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In?situ supramolecular polymerization-enhanced self-assembly of polymer vesicles for highly efficient photothermal therapy

机译:in?原位超分子聚合 - 增强聚合物囊泡的自组装,用于高效的光热疗法

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Vesicular photothermal therapy agents (PTAs) are highly desirable in photothermal therapy (PTT) for their excellent light-harvesting ability and versatile hollow compartments. However, up to now, the reported vesicular PTAs are generally self-assembled from small molecules like liposomes, and polymer vesicles have seldom been used as PTAs due to the unsatisfactory photothermal conversion efficiency resulting from the irregular packing of chromophores in the vesicle membranes. Here we report a nano-sized polymer vesicle from hyperbranched polyporphyrins with favorable photothermal stability and extraordinarily high photothermal efficiency (44.1%), showing great potential in imaging-guided PTT for tumors through in vitro and in vivo experiments. These excellent properties are attributed to the in?situ supramolecular polymerization of porphyrin units inside the?vesicle membrane into well-organized 1D monofilaments driven by π-π stacking. We believe the supramolecular polymerization-enhanced self-assembly process reported here will shed a new light on the design of supramolecular materials with new structures and functions.
机译:在光热疗法(PTT)中非常希望囊状光热疗剂(PTA)用于其优异的光收获能力和多功能的中空隔室。然而,到目前为止,报告的凹凸PTA通常从脂质体等小分子自组装,并且由于由囊泡膜中的不规则色影填充的光热转换效率不令人满意的光热转换效率,聚合物囊泡很少被用作PTA。在这里,我们报告了来自超溴的聚合物浆液的纳米大小的聚合物囊泡,具有良好的光热稳定性,并且非常高的光热效率(44.1%),通过体外和体内实验表现出用于肿瘤的显像引导的PTT的巨大潜力。这些优异的性质归因于β膜内部卟啉单元的α原位超分子聚合。在由π-π堆叠驱动的良好组织的1d单丝的孔中的卟啉单元的原位超分子聚合。我们认为,在此报告的超分子聚合增强的自组装过程将在新的结构和功能设计上揭示了超分子材料的设计。

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