Agnihotri Tejas Girish, Alexander Amit, Agrawal Mukta, Dubey Sunil Kumar, Jain Aakanchha
Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER)-Ahmedabad, Palaj, Gandhinagar 382355, Gujarat, India.
Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER)-Guwahati, Sila village, Nizsundarighopa, Changsari, Assam 781101, India.
J Control Release. 2023 Feb;354:794-809. doi: 10.1016/j.jconrel.2023.01.063. Epub 2023 Jan 28.
Understanding and establishing a link between the physicochemical characteristics of nanoparticles (NPs) and their biological interactions poses to be a great challenge in the field of nanotherapeutics. Recent analytical advancements concerning bio-nanointerfaces have accelerated the quest to comprehend the fate of nanocarrier systems in vivo. Scientists have discovered that protein corona, an adsorbed layer of biomolecules on the surface of NPs takes a leading part in interacting with cells and in the cellular uptake process, thereby determining the in vivo behaviour of NPs. Another useful method to assess the in vivo fate of NPs is by performing dissolution testing. This forms the basis for in vitro in vivo correlation (IVIVC), relating in vitro dissolution of NPs and their in vivo properties. Scientists are continuously directing their efforts towards establishing IVIVC for different nanocarrier systems while concurrently gaining insights into protein corona. This review primarily summarizes the importance of protein corona and its interaction with nanoparticles. It also gives an insight into the factors affecting the interaction and various in vitro dissolution media used for varied nanocarrier systems. The article concludes with a discussion of the limitations of IVIVC modelling and its position from a regulatory perspective.
理解并建立纳米颗粒(NPs)的物理化学特性与其生物相互作用之间的联系,在纳米治疗领域是一项巨大的挑战。近期关于生物-纳米界面的分析进展加速了人们对纳米载体系统在体内命运的探索。科学家们发现,蛋白质冠层,即NPs表面吸附的一层生物分子,在与细胞相互作用和细胞摄取过程中起主导作用,从而决定了NPs的体内行为。另一种评估NPs体内命运的有用方法是进行溶出度测试。这构成了体外-体内相关性(IVIVC)的基础,将NPs的体外溶出与其体内性质联系起来。科学家们不断致力于为不同的纳米载体系统建立IVIVC,同时深入了解蛋白质冠层。本综述主要总结了蛋白质冠层的重要性及其与纳米颗粒的相互作用。它还深入探讨了影响相互作用的因素以及用于不同纳米载体系统的各种体外溶出介质。文章最后讨论了IVIVC建模的局限性及其在监管方面的地位。