Center for Prevention of Obesity, Cardiovascular Disease and Diabetes, Children's Hospital Oakland Research Institute, 5700 Martin Luther King Jr, Way, Oakland CA 94609, USA.
J Nanobiotechnology. 2010 Dec 1;8:28. doi: 10.1186/1477-3155-8-28.
High-density lipoprotein (HDL) plays a fundamental role in the Reverse Cholesterol Transport pathway. Prior to maturation, nascent HDL exist as disk-shaped phospholipid bilayers whose perimeter is stabilized by amphipathic apolipoproteins. Methods have been developed to generate reconstituted (rHDL) in vitro and these particles have been used in a variety of novel ways. To differentiate between physiological HDL particles and non-natural rHDL that have been engineered to possess additional components/functions, the term nanodisk (ND) is used. In this review, various applications of ND technology are described, such as their use as miniature membranes for solubilization and characterization of integral membrane proteins in a native like conformation. In other work, ND harboring hydrophobic biomolecules/drugs have been generated and used as transport/delivery vehicles. In vitro and in vivo studies show that drug loaded ND are stable and possess potent biological activity. A third application of ND is their use as a platform for incorporation of amphiphilic chelators of contrast agents, such as gadolinium, used in magnetic resonance imaging. Thus, it is demonstrated that the basic building block of plasma HDL can be repurposed for alternate functions.
高密度脂蛋白 (HDL) 在胆固醇逆转运途径中发挥着重要作用。在成熟之前,新生的 HDL 以盘状磷脂双层的形式存在,其周长由两亲性载脂蛋白稳定。已经开发出了在体外生成重组 (rHDL) 的方法,并且这些颗粒已经以各种新颖的方式被使用。为了区分生理 HDL 颗粒和经过工程设计以具有额外成分/功能的非天然 rHDL,使用了纳米盘 (ND) 这一术语。在这篇综述中,描述了 ND 技术的各种应用,例如将其用作微型膜,用于溶解和表征具有天然构象的整合膜蛋白。在其他工作中,已经生成了含有疏水分子/药物的 ND,并将其用作运输/递送载体。体外和体内研究表明,载药 ND 稳定且具有强大的生物活性。ND 的第三个应用是将其用作亲脂性螯合剂(例如磁共振成像中使用的钆)的载体,以整合对比剂。因此,证明了血浆 HDL 的基本构建块可以被重新用于其他功能。