Department of Clinical Immunology and Allergology, University Hospital Hradec Kralove and Faculty of Medicine in Hradec Kralove, Charles University, 50005 Hradec Kralove, Czech Republic.
Department of Preventive Medicine, Faculty of Medicine in Hradec Kralove, Charles University, 50003 Hradec Kralove, Czech Republic.
Int J Mol Sci. 2022 Aug 10;23(16):8889. doi: 10.3390/ijms23168889.
In the field of science, technology and medicine, carbon-based nanomaterials and nanoparticles (CNMs) are becoming attractive nanomaterials that are increasingly used. However, it is important to acknowledge the risk of nanotoxicity that comes with the widespread use of CNMs. CNMs can enter the body via inhalation, ingestion, intravenously or by any other route, spread through the bloodstream and penetrate tissues where (in both compartments) they interact with components of the immune system. Like invading pathogens, CNMs can be recognized by large numbers of receptors that are present on the surface of innate immune cells, notably monocytes and macrophages. Depending on the physicochemical properties of CNMs, i.e., shape, size, or adsorbed contamination, phagocytes try to engulf and process CNMs, which might induce pro/anti-inflammatory response or lead to modulation and disruption of basic immune activity. This review focuses on existing data on the immunotoxic potential of CNMs, particularly in professional phagocytes, as they play a central role in processing and eliminating foreign particles. The results of immunotoxic studies are also described in the context of the entry routes, impacts of contamination and means of possible elimination. Mechanisms of proinflammatory effect depending on endocytosis and intracellular distribution of CNMs are highlighted as well.
在科学、技术和医学领域,碳基纳米材料和纳米颗粒(CNMs)作为一种极具吸引力的纳米材料,其应用日益广泛。然而,我们必须认识到 CNMs 广泛应用所带来的纳米毒性风险。CNMs 可通过吸入、摄入、静脉注射或其他途径进入体内,在血液中扩散,并穿透组织,在组织中(无论是在细胞外液还是细胞内)与免疫系统的成分相互作用。与入侵的病原体一样,CNMs 可以被先天免疫细胞表面大量存在的受体识别,特别是单核细胞和巨噬细胞。根据 CNMs 的物理化学特性,即形状、大小或吸附的污染物,吞噬细胞试图吞噬和处理 CNMs,这可能会引发促炎/抗炎反应,或导致基本免疫活性的调节和破坏。本综述重点介绍了 CNMs 的免疫毒性潜力的现有数据,特别是在专业吞噬细胞中,因为它们在处理和清除外来颗粒方面发挥着核心作用。还根据进入途径、污染的影响以及可能的消除手段,描述了免疫毒性研究的结果。根据 CNMs 的内吞作用和细胞内分布,强调了促炎作用的机制。