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首页> 外文期刊>Science Advances >Protein-avoidant ionic liquid (PAIL)–coated nanoparticles to increase bloodstream circulation and drive biodistribution
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Protein-avoidant ionic liquid (PAIL)–coated nanoparticles to increase bloodstream circulation and drive biodistribution

机译:蛋白质 - 避免离子液体(桶)涂覆的纳米颗粒增加血液循环和驱动生物分布

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摘要

The rapid clearance of intravenously administered nanoparticles (NPs) from the bloodstream is a major unsolved problem in nanomedicine. Here, we describe the first use of biocompatible protein-avoidant ionic liquids (PAILs) as NP surface modifiers to reduce opsonization. An ionic liquid choline hexenoate, selected for its aversion to serum proteins, was used to stably coat the surface of poly(lactic- co -glycolic acid) (PLGA) NPs. Compared with bare PLGA and poly(ethylene glycol)–coated PLGA particles, the PAIL-PLGA NPs showed resistance to protein adsorption in vitro and greater retention in blood of mice at 24 hours. Choline hexenoate redirected biodistribution of NPs, with preferential accumulation in the lungs with 50% of the administered dose accumulating in the lungs and 5% in the liver. Lung accumulation was attributed to spontaneous attachment of the PAIL-coated NPs on red blood cells in vivo. Overall, ionic liquids are a promising class of materials for NP modification for biomedical applications.
机译:来自血液流入的静脉内施用纳米颗粒(NPS)的快速间隙是纳米胺的主要未解决问题。在这里,我们描述了生物相容性蛋白质 - 避免离子液体(PAIL)作为NP表面改性剂的首次使用,以降低Opson化。选择用于其厌恶血清蛋白的离子液胆碱己酸己酸己酸己酸己酸酯稳定地涂覆聚(乳酸乙醇酸)(PLGGA)NPS的表面。与裸PLGA和聚(乙二醇) - 涂覆的PLGA颗粒相比,PAIL-PLGA NPS在24小时内对蛋白质吸附的抗性和更高的小鼠血液中的耐受性。胆碱己酸酯重定向的NPS生物分布,肺部优先积累,50%的施用剂量在肺中累积,肝脏中的<5%。肺累积归因于桶涂覆的NPS在体内红细胞上的自发附着。总体而言,离子液体是对生物医学应用的NP改性的有前途的材料。

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