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Templated high density lipoprotein nanoparticles as potential therapies and for molecular delivery

机译:模板化的高密度脂蛋白纳米颗粒可作为潜在疗法和分子递送

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摘要

High density lipoproteins (HDLs) are dynamic natural nanoparticles best known for their role in cholesterol transport and the inverse correlation that exists between blood HDL levels and the risk of developing coronary heart disease. In addition, enhanced HDL-cholesterol uptake has been demonstrated in several human cancers. As such, the use of HDL as a therapeutic and as a vehicle for systemic delivery of drugs and as imaging agents is increasingly important. HDLs exist on a continuum from the secreted HDL-scaffolding protein, apolipoprotein A-1 (Apo A1), to complex, spherical "mature" HDLs. Aspects of HDL particles including their size, shape, and surface chemical composition are being recognized as critical to their diverse biological functions. Here we review HDL biology; strategies for synthesizing HDLs; data supporting the clinical use and benefit of directly administered HDL; a rationale for developing synthetic methods for spherical, mature HDLs; and, the potential to employ HDLs as therapies, imaging agents, and drug delivery vehicles. Importantly, methods that utilize nanoparticle templates to control synthetic HDL size, shape, and surface chemistry are highlighted.
机译:高密度脂蛋白(HDL)是动态天然纳米粒子,以其在胆固醇转运中的作用以及血液中HDL水平与患冠心病风险之间存在反相关关系而闻名。另外,已经在几种人类癌症中证明了增强的HDL-胆固醇摄取。这样,将HDL用作治疗剂和用于全身递送药物以及用作成像剂的载体变得越来越重要。从分泌的HDL支架蛋白载脂蛋白A-1(Apo A1)到复杂的球形“成熟” HDL,HDL连续存在。 HDL颗粒的各个方面,包括其大小,形状和表面化学组成,被认为对其多种生物学功能至关重要。在这里,我们回顾一下HDL生物学;合成HDL的策略;支持直接施用HDL的临床使用和获益的数据;开发球形,成熟的HDL的合成方法的原理;以及将HDL用作疗法,显像剂和药物输送工具的潜力。重要的是,强调了利用纳米颗粒模板控制合成HDL大小,形状和表面化学的方法。

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