非脊椎动物生物体主要防御系的抗菌分子家族。在人类免疫中,它们的作用大大扩展,实际上超过了直接的抗菌性能。结果,Lf参与先天性和适应性免疫,其调节作用不仅帮助宿主对抗微生物,还保护宿主免受炎症的有害影响。在使用饮食性Lf的研究中已经注意到了这种有益效果,而实验者始终没有解释Lf的确切作用方式。实际上经常观察到对粘膜和全身免疫的作用,这使得Lf的作用难以理解。现在已知Lf的免疫调节特性是由于其与众多细胞和分子靶标相互作用的能力。在细胞水平上,Lf调节免疫细胞的迁移,成熟和功能。在分子水平上,除铁结合外,Lf与大量化合物(可溶或细胞表面分子)的相互作用是其调节特性的原因。本文回顾了我们目前对解释Lf在免疫和炎症过程中调控特性的机制的理解。

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