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Mimicry of High-Density Lipoprotein: Functional Peptide–Lipid Nanoparticles Based on Multivalent Peptide Constructs

机译:高密度脂蛋白的拟态:基于多价肽构建体的功能性肽脂质纳米颗粒

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摘要

We describe an approach for engineering peptide–lipid nanoparticles that function similarly to high-density lipoprotein (HDL). Branched, multivalent constructs, bearing multiple 23- or 16-amino-acid peptides, were designed, synthesized and combined with phospholipids to produce nanometer-scale discoidal HDL-like particles. A variety of biophysical techniques were employed to characterize the constructs, including size exclusion chromatography, analytical ultracentrifuge sedimentation, circular dichroism, transmission electron microscopy, and fluorescence spectroscopy. The nanoparticles functioned in vitro (human and mouse plasma) and in vivo (mice) to rapidly remodel large native HDLs into small lipid-poor HDL particles, which are key acceptors of cholesterol in reverse cholesterol transport. Fluorescent labeling studies showed that the constituents of the nanoparticles readily distributed into native HDLs, such that the peptide constructs coexisted with apolipoprotein A-I, the main structural protein in HDLs. Importantly, nanolipid particles containing multivalent peptides promoted efficient cellular cholesterol efflux and were functionally superior to those derived from monomeric peptides. The multivalent peptide-lipid nanoparticles were also remarkably stable toward enzymatic digestion in vitro and displayed long half-lives and desirable pharmacokinetic profiles in mice, providing a real practical advantage over previously studied linear or tandem helical peptides. Encouragingly, a two-week exploratory efficacy study in a widely used animal model for atherosclerosis research (LDLr-null mice) using nanoparticles constructed from a trimeric peptide demonstrated an exceptional 50% reduction in the plasma total cholesterol levels compared to the control group. Altogether, the studies reported here point to an attractive avenue for designing synthetic, HDL-like nanoparticles, with potential for treating atherosclerosis.
机译:我们描述了一种工程化肽-脂质纳米颗粒的方法,该方法的功能类似于高密度脂蛋白(HDL)。设计,合成并带有磷脂的带有多个23个或16个氨基酸肽的支链多价构建体与磷脂结合产生纳米级盘状HDL样颗粒。多种生物物理技术被用于表征构建体,包括尺寸排阻色谱,分析超速离心沉降,圆二色性,透射电子显微镜和荧光光谱。纳米颗粒在体外(人和小鼠血浆)和体内(小鼠)起作用,可将大型天然HDL快速重塑为低脂质的小型HDL颗粒,这些颗粒是胆固醇在逆向胆固醇转运中的关键受体。荧光标记研究表明,纳米颗粒的成分很容易分布到天然HDL中,这样肽构建体与载脂蛋白A-I(HDL中的主要结构蛋白)共存。重要的是,含有多价肽的纳米脂质颗粒可促进有效的细胞胆固醇外排,并且在功能上优于衍生自单体肽的纳米脂质。该多价肽-脂质纳米颗粒在体外对酶消化也非常稳定,并且在小鼠中显示出长的半衰期和所需的药代动力学特征,与先前研究的线性或串联螺旋肽相比,具有真正的实用优势。令人鼓舞的是,使用三聚体肽构建的纳米颗粒,在广泛用于动脉粥样硬化研究的动物模型(LDLr-null小鼠)中进行了为期两周的探索性研究,与对照组相比,血浆总胆固醇水平降低了50%。总而言之,此处报道的研究指向设计合成HDL样纳米颗粒的诱人途径,具有治疗动脉粥样硬化的潜力。

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