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Conservation of Cell Communication Systems in Invertebrate Host–Defence Mechanisms: Possible Role in Immunity and Disease

机译:无脊椎动物宿主防御机制中的细胞通信系统的保护:免疫和疾病中可能的作用

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摘要

Innate immunity is continuously revealing multiple and highly conserved host–defence mechanisms. Studies on mammalian immunocytes are showing different communication systems that may play a role in coordinating innate immune responses also in invertebrates. Extracellular traps (ETs) are an immune response by which cells release net-like material, including DNA, histones and proteins. ETs are thought to immobilise and kill microorganisms, but are also involved in inflammation and autoimmune disease. Immune cells are also known to communicate through extracellular vesicles secreted in the extracellular environment or exosomes, which can carry a variety of different signalling molecules. Tunnelling nanotubes (TNTs) represent a direct cell-to-cell communication over a long distance, that allow for bi- or uni-directional transfer of cellular components between cells. Their functional role in a number of physio-pathological processes, including immune responses and pathogen transfer, has been underlined. Although ETs, exosomes, and TNTs have been described in invertebrate species, their possible role in immune responses is not fully understood. In this work, available data on these communication systems are summarised, in an attempt to provide basic information for further studies on their relevance in invertebrate immunity and disease.
机译:先天免疫不断揭示多种高度保守的主导机制。哺乳动物免疫细胞的研究表明不同的通信系统,可能在互脊椎动物中协调先天免疫应答中起作用。细胞外疏水膜(ETS)是细胞释放网状材料的免疫应答,包括DNA,组蛋白和蛋白质。 ETS被认为固定和杀死微生物,但也参与炎症和自身免疫疾病。还已知免疫细胞通过细胞外环境或外泌体分泌的细胞外囊泡进行通信,其可以携带各种不同的信号分子。隧道纳米管(TNT)表示长距离的直接电池到电池通信,其允许细胞之间的细胞分量的双向或单向传递。它们在许多物理病理过程中的功能作用,包括免疫应答和病原体转移,已经下划线。尽管在无脊椎动物物种中描述了ET,外来体和TNT,但它们在免疫反应中可能的作用尚不完全理解。在这项工作中,总结了关于这些通信系统的可用数据,以便提供基本信息,以进一步研究其在无脊椎动物免疫和疾病中的相关性。

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