Bai Xue, Wang Jiali, Mu Qingxin, Su Gaoxing
School of Public Health, Cheeloo College of Medicine, Shandong University, Jinan, China.
School of Pharmacy, Nantong University, Nantong, China.
Front Bioeng Biotechnol. 2021 Mar 31;9:646708. doi: 10.3389/fbioe.2021.646708. eCollection 2021.
Understanding the basic interactions between engineered nanoparticles (ENPs) and biological systems is essential for evaluating ENPs' safety and developing better nanomedicine. Profound interactions between ENPs and biomolecules such as proteins are inevitable to occur when ENPs are administered or exposed to biological systems, for example, through intravenous injection, oral, or respiration. As a key component of these interactions, protein corona (PC) is immediately formed surrounding the outlayer of ENPs. PC formation is crucial because it gives ENPs a new biological identity by altering not only the physiochemical properties, but also the biobehaviors of ENPs. In the past two decades, most investigations about PC formation were carried out with systems which could not represent the true events occurring within systems. Most recently, studies of PC formation were reported, and it was found that the protein compositions and structures were very different from those formed . Herein, we provide an in-time review of the recent investigations of this PC formation of ENPs. In this review, commonly used characterization methods and compositions of PC are summarized firstly. Next, we highlight the impacts of the PC formation on absorption, blood circulation, biodistribution, metabolism, and toxicity of administered ENPs. We also introduce the applications of modulating PC formation in nanomedicine. We further discuss the challenges and future perspectives.
了解工程纳米颗粒(ENPs)与生物系统之间的基本相互作用对于评估ENPs的安全性和开发更好的纳米药物至关重要。当通过静脉注射、口服或呼吸等方式将ENPs施用于生物系统或使其暴露于生物系统时,ENPs与蛋白质等生物分子之间不可避免地会发生深刻的相互作用。作为这些相互作用的关键组成部分,蛋白质冠层(PC)会立即在ENPs的外层周围形成。PC的形成至关重要,因为它不仅通过改变ENPs的物理化学性质,还通过改变其生物行为赋予ENPs一种新的生物学特性。在过去的二十年中,大多数关于PC形成的研究都是在无法代表生物系统内真实发生事件的体系中进行的。最近,有关于体内PC形成的研究报道,发现其蛋白质组成和结构与体外形成的有很大不同。在此,我们对ENPs体内PC形成的最新研究进行及时综述。在本综述中,首先总结了体内PC常用的表征方法和组成。接下来,我们重点介绍体内PC形成对给药ENPs的吸收、血液循环、生物分布、代谢和毒性的影响。我们还介绍了在纳米医学中调节体内PC形成的应用。我们进一步讨论了挑战和未来展望。