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Polymeric nanoparticles: Potent vectors for vaccine delivery targeting cancer and infectious diseases

机译:聚合纳米颗粒:用于针对癌症和传染病的疫苗递送的有效载体

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Nanocarriers with various compositions and biological properties have been extensively applied for in vitro/in vivo drug and gene delivery. The family of nanocarriers includes polymeric nanoparticles, lipid-based carriers (liposomes/micelles), den-drimers, carbon nanotubes, and gold nanoparticles (nanoshells/ Phanocages). Among different delivery systems, polymeric carriers have several properties such as: easy to synthesize, inexpensive, biocompatible, biodegradable, non-immunogenic, non-toxic, and water soluble. In addition, cationic polymers seem to produce more stable complexes led to a more protection during cellular trafficking than cationic lipids. Nanoparticles often show significant adjuvant effects in vaccine delivery since they may be easily taken up by antigen presenting cells (APCs). Natural polymers such as polysac-charides and synthetic polymers have demonstrated great potential to form vaccine nanoparticles. The development of new adjuvants or delivery systems for DNA and protein immunization is an expanding research field. This review describes polymeric carriers especially PLGA, chitosan, and PEI as vaccine delivery systems.
机译:具有各种组成和生物学特性的纳米载体已被广泛应用于体外/体内药物和基因的递送。纳米载体家族包括聚合物纳米颗粒,基于脂质的载体(脂质体/胶束),树枝状聚合物,碳纳米管和金纳米颗粒(纳米壳/ Phanocages)。在不同的递送系统中,聚合物载体具有多种性质,例如:易于合成,廉价,生物相容性,可生物降解,非免疫原性,无毒和水溶性。此外,与阳离子脂质相比,阳离子聚合物似乎能在细胞运输过程中产生更稳定的复合物,从而提供更多保护。纳米颗粒通常在疫苗递送中显示出显着的佐剂作用,因为它们很容易被抗原呈递细胞(APC)吸收。天然聚合物(如多糖)和合成聚合物已显示出形成疫苗纳米颗粒的巨大潜力。用于DNA和蛋白质免疫的新佐剂或递送系统的开发是一个不断扩展的研究领域。这篇综述描述了聚合物载体,特别是PLGA,壳聚糖和PEI作为疫苗输送系统。

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