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Dual Interactions of Amphiphilic Gelatin Copolymer and Nanocurcumin Improving the Delivery Efficiency of the Nanogels

机译:两亲明胶共聚物和纳米姜黄素的双重相互作用提高了纳米凝胶的传递效率。

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摘要

Herein, a new process to manufacture multicore micelles nanoparticles reinforced with co-assembly via hydrophobic interaction and electrostatic interaction under the help of ultrasonication was developed. The precise co-assembly between negative/hydrophobic drug and positive charged amphiphilic copolymer based pluronic platform allows the formation of complex micelles structures as the multicore motif with predefined functions. In this study, curcumin was selected as a drug model while positively charged copolymer was based on a pluronic-conjugated gelatin with different hydrophobicity length of Pluronic F87 and Pluronic F127. Under impact of dual hydrophobic and electrostatic interactions, the nCur-encapsulated core–shell micelles formed ranging from 40 nm to 70 nm and 40–100 nm by transmission electron microscopy (TEM) and Dynamic Light Scattering (DLS), respectively. It is found that the structures emerged depended on the relative lengths of the hydrophobic blocks in pluronic. Regarding g2(τ) behavior from DLS measurement, the nanogels showed a high stability in spherical form. Surprisingly, the release profiles showed a sustainable behavior of Cur from this system for drug delivery approaches. In vitro study exhibited that nCur-encapsulated complex micelles increased inhibitory activity against cancer cells growth with IC50 is 4.02 ± 0.11 mg/L (10.92 ± 0.3 µM) which is higher than of free curcumin at 9.40 ± 0.17 mg/L (25.54 ± 0.18 µM). The results obtained can provide the new method to generate the hierarchical assembly of copolymers with incorporated loading with the same property.
机译:在此,开发了一种在超声波的帮助下通过疏水作用和静电作用共组装增强的多核胶束纳米颗粒的新工艺。负/疏水性药物与带正电荷的两亲共聚物的普卢尼克平台之间的精确共组装可形成具有预定义功能的复杂胶束结构,作为多核基序。在这项研究中,姜黄素被选为药物模型,而带正电荷的共聚物则是基于Pluronic F87和Pluronic F127疏水长度不同的普鲁朗共轭明胶。在疏水和静电双重相互作用的影响下,通过透射电子显微镜(TEM)和动态光散射(DLS)分别形成了40 nm至70 nm和40-100 nm的nCur包封的核-壳胶束。已经发现结构的出现取决于普卢尼克中疏水性嵌段的相对长度。关于通过DLS测量的g 2(τ)行为,纳米凝胶以球形形式显示出高稳定性。出人意料的是,释放曲线显示了该系统对于药物递送方法的Cur的可持续行为。体外研究表明,nCur包裹的复合胶束对癌细胞生长的抑制活性提高,IC50为4.02±0.11 mg / L(10.92±0.3 µM),高于游离姜黄素的9.40±0.17 mg / L(25.54±0.18) µM)。获得的结果可以提供一种新的方法来生成具有相同性质的掺入负载的共聚物的分层组装。

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