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New Insight into a Cancer Theranostic Probe: Efficient Cell-Specific Delivery of SN-38 Guided by Biotinylated Poly(vinyl alcohol)

机译:癌症治疗学探针的新见解:生物素化聚乙烯醇指导的SN-38高效细胞特异性递送

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An optically modulated "turn-on" theranostic prodrug TP1 has been explored and formulated with biotinylated poly(vinyl alcohol) (biotinPVA) to obtain desired pharmacokinetics. TP1, consisting of the antineoplastic camptothecin analogue SN-38, and the fluorescent dye rhodol green have been covalently conjugated through a disulfide bond. Glutathione triggering the release of drug and fluorophore has been well established by UV-vis measurements through mass spectral analysis in physiological conditions. The biocompatible biotinPVA formulated prodrug (PTP1) showed remarkably higher stability against blood serum and cell-specific activation in contrast to that of TP1. Significantly, APOPTOSIS PTP1 permits monitoring of the delivery and release of well-known topoisomerase I inhibitor SN-38 by modulating fluorescence signal at lambda(em) 550 nm within intracellular milieus. Moreover, theranostic probe PTP1 exhibited dose-dependent antiproliferative activity against receptor-positive HeLa cells, whereas it did not show such an effect against receptor-negative NIH3T3 cells. Finally, the cell specific antiproliferative activity of PTP1 via the apoptotic pathway is an efficient approach in cancer theranostics. Thus, futuristic PTP1 could be a promising agent in which diagnostic and prognostic data will be monitored synergistically.
机译:已经研究了光学调制的“开启”的治疗药物前体TP1,并与生物素化的聚乙烯醇(biotinPVA)配制成所需的药代动力学。由抗肿瘤喜树碱类似物SN-38组成的TP1和荧光染料Rhodol green已通过二硫键共价缀合。通过在生理条件下通过质谱分析进行UV-vis测量,已经很好地确定了触发药物和荧光团释放的谷胱甘肽。与TP1相比,生物相容性生物素PVA配制的前药(PTP1)对血清和细胞特异性激活具有更高的稳定性。重要的是,APOPTOSIS PTP1可以通过调节细胞内环境中550 nmλ处的荧光信号来监控众所周知的拓扑异构酶I抑制剂SN-38的递送和释放。此外,治疗诊断探针PTP1对受体阳性的HeLa细胞表现出剂量依赖性的抗增殖活性,而对受体阴性的NIH3T3细胞则没有这种作用。最后,经由凋亡途径的PTP1的细胞特异性抗增殖活性是癌症治疗学中的有效方法。因此,未来派PTP1可能是一种有前途的媒介,其中将协同监测诊断和预后数据。

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