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固体颗粒及其宿主反应的系统综述。

Systematic Overview of Solid Particles and Their Host Responses.

机构信息

Department of Basic Medical Sciences, Institute for Immunology, Center for Life Sciences, Beijing Key Laboratory for Immunological Research on Chronic Diseases, Tsinghua University, Beijing, China.

Peking University-Tsinghua University-National Institute of Biological Sciences Joint Graduate Program, School of Life Sciences, Peking University, Beijing, China.

出版信息

Front Immunol. 2018 May 28;9:1157. doi: 10.3389/fimmu.2018.01157. eCollection 2018.

Abstract

Crystalline/particulate substances trigger a plethora of signaling events in host cells. The most prominent consequence is the inflammatory reactions that underlie crystal arthropathies, such as gout and pseudogout. However, their impact on our health was underestimated. Recent work on the role of cholesterol crystal in the development of atherosclerosis and the harm of environmental particulates has set up new frontiers in our defense against their detrimental effects. On the other hand, in the last 100 years, crystalline/particulate substances have been used with increasing frequencies in our daily lives as a part of new industrial manufacturing and engineering. Importantly, they have become a tool in modern medicine, used as vaccine adjuvants and drug delivery vehicles. Their biological effects are also being dissected in great detail, particularly with regard to their inflammatory signaling pathways. Solid structure interaction with host cells is far from being uniform, with outcomes dependent on cell types and chemical/physical properties of the particles involved. In this review, we offer a systematic and broad outlook of this landscape and a sage analysis of the complex nature of this topic.

摘要

结晶/颗粒物质会在宿主细胞中引发大量信号事件。最显著的后果是晶体关节病(如痛风和假性痛风)所引发的炎症反应。然而,它们对我们健康的影响被低估了。最近关于胆固醇晶体在动脉粥样硬化发展中的作用以及环境颗粒物质的危害的研究为我们抵御其有害影响开辟了新的前沿。另一方面,在过去的 100 年中,结晶/颗粒物质作为新的工业制造和工程的一部分,在我们的日常生活中被越来越频繁地使用。重要的是,它们已成为现代医学的工具,被用作疫苗佐剂和药物输送载体。它们的生物学效应也在被详细剖析,特别是在其炎症信号通路方面。固体结构与宿主细胞的相互作用远非一致,其结果取决于细胞类型和所涉及颗粒的化学/物理性质。在这篇综述中,我们提供了对这一领域的系统和广泛的展望,并对这一主题的复杂性进行了明智的分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d03a/5985299/5601a10ddc48/fimmu-09-01157-g001.jpg

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