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A Simple Method to Extract Whole Apolipoproteins for the Preparation of Discoidal Recombined High Density Lipoproteins as Bionic Nanocarriers for Drug Delivery

机译:一种简单的提取完整载脂蛋白的方法,以制备盘状重组高密度脂蛋白作为仿生纳米载体进行药物递送

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Purpose: To develop a simple method to extract the whole apolipoproteins (apo) including apoA-I in native high density lipoproteins (HDLs) and prepare discoidal Tanshinone IIA-loaded reconstituted HDL (TA-rHDLs) as a dual functional drug delivery system with plaque-site target and therapeutic promises in atherosclerotic lesions. Methods: A method based on isoelectric precipitation coupled with organic solvent precipitation was developed to isolate the whole apolipoproteins (apos). TA-rHDLs were prepared by incubating the resultant apos with liposomes and the incubation conditions were optimized using fluorescence quenching experiment. TA-rHDLs were characterized in terms of size, zeta potential, morphology, interaction between lipid and apos, safety, and bionic function. Results: The extraction results showed that the yield of the HDL apos was 82.4%, with 59% being apoA-I type, similar ratio of apoA-I in the native apos. TA-rHDL prepared were disc-like with an average diameter of 157.6 ± 4.8 nm, zeta potential of -20.90 ± 0.15 mV, and entrapment efficiency of (90.13 ± 1.4) %. The interaction between the lipids and apos was electrostatic and hydrophobic force and was associated with amino acid sequence. Haemolysis and cytotoxicity assays showed good biocompatibility of TA-rHDL. Sterol efflux assay from macrophages mediated by TA-rHDLs and structure remodeling behavior from discs to spheres proved that TA-rHDL could resemble the biological activity of native nascent HDL irrespective of the size. Conclusions: The simple approach to isolate apos may provide a convenient and economical resource to support the development of rHDL as a potential targeting nanocarrier for lipophilic cardiovascular drugs. This article is open to POST-PUBLICATION REVIEW . Registered readers (see “For Readers”) may comment by clicking on on the issue’s contents page.
机译:目的:开发一种简单的方法来提取天然高密度脂蛋白(HDL)中包括apoA-I的整个载脂蛋白(apo),并制备盘状丹参酮IIA负载的重组HDL(TA-rHDLs)作为具有斑块的双功能药物递送系统靶标和动脉粥样硬化病变的治疗前景。方法:开发了一种基于等电沉淀结合有机溶剂沉淀的方法,以分离出整个载脂蛋白。通过将所得的脂质体与脂质体一起温育来制备TA-rHDL,并使用荧光猝灭实验来优化温育条件。 TA-rHDLs的大小,ζ电势,形态,脂质与脂蛋白之间的相互作用,安全性和仿生功能进行了表征。结果:提取结果表明,HDL’s的产率为82.4%,其中apoA-I型为59%,与天然apoA-I的比率相似。制备的TA-rHDL呈盘状,平均直径为157.6±4.8nm,ζ电势为-20.90±0.15mV,包封效率为(90.13±1.4)%。脂质与脂蛋白之间的相互作用是静电力和疏水力,并且与氨基酸序列有关。溶血和细胞毒性试验显示TA-rHDL具有良好的生物相容性。 TA-rHDL介导的巨噬细胞的甾醇外排测定以及从椎间盘到球体的结构重塑行为证明,无论大小,TA-rHDL都可以类似于天然新生HDL的生物活性。结论:分离’的简单方法可能提供方便和经济的资源,以支持rHDL的发展,作为亲脂性心血管药物的潜在靶向纳米载体。本文对POST-PUBLICATION REVIEW开放。已注册的读者(请参阅“针对读者”)可以通过单击问题的内容页面来发表评论。

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