Institute of Protein Biochemistry, National Research Council, Via Pietro Castellino 111, 80131 Napoli, Italy.
Institute of Protein Biochemistry, National Research Council, Via Pietro Castellino 111, 80131 Napoli, Italy.
Semin Immunol. 2017 Dec;34:33-51. doi: 10.1016/j.smim.2017.08.013. Epub 2017 Aug 30.
The innate immune system provides the first line of defence against foreign microbes and particulate materials. Engineered nanoparticles can interact with the immune system in many different ways. Nanoparticles may thus elicit inflammation with engagement of neutrophils, macrophages and other effector cells; however, it is important to distinguish between acute and chronic inflammation in order to identify the potential hazards of nanoparticles for human health. Nanoparticles may also interact with and become internalised by dendritic cells, key antigen-presenting cells of the immune system, where a better understanding of these processes could pave the way for improved vaccination strategies. Nanoparticle characteristics such as size, shape and deformability also influence nanoparticle uptake by a plethora of immune cells and subsequent immune responses. Furthermore, the corona of adsorbed biomolecules on nanoparticle surfaces should not be neglected. Complement activation represents a special case of regulated and dynamic corona formation on nanoparticles with important implications in clearance and safety. Additionally, the inadvertent binding of bacterial lipopolysaccharide to nanoparticles is important to consider as this may skew the outcome and interpretation of immunotoxicological studies. Here, we discuss nanoparticle interactions with different cell types and soluble mediators belonging to the innate immune system.
先天免疫系统为抵御外来微生物和颗粒物质提供了第一道防线。工程纳米颗粒可以通过多种不同的方式与免疫系统相互作用。因此,纳米颗粒可能会通过与中性粒细胞、巨噬细胞和其他效应细胞的相互作用引发炎症;然而,为了确定纳米颗粒对人类健康的潜在危害,区分急性和慢性炎症非常重要。纳米颗粒还可以与树突状细胞相互作用并被其内化,树突状细胞是免疫系统中关键的抗原呈递细胞,对这些过程的更好理解可能为改进疫苗接种策略铺平道路。纳米颗粒的特性,如大小、形状和变形性,也会影响众多免疫细胞对纳米颗粒的摄取以及随后的免疫反应。此外,纳米颗粒表面吸附的生物分子的“冠”也不容忽视。补体激活是纳米颗粒上形成的一种特殊的受调控和动态的“冠”,对清除和安全性有重要影响。此外,还需要考虑纳米颗粒与细菌脂多糖的意外结合,因为这可能会改变免疫毒理学研究的结果和解释。在这里,我们讨论了纳米颗粒与先天免疫系统中不同细胞类型和可溶性介质的相互作用。