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Multifunctional Cu39S28 Hollow Nanopeanuts for In Vivo Targeted Photothermal Chemotherapy

机译:用于体内靶向光热化学疗法的多功能Cu39S28空心纳米花生。

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摘要

Actively targeted hollow nanoparticles may play key roles in precise anti-cancer therapy. Here, unique Cu39S28 hollow nanopeanuts (HNPs) were synthesized via a facile one-step method and the formation mechanism was illustrated. The as-synthesized Cu39S28 HNPs exhibit outstanding photothermal conversion efficiency (41.1%) and drug storage capacity (DOX, 99.5 %). At the same time, the DOX drug loading nanocomposites have shown great sensitive response of release to either pH value or near infrared ray (NIR). In particular, the folic acid (FA) can easily conjugate with the synthesized Cu39S28 HNPs without further modification to get a targeted effect. The FA modified Cu39S28 HNPs showed an efficiently targeting effect in vitro and could considerably enhance the tumor-targeting effect more than 10 times in vivo. Moreover, the synthetical hyperthermia and drug release from Cu39S28 HNPs when under 808 nm laser could significantly improve the therapeutic efficacy compared with photothermal or chemotherapy alone both in vitro and in vivo. The histological studies in main organs also proved the well biocompatibility, while the tumor sites were in seriously destruction due to the accumulation of the nanocomposites and the combined photothermal chemo therapy effect. Therefore, the multi-functional nanocomposites is excellent antitumor agents due to their superb therapy effect in breast cancer.
机译:主动靶向的空心纳米颗粒可能在精确的抗癌治疗中发挥关键作用。在此,通过简便的一步法合成了独特的Cu39S28空心纳米花生(HNP),并阐明了其形成机理。合成后的Cu39S28 HNP具有出色的光热转化效率(41.1%)和药物存储能力(DOX,99.5%)。同时,载有DOX的纳米复合材料对pH值或近红外线(NIR)均显示出很大的释放敏感反应。尤其是,叶酸(FA)可以轻松与合成的Cu39S28 HNP偶联,而无需进一步修饰即可获得目标效果。 FA修饰的Cu39S28 HNP在体外显示出有效的靶向作用,并且可以大大增强体内的肿瘤靶向作用超过10倍。而且,与单独的光热或化学疗法相比,在体外和体内,当在808 nm激光下进行合成热疗和从Cu39S28 HNPs释放药物时,可以显着提高治疗效果。主要器官的组织学研究也证明了良好的生物相容性,而肿瘤部位由于纳米复合材料的积累和光热化学疗法的联合作用而受到严重破坏。因此,由于多功能纳米复合材料在乳腺癌中具有极好的治疗效果,因此是极好的抗肿瘤剂。

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