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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Low-power and low-drug-dose photodynamic chemotherapy via the breakdown of tumor-targeted micelles by reactive oxygen species
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Low-power and low-drug-dose photodynamic chemotherapy via the breakdown of tumor-targeted micelles by reactive oxygen species

机译:通过反应性氧物种通过肿瘤靶标胶束击穿的低功率和低药剂剂量光动力学化学疗法

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摘要

Tumor-targeted delivery of anticancer agents using nanocarriers has been explored to increase the therapeutic index of cancer chemotherapy. However, only a few nanocarriers are clinically available because the physiological complexity often compromises their ability to target, penetrate, and control the release of drugs. Here, we report a method which dramatically increases in vivo therapeutic drug efficacy levels through the photodynamic degradation of tumor-targeted nanocarriers. Folate-decorated poly(ethylene glycol)-polythioketal micelles are prepared to encapsulate paclitaxel and porphyrins. Photo-excitation generates reactive oxygen species within the micelles to cleave the polythioketal backbone efficiently and facilitate drug release only at the illuminated tumor site. Intravenous injection of a murine xenograft model with a low dose of paclitaxel within the micelles, one-milligram drug per kg (mouse), corresponding to an amount less than that of Taxol by one order of magnitude, induces dramatic tumor regression without any acute systemic inflammation responses or organ toxicity under low-power irradiation (55 mW cm(-2)) at 650 nm.
机译:已经探讨了使用纳米载体的肿瘤靶向递送抗癌剂,以提高癌症化疗的治疗指标。然而,只有少数纳米载体在临床上可用,因为生理复杂性往往会损害它们靶向,渗透和控制药物释放的能力。在这里,我们通过肿瘤靶向纳米载体的光动力降解,报告了一种方法,该方法通过肿瘤靶向纳米载体的光动力降解而显着增加了体内治疗药物效率水平。制备叶酸饰物的聚(乙二醇) - 聚硫纤维胶片以包封紫杉醇和卟啉。光励磁在胶束内产生反应性氧物质,以有效地切割多素骨架,并仅在照明肿瘤部位处促进药物释放。静脉注射胶束剂量低剂量的紫罗兰紫外线,每千克(小鼠)的一毫克药物,对应于紫杉醇的数量级,诱导戏剧性肿瘤回归而没有任何急性系统性的肿瘤回归在低功率照射下的炎症反应或器官毒性(55mm(-2)),650nm。

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