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Signed Sealed Delivered: Microenvironmental Modulation of Extracellular Vesicle-Dependent Immunoregulation in the Lung

机译:签名盖章交付:肺中细胞外囊泡依赖性免疫调节的微环境调节

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摘要

Unconventional secretion and subsequent uptake of molecular cargo via extracellular vesicles (EVs) is an important mechanism by which cells can exert paracrine effects. While this phenomenon has been widely characterized in the context of their ability to promote inflammation, less is known about the ability of EVs to transfer immunosuppressive cargo. Maintenance of normal physiology in the lung requires suppression of potentially damaging inflammatory responses to the myriad of insults to which it is continually exposed. Recently, our laboratory has reported the ability of alveolar macrophages (AMs) to secrete suppressors of cytokine signaling (SOCS) proteins within microvesicles (MVs) and exosomes (Exos). Uptake of these EVs by alveolar epithelial cells (AECs) resulted in inhibition of pro-inflammatory STAT activation in response to cytokines. Moreover, AM packaging of SOCS within EVs could be rapidly tuned in response to exogenous or AEC-derived substances. In this article we will highlight gaps in knowledge regarding microenvironmental modulation of cargo packaging and utilization as well as EV secretion and uptake. Advances in these areas are critical for improving understanding of intercellular communication in the immune system and for therapeutic application of artificial vesicles aimed at treatment of diseases characterized by dysregulated inflammation.
机译:非常规分泌和随后通过细胞外小泡(EV)吸收分子货物是细胞发挥旁分泌作用的重要机制。虽然这种现象已在其促进炎症的能力范围内得到广泛表征,但对电动汽车转移免疫抑制货物的能力知之甚少。维持肺部正常生理状态需要抑制对不断暴露于无数次伤害的潜在伤害性炎症反应。最近,我们的实验室报告了肺泡巨噬细胞(AMs)分泌微泡(MVs)和外泌体(Exos)内细胞因子信号传导(SOCS)蛋白抑制剂的能力。肺泡上皮细胞(AEC)对这些EV的吸收导致抑制对细胞因子的促炎性STAT激活。此外,电动汽车内SOCS的AM包装可以根据外源或AEC衍生物质快速调整。在本文中,我们将重点介绍有关货物包装和利用的微环境调节以及电动汽车的分泌和吸收方面的知识空白。这些领域的进展对于增进对免疫系统中细胞间通讯的理解以及对旨在治疗以炎症失调为特征的疾病的人造囊泡的治疗性应用至关重要。

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