Department of Life Sciences, University of Modena and Reggio Emilia, Modena, Italy.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2017 Nov;9(6). doi: 10.1002/wnan.1467. Epub 2017 Mar 15.
Nanoparticles (NPs) represent one of the most promising tools for drug-targeting and drug-delivery. However, a deeper understanding of the complex dynamics that happen after their in vivo administration is required. Particularly, plasma proteins tend to associate to NPs, forming a new surface named the 'protein corona' (PC). This surface is the most exposed as the 'visible side' of NPs and therefore, can have a strong impact on NP biodistribution, targeting efficacy and also toxicity. The PC consists of two poorly delimited layers, known as 'hard corona' (HC) and 'soft corona' (SC), that are affected by the complexity of the environment and the formed protein-surface equilibrium during in vivo blood circulation. The HC corona is formed by proteins strongly associated to the NPs, while the SC is an outer layer consisting of loosely bound proteins. Several studies attempted to investigate the HC, which is easier to be isolated, but yielded poor reproducibility, due to varying experimental conditions. As a consequence, full mapping of the HC for different NPs is still lacking. Moreover, the current knowledge on the SC, which may play a major role in the 'first' interaction of NPs once in vivo, is very limited, mainly due to the difficulties in preserving it after purification. Therefore, multi-disciplinary approaches leading to the obtainment of a major number of information about the PC and its properties is strongly needed to fully understand its impact and to better support a more safety and conscious application of nanotechnology in medicine. WIREs Nanomed Nanobiotechnol 2017, 9:e1467. doi: 10.1002/wnan.1467 For further resources related to this article, please visit the WIREs website.
纳米颗粒(NPs)是药物靶向和药物递送最有前途的工具之一。然而,需要更深入地了解体内给药后发生的复杂动态。特别是,血浆蛋白往往与 NPs 结合,形成一个新的表面,称为“蛋白质冠”(PC)。这个表面是最暴露的,因为它是 NPs 的“可见面”,因此,它可以对 NP 的生物分布、靶向效果和毒性产生强烈的影响。PC 由两个定义不明确的层组成,称为“硬冠”(HC)和“软冠”(SC),它们受到环境复杂性和体内血液循环过程中形成的蛋白质-表面平衡的影响。HC 冠由与 NPs 强烈结合的蛋白质组成,而 SC 是由松散结合的蛋白质组成的外层。有几项研究试图研究 HC,它更容易被分离,但由于实验条件的变化,重复性较差。因此,对于不同的 NPs,完整的 HC 图谱仍然缺乏。此外,对于 SC 的现有知识,它可能在 NPs 体内首次“相互作用”中发挥主要作用,但由于在纯化后很难保留它,因此知之甚少。因此,需要多学科的方法来获得关于 PC 及其特性的大量信息,以充分了解其影响,并更好地支持纳米技术在医学中的更安全和有意识的应用。WIREs Nanomed Nanobiotechnol 2017, 9:e1467. doi: 10.1002/wnan.1467 如需获取本文相关资源,请访问 WIREs 网站。