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Therapeutic Nanosystem Consisting of Singlet-Oxygen-ResponsiveProdrug and Photosensitizer Excited by Two-Photon Light

机译:单线态氧响应性治疗纳米系统双光子光激发的前药和光敏剂

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摘要

Using light as the sole stimulus and employing the generated singlet oxygen as a therapeutic agent and the trigger to activate chemo-drug release could serve as an elegant way to bring into full play the advantageous features of light and enhance therapeutic efficacy through a combination of chemotherapy and photodynamic therapy. Herein a liposomal drug system has been developed by embedding a fluorescent photosensitizer and a prodrug into phospholipid vesicles. Upon one- or two-photon light irradiation, the photosensitizer generates singlet oxygen, which removes the protecting group of the prodrug and subsequently causes the release of the active drug chlorambucil. With the combined action of O21 and chlorambucil, highly controllable cytotoxicity toward cancer cells was achieved. In addition, the fluorescent photosensitizer gives out fluorescent signal acting as the drug monitoring agent. This strategy may provide an efficient approach for cancer treatment and some useful insights for designing light-stimulated on-demand therapeutic systems.
机译:使用光作为唯一刺激物,并利用产生的单线态氧作为治疗剂,并激活化学药物释放的触发器,可以作为一种优雅的方法,通过化学疗法的结合充分发挥光的有利特征并提高治疗功效和光动力疗法。在本文中,已经通过将荧光光敏剂和前药嵌入磷脂囊泡中来开发脂质体药物系统。在单光子或双光子光照射下,光敏剂产生单线态氧,该单线态氧除去前药的保护基,随后释放出活性药物苯丁酸氮芥。通过O2 1 和苯丁酸氮芥的共同作用,实现了对癌细胞的高度可控的细胞毒性。另外,荧光光敏剂发出用作药物监测剂的荧光信号。该策略可以为癌症治疗提供有效的方法,并为设计光刺激的按需治疗系统提供一些有用的见识。

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