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Gold Nanocage-Photosensitizer Conjugates for Dual-Modal Image-Guided Enhanced Photodynamic Therapy

机译:金纳米笼-光敏剂结合双模态图像引导的增强光动力疗法。

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We have demonstrated that gold nanocage-photosensitizer conjugates can enable dual image-guided delivery of photosensitizer and significantly improve the efficacy of photodynamic therapy in a murine model. The photosensitizer, 3-devinyl-3-(1'-hexyloxyethyl)pyropheophorbide (HPPH), was noncovalently entrapped in the poly(ethylene glycol) monolayer coated on the surface of gold nanocages. The conjugate is stable in saline solutions, while incubation in protein rich solutions leads to gradual unloading of the HPPH, which can be monitored optically by fluorescence and photoacoustic imaging. The slow nature of the release in turn results in an increase in accumulation of the drug within implanted tumors due to the passive delivery of gold nanocages. Furthermore, the conjugate is found to generate more therapeutic singlet oxygen and have a lower IC50 value than the free drug alone. Thus the conjugate shows significant suppression of tumor growth as compared to the free drug in vivo. Short-term study showed neither toxicity nor phenotypical changes in mice at therapeutic dose of the conjugates or even at 100-fold higher than therapeutic dose of gold nanocages.
机译:我们已经证明,金纳米笼-光敏剂结合物可以使光敏剂的双重图像引导递送并显着提高在鼠模型中的光动力疗法的功效。将光敏剂3-devinyl-3-(1'-hexyloxyethyl)pyropheophorbide(HPPH)非共价捕获在金纳米笼表面涂覆的聚乙二醇单层中。偶联物在盐溶液中稳定,而在富含蛋白质的溶液中孵育会导致HPPH逐渐卸荷,可以通过荧光和光声成像进行光学监测。由于金纳米笼的被动递送,释放的缓慢性质继而导致药物在植入的肿瘤内的积累增加。此外,发现该缀合物比单独的游离药物产生更多的治疗性单线态氧并且具有更低的IC 50 值。因此,与体内游离药物相比,缀合物显示出显着的肿瘤生长抑制作用。短期研究显示,在治疗剂量的缀合物下,甚至在比治疗剂量的金纳米笼高100倍的情况下,小鼠的毒性和表型变化均未见变化。

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