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Hollow Core-Porous Shell Structure Poly(acrylic acid) Nanogels with a Superhigh Capacity of Drug Loading

机译:具有超高载药量的空心核-多孔壳结构聚(丙烯酸)纳米凝胶

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Poly(acrylic acid) (PAA) nanogels with a hollow core-porous shell structure were prepared by rhe direct polymerization of an acrylic acid monomer in the presence oF hydroxypropylcellulose (HPC) and a cross-linking agent. N,N-methylenebisacrylamide, followed by removal oF HPC from the generated HPC-PAA nanoparticles in a basic, environment. The properties oF PAA nanogel were characterized by dynamic light scattering. FT-IR. transmission electron microscopy, and atomic Force microscopy. It is found that the nanogels have a hollow core-porous shell structure Protein, bovine serum albumin (BSA), and an antitumor agent, doxorubicin hydrochloride, were used as model drugs to investigate their loading abilities as versatile drug-delivery vehicles. The nanogel exhibits surprisingly high loading ability to both protein and small molecular drugs. For example, the maximum BSA loading capacity of PAA nanogel can reach as high as 800% (i.e., 1 mg of nanogel can load about 8.0 mg of BSA). This high loading capacity may be related with the hollow core-porous shell structure of PAA nanogels. PAA nanogels have also shown sustained drug release properties and can cross biological barriers to deliver loaded cargo inside cells. Considering the high stability of the materials, simple and mild preparation procedure, high loading capacity, sustained-release properry, and ability to protect biological agents from denaturation, PAA nanogels should be promising drug-delivery carriers for drug-delivery systems.
机译:通过在丙烯酸羟丙纤维素(HPC)和交联剂存在下直接丙烯酸单体聚合制备具有空心核-孔壳结构的聚(丙烯酸)(PAA)纳米凝胶。 N,N-亚甲基双丙烯酰胺,然后在碱性环境中从生成的HPC-PAA纳米颗粒中去除oF HPC。 PAA纳米凝胶的特性通过动态光散射进行表征。红外光谱透射电子显微镜和原子力显微镜。发现纳米凝胶具有空心的核-孔壳结构蛋白,牛血清白蛋白(BSA)和抗肿瘤剂盐酸阿霉素,被用作模型药物,以研究其作为通用药物递送载体的负载能力。纳米凝胶对蛋白质和小分子药物均显示出惊人的高负载能力。例如,PAA纳米凝胶的最大BSA负载量可高达800%(即1 mg纳米凝胶可负载约8.0 mg BSA)。这种高负载能力可能与PAA纳米凝胶的中空核-壳结构有关。 PAA纳米凝胶还显示出持续的药物释放特性,并且可以穿越生物屏障将负载的货物递送到细胞内。考虑到材料的高稳定性,简单,温和的制备过程,高负载能力,缓释特性以及保护生物剂免受变性的能力,PAA纳米凝胶应成为有望用于药物输送系统的药物输送载体。

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