Engineered metal based nanoparticles and innate immunity.

Q2 Medicine
Clinical and Molecular Allergy Pub Date : 2015-07-15 eCollection Date: 2015-01-01 DOI:10.1186/s12948-015-0020-1
Claudia Petrarca, Emanuela Clemente, Valentina Amato, Paola Pedata, Enrico Sabbioni, Giovanni Bernardini, Ivo Iavicoli, Sara Cortese, Qiao Niu, Takemi Otsuki, Roberto Paganelli, Mario Di Gioacchino
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引用次数: 78

Abstract

Almost all people in developed countries are exposed to metal nanoparticles (MeNPs) that are used in a large number of applications including medical (for diagnostic and therapeutic purposes). Once inside the body, absorbed by inhalation, contact, ingestion and injection, MeNPs can translocate to tissues and, as any foreign substance, are likely to encounter the innate immunity system that represent a non-specific first line of defense against potential threats to the host. In this review, we will discuss the possible effects of MeNPs on various components of the innate immunity (both specific cells and barriers). Most important is that there are no reports of immune diseases induced by MeNPs exposure: we are operating in a safe area. However, in vitro assays show that MeNPs have some effects on innate immunity, the main being toxicity (both cyto- and genotoxicity) and interference with the activity of various cells through modification of membrane receptors, gene expression and cytokine production. Such effects can have both negative and positive relevant impacts on humans. On the one hand, people exposed to high levels of MeNPs, as workers of industries producing or applying MeNPs, should be monitored for possible health effects. On the other hand, understanding the modality of the effects on immune responses is essential to develop medical applications for MeNPs. Indeed, those MeNPs that are able to stimulate immune cells could be used to develop of new vaccines, promote immunity against tumors and suppress autoimmunity.

工程金属纳米颗粒和先天免疫。
发达国家几乎所有人都接触到金属纳米粒子(MeNPs),这些纳米粒子被用于包括医疗(诊断和治疗目的)在内的大量应用。一旦进入体内,通过吸入、接触、摄入和注射被吸收,MeNPs就会转运到组织中,并且像任何外来物质一样,可能会遇到先天免疫系统,这是抵御宿主潜在威胁的非特异性第一道防线。在这篇综述中,我们将讨论MeNPs对先天免疫的各种成分(特异性细胞和屏障)的可能影响。最重要的是,没有因接触MeNPs而引起免疫疾病的报告:我们在一个安全的地区开展工作。然而,体外实验表明,MeNPs对先天免疫有一定的影响,主要是毒性(包括细胞毒性和遗传毒性)以及通过修饰膜受体、基因表达和细胞因子产生干扰各种细胞的活性。这种影响对人类既有消极影响,也有积极影响。一方面,接触高水平MeNPs的人,作为生产或应用MeNPs的行业的工人,应监测可能对健康造成的影响。另一方面,了解对免疫反应的影响方式对于开发menp的医学应用至关重要。事实上,那些能够刺激免疫细胞的MeNPs可用于开发新疫苗,促进对肿瘤的免疫和抑制自身免疫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Clinical and Molecular Allergy
Clinical and Molecular Allergy Medicine-Immunology and Allergy
CiteScore
8.20
自引率
0.00%
发文量
11
审稿时长
13 weeks
期刊介绍: Clinical and Molecular Allergy is an open access, peer-reviewed, online journal that publishes research on human allergic and immunodeficient disease (immune deficiency not related to HIV infection/AIDS). The scope of the journal encompasses all aspects of the clinical, genetic, molecular and inflammatory aspects of allergic-respiratory (Type 1 hypersensitivity) and non-AIDS immunodeficiency disorders. However, studies of allergic/hypersensitive aspects of HIV infection/AIDS or drug desensitization protocols in AIDS are acceptable. At the basic science level, this includes original work and reviews on the genetic and molecular mechanisms underlying the inflammatory response.
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