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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Photothermal-chemotherapy with doxorubicin-loaded hollow gold nanospheres: A platform for near-infrared light-trigged drug release
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Photothermal-chemotherapy with doxorubicin-loaded hollow gold nanospheres: A platform for near-infrared light-trigged drug release

机译:阿霉素空心金纳米球的光热化学疗法:近红外光触发药物释放的平台。

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Photothermal ablation (PTA) is an emerging technique that uses near-infrared (NIR) laser light-generated heat to destroy tumor cells. However, complete eradication of tumor cells with PTA is difficult because of uneven heat distribution in the treatment volume. We hypothesized that combining PTA with chemotherapy using a single multifunctional nanoconstruct that mediates simultaneous photothermal cell killing and drug release (photothermal- chemotherapy) would result in enhanced antitumor activity and reduced toxicity compared to chemotherapy alone. Doxorubicin (DOX) was loaded to hollow gold nanospheres (HAuNS) coated with polyethylene glycol (PEG). The pharmacokinetics and biodistribution of both DOX and HAuNS in the resulting nanoconstruct, DOX@PEG-HAuNS having different DOX:PEG:HAuNS ratios, were evaluated using dual isotope labeling techniques. The antitumor activity of DOX@PEG-HAuNS with DOX:PEG:HAuNS weight ratio of 1:3:1 (NP3) in combination with NIR laser was studied in vitro and in vivo using human MDA-MB-231 breast cancer and A2780 ovarian cancer cells. In vitro, NP3 mediated PTA of both cancer cells and DOX release upon NIR laser treatment. In vivo, NP3 showed slower clearance in blood and greater accumulation in tumors than free DOX. NP3-plus-NIR laser demonstrated greater antitumor activity than free DOX, NP3, or liposomal DOX. Moreover, NP3 displayed significantly decreased systemic toxicity compared to free DOX or liposomal DOX. Enhanced antitumor effect with NP3-plus-laser can be attributed to both the cytotoxic effect of DOX released from NP3 and the photothermal effect mediated by HAuNS. Slow release of DOX from NP3 in normal tissues contributed to reduced systemic toxicity. Photothermal-chemotherapy exemplified by a single-agent nanoconstruct NP3 is a promising approach to anticancer therapy.
机译:光热消融(PTA)是一种新兴技术,它使用近红外(NIR)激光产生的热量破坏肿瘤细胞。但是,由于治疗体积中的热量分布不均匀,因此难以用PTA彻底清除肿瘤细胞。我们假设,与单独使用化学疗法相比,使用介导同时光热细胞杀伤和药物释放的单一多功能纳米结构将PTA与化学疗法相结合(光热化学疗法)将导致增强的抗肿瘤活性并降低毒性。将阿霉素(DOX)加载到涂有聚乙二醇(PEG)的空心金纳米球(HAuNS)中。使用双重同位素标记技术评估了DOX和HAuNS在所得纳米结构DOX:PEG:HAuNS比不同的DOX @ PEG-HAuNS中的药代动力学和生物分布。使用人MDA-MB-231乳腺癌和A2780卵巢癌,在体内外研究了DOX:PEG:HAuNS重量比为1:3:1(NP3)与NIR激光联合使用的DOX @ PEG-HAuNS的抗肿瘤活性癌细胞。在体外,NP3介导了癌细胞的PTA和DOX在近红外激光治疗后的释放。在体内,与游离的DOX相比,NP3在血液中的清除速度较慢,在肿瘤中的蓄积量更大。 NP3-plus-NIR激光比游离DOX,NP3或脂质体DOX具有更好的抗肿瘤活性。此外,与游离DOX或脂质体DOX相比,NP3表现出明显降低的全身毒性。 NP3-plus激光增强的抗肿瘤作用可归因于从NP3释放的DOX的细胞毒性作用和HAuNS介导的光热作用。正常组织中NP3中DOX的缓慢释放有助于降低全身毒性。以单剂纳米结构NP3为例的光热化学疗法是一种有前途的抗癌治疗方法。

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