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A Structure?Property Relationship Study of the Well-Defined Telodendrimers to Improve Hemocompatibility of Nanocarriers for Anticancer Drug Delivery

机译:定义完善的替罗登定可提高纳米载体抗癌药物的血液相容性的结构-性能关系研究

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A series of telodendrimer (a linear polyethyelene glycol-block-dendritic oligo-cholic acid) have been synthesized via a bottom-up approach to optimize the hemocompatibility of the nanocarrier. Numbers of hydrophilic glycerol groups were introduced onto the polar surface of cholic acid to reduce the plasma membrane lytic activity of telodendrimers. An interesting result was observed: only an optimum number of glycerol introduced could reduce the hemolytic properties of the nanocarrier; on the contrary, more glycerols or the amino-glycerol substitution onto cholic acid significantly increased the hemolytic properties of the nanocarriers. To further elucidate the structure?property relationship, the molecular dynamic approach was used to simulate the conformation of the subunits of telodendrimers with different glycerol substitution, and the binding energies and the polar surface areas of the hairpin conformations were calculated to explain the membrane activities of nanocarriers. In addition, these telodendrimer subunits were synthesized and their membrane activities were tested directly, which validated the computational prediction and correlated with the observed hemolytic activity of nanocarriers. The glycerol substitution sustained the facial amphiphilicity of cholic acid, maintaining the superior drug loading capacity (paclitaxel and doxorubicin), stability, cell uptake, and anticancer efficacy of payloads. The in vivo optical imaging study indicated that the optimized nanocarriers can specifically deliver drug molecules to the tumor sites more efficiently than free drug administration, which is essential for the enhanced cancer treatment.
机译:通过自下而上的方法已合成了一系列telodendrimer(一种线性聚乙二醇嵌段的树突状低聚胆酸),以优化纳米载体的血液相容性。将许多亲水性甘油基团引入胆酸的极性表面上,以降低telodendrimers的质膜溶解活性。观察到一个有趣的结果:仅引入最适量的甘油会降低纳米载体的溶血特性。相反,更多的甘油或氨基甘油被胆酸取代显着提高了纳米载体的溶血性能。为进一步阐明结构与性质的关系,采用分子动力学方法模拟了具有不同甘油取代的端粒的亚单位的构象,并计算了发夹构象的结合能和极性表面积,以解释其膜活性。纳米载体。此外,合成了这些telendendrimer亚基并直接测试了它们的膜活性,这验证了计算预测并与观察到的纳米载体的溶血活性相关。甘油取代维持了胆酸的面部两亲性,维持了优异的药物负载能力(紫杉醇和阿霉素),稳定性,细胞摄取以及有效载荷的抗癌功效。体内光学成像研究表明,优化的纳米载体比免费药物给药更有效地将药物分子特异性地递送至肿瘤部位,这对于增强癌症治疗至关重要。

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