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Fabrication of Elastin-Like Polypeptide Nanoparticles for Drug Delivery by Electrospraying

机译:通过电喷雾制备类似弹力蛋白的多肽纳米颗粒。

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The development of environmentally responsive drug carriers requires new methods for assembling stimuli-responsive nanoparticulates. This communication describes a novel application of electrospray to construct bioresponsive peptide-based particulates, which can encapsulate drugs. These particles are composed from genetically engineered elastin-like polypeptides (ELPs), a biodegradable, biocompatible, and bioresponsive polymer. To generate nanoparticles (300—400 nm in diameter), ELPs and drugs are codissolved in organic solvent, accelerated across a voltage gradient, dried by evaporation during transit, and collected from a target surface. These findings indicate that particle diameter, polydispersity, and morphology are strong functions of the solvent concentration, spraying voltage, and polymer molecular weight. Surprisingly, the loading of drug at 20 w/w% did not influence particle morphology; furthermore, drug release from these particles correlated with the pH-dependent solubility of the parent ELPs. These studies suggest that electrospray is an efficient and flexible method for generating stimuli-responsive drug particles.
机译:对环境敏感的药物载体的开发需要用于组装对刺激敏感的纳米颗粒的新方法。该交流描述了电喷雾在构建可包裹药物的基于生物反应性肽的微粒方面的新应用。这些粒子由基因工程化的弹性蛋白样多肽(ELP)组成,后者是一种可生物降解,生物相容性和生物响应性的聚合物。为了生成纳米粒子(直径为300-400 nm),将ELP和药物共溶解在有机溶剂中,在电压梯度上加速,在运输过程中通过蒸发干燥,然后从目标表面收集。这些发现表明,粒径,多分散性和形态是溶剂浓度,喷涂电压和聚合物分子量的强函数。出人意料的是,以20 w / w%的载药量不会影响颗粒形态。此外,药物从这些颗粒中的释放与亲本ELP的pH依赖性溶解度有关。这些研究表明,电喷雾是一种产生刺激反应性药物颗粒的有效而灵活的方法。

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