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A pillar[5]arene-based [2]rotaxane lights up mitochondria

机译:支柱[5]基于芳烃的[2]轮烷点亮线粒体

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摘要

Subcellular organelle-specific reagents for simultaneous targeting, imaging and treatment are highly desirable for cancer therapy. However, it remains a challenge to fabricate a single molecular platform containing a targeting group, imaging and therapeutic agents through traditional synthesis. Due to their superior sensitivity and photostability, fluorescent probes with aggregation-induced emission (AIE) characteristics have attracted more and more attention in studying the process of translocation, drug release, and excretion of nanomedicines in vitro or in vivo. We construct a pillar[5]arene-based [2]rotaxane (R1) by employing tetraphenylethene (TPE) and triphenylphosphonium (TPP) moieties as stoppers; the TPE unit retains the aggregation-induced emission (AIE) attribute and the TPP group is used as a mitochondria-targeting agent. R1 exhibits enhanced AIE, high specificity to mitochondria, and superior photostability. By introducing doxorubicin (DOX) into R1, prodrug R2 is constructed as a dual-fluorescence-quenched Förster resonance energy transfer (FRET) system, in which the TPE-based axle acts as a donor fluorophore and the DOX unit acts as the acceptor. Upon hydrolysis of R2 in endo/lysosomes, the fluorescences of the carrier and the drug recover. R1 is further utilized as a drug delivery platform to conjugate other anticancer drugs containing amine groups through imine formation to prepare prodrugs. The anticancer drugs are released from these prodrugs in the cells upon hydrolysis of the pH-responsive imine bonds.
机译:同时靶向,成像和治疗的亚细胞器特异性试剂对于癌症治疗是非常需要的。然而,通过传统合成方法制备包含靶向基团,成像剂和治疗剂的单一分子平台仍然是一个挑战。由于其优异的灵敏度和光稳定性,具有聚集诱导发射(AIE)特性的荧光探针在研究体内或体外纳米药物的转运,药物释放和排泄过程中引起了越来越多的关注。我们通过使用四苯基乙烯(TPE)和三苯基phosph(TPP)部分作为塞子来构建基于柱[5]芳烃的[2]轮烷( R1 ); TPE单元保留聚集诱导发射(AIE)属性,TPP组用作线粒体靶向剂。 R1 具有增强的AIE,对线粒体的高度特异性和优异的光稳定性。通过将阿霉素(DOX)引入 R1 中,前药 R2 被构建为双荧光猝灭Förster共振能量转移(FRET)系统,其中基于TPE的车轴充当供体荧光团,DOX单元充当受体。内体/溶酶体中的 R2 水解后,载体和药物的荧光恢复。 R1 进一步用作药物输送平台,通过亚胺形成来偶联其他含有胺基的抗癌药物,从而制备前药。 pH响应的亚胺键水解后,抗癌药就会从细胞中的这些前药中释放出来。

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