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Enhanced Antitumor Efficacy and Imaging Application of Photosensitizer-Formulated Paclitaxel

机译:增强光敏剂配制紫杉醇的抗肿瘤功效和成像应用

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Paclitaxel (PTX) is a widely used anticancer drug that works by inhibiting microtubule disassembly. PTX safety was greatly enhanced by embedding it with human albumin. Here, we study the synergistic effects of PTX with photodynamic therapy (PDT) both in vitro and in vivo by constructing photosensitizer-PTX nanotheranostics (PPNTs). PPNTs were fabricated via noncovalent hydrophobic interactions and pi-pi stacking between an amphipathic photosensitizer and PTX with an average diameter of similar to 80 nm, and these showed high stability in biological conditions. In a tumor-bearing mouse model, PPNTs were shown to accumulate at the tumor site based on three-dimensional fluorescence tomographic imaging. Under 680 nm light irradiation, PPNTs exhibited a superior solid tumor ablation effect in a mouse model, with a dose of PTX (0.2 mg/kg) that is 10-fold lower than that typically used. Mechanistically, PPNTs induced a strong apoptotic response in cells under light illumination and showed an increased antitumor efficacy that is 47.2-fold and 57.6-fold higher than that of the photosensitizer nanoparticles (PNTs) and free PTX, respectively. In addition, PPNTs showed enhanced cellular uptake with focused mitochondria and lysosome colocalization compared to that of PNTs and the amount of PTX delivered in PPNTs was sufficient to induce cell cycle arrest in the G2/M phase. These findings indicated that the current combination therapy has advantages over monotherapy in promoting tumor regression and ultimately achieving tumor elimination.
机译:紫杉醇(PTX)是一种广泛使用的抗癌药物,其通过抑制微管拆卸而作用。通过将其与人白蛋白嵌入,大大提高了PTX安全性。在这里,我们通过构建光敏剂-PTX纳米移植(PPNT)来研究PTX与光动力治疗(PDT)的协同作用。通过非共价疏水相互作用和堆叠在两亲性光敏剂和PTX之间的PI-PI堆叠,其平均直径与80nm相似的PI-PI,并且这些在生物条件下显示出高稳定性。在携带肿瘤的小鼠模型中,显示PPNT基于三维荧光断层成像在肿瘤部位积聚。在680nm光照射下,PPNT在小鼠模型中表现出优异的实体肿瘤消融效果,剂量的PTX(0.2mg / kg)比通常使用的10倍。机械地,PPNT在光照中诱导细胞中的强凋亡反应,并显示出比光敏剂纳米颗粒(PNT)和游离PTX的光敏剂纳米颗粒(PNT)和游离PTX高出47.2倍和57.6倍的增加。此外,与PNT的PNT相比,PPNT表现出具有聚焦线粒体和溶酶体分层化的增强的细胞摄取,并且在PPNT中递送的PTX量足以诱导G2 / M相中的细胞周期停滞。这些发现表明,目前的联合治疗具有对促进肿瘤回归并最终实现肿瘤消除的单一疗法的优势。

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