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Dialysis-derived urchin-like supramolecular assembly of tannic acid and paclitaxel with high porosity

机译:Dialysis-derived urchin-like超分子组装的丹宁酸和紫杉醇高孔隙度

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Co-crystallization of active pharmaceutical ingredients (APIs) with pharmaceutically acceptable additives has emerged as an alternative to current drug delivery systems for hydrophobic drugs, due to their high drug loading efficiency. During this process, we herein report that tannic acid (TA) can be used as an amphiphilic stabilizer for the model drug, paclitaxel (PTX), that results in the shape and morphology variations of the synthesized microstructures, depending on the synthetic environment. We observed that rapid co-precipitation of PTX and TA via dialysis in water resulted in unprecedented urchin-like supramolecular microstructures with high porosity. On the other hand, slow co-precipitation for several hours under static conditions without dialysis exhibited bundles of straight TA-coated PTX fibers without any pores. This was plausibly due to the dynamic change of both the building block concentration and the solvent composition occurring during the transition of the kinetic product to the thermodynamic product. Interestingly, the synthesized urchin-like porous structure further rapidly transformed into a spherical shape through the interaction with serum proteins by remodeling of the non-covalent interactions, which contributed to the overall therapeutic efficacy tested in vitro. Our results provide knowledge on the self-assembly behavior of the hydrophobic drug and amphiphilic stabilizer under dynamic conditions, and contribute to the development of novel strategies in designing drug formulations.
机译:Co-crystallization活性药物的与活性成分(api)可接受的添加剂已成为一个替代目前的药物输送系统疏水性药物,由于其高药物加载效率。丹宁酸(TA)可以作为两亲性稳定剂为模型药物,紫杉醇(PTX),形状和结果合成的形态学变化微观结构,根据合成环境。共同沉淀PTX和TA通过透析水导致前所未有的urchin-like超分子微观结构与高孔隙度。共同沉淀静态下几个小时条件没有透析的展出直TA-coated PTX纤维没有毛孔。这是合理的动态变化构建块浓度和溶剂成分在发生转变的动力产品热力学的产品。进一步合成urchin-like多孔结构迅速转换成一个球形通过与血清蛋白重构的非共价相互作用,这导致了总体治疗功效体外测试。知识的自组装行为疏水性药物和两亲性稳定剂动态条件下,和做出贡献小说在药物设计策略的发展配方。

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