首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Bovine Serum Albumin Nanospheres Synchronously Encapsulating 'Gold Selenium/Gold' Nanoparticles and Photosensitizer for High-Efficiency Cancer Phototherapy
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Bovine Serum Albumin Nanospheres Synchronously Encapsulating 'Gold Selenium/Gold' Nanoparticles and Photosensitizer for High-Efficiency Cancer Phototherapy

机译:牛血清白蛋白纳米球同步包裹“金硒/金”纳米粒子和光敏剂,用于高效癌症光疗

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摘要

Gold nanostructures have generated significant attention in biomedical areas because of their major role in cancer photothermal therapeutics. In order to conveniently combine gold nanostructures and drugs into one nanocomposite, Au_2Se/Au core–shell nanostructures with strong near-infrared-absorbing properties were synthesized using a simple method and embedded inside bovine serum albumin (BSA) nanospheres by using a spray dryer equipped with an ultrasonic atomizer followed by thermal denaturation. The nanospheres with narrow size distribution mainly ranging from 450 to 600 nm were obtained. The Au_2Se/Au-loaded BSA nanospheres (1 mg) adsorbed at least 0.01 mg of water-insoluble zinc phthalocyanine (ZnPc) photosensitizer. After irradiation with a 655-nm laser (20 min), the temperature of the Au_2Se/Au-loaded BSA nanospheres [200 μL, 2 mg/mL, BSA/Au_2Se/Au 10:1 (w/w)] increased by over 20 °C from the initial temperature of 24.82±0.15 °C, and the release of ZnPc was improved compared with a corresponding sample without irradiation. After being incubated with cancer cells (human esophageal carcinoma Eca-109), the nanospheres exhibited photothermal and photodynamic therapy with a synergistic effect upon laser irradiation. This work provides novel Au_2Se/Au-loaded polymer nanospheres prepared by a high-efficiency strategy for incorporating drugs for improving the efficiency in killing cancer cells.
机译:由于金纳米结构在癌症光热疗法中的主要作用,因此在生物医学领域引起了极大的关注。为了将金纳米结构和药物方便地组合成一个纳米复合材料,使用一种简单的方法合成了具有强近红外吸收性能的Au_2Se / Au核壳纳米结构,并使用配备了喷雾干燥器的牛血清白蛋白(BSA)纳米球嵌入用超声波雾化器进行热变性。获得具有主要在450至600nm范围内的窄尺寸分布的纳米球。装有Au_2Se / Au的BSA纳米球(1 mg)吸附至少0.01 mg的水不溶性锌酞菁(ZnPc)光敏剂。用655 nm激光照射(20分钟)后,Au_2Se / Au负载的BSA纳米球[200μL,2 mg / mL,BSA / Au_2Se / Au 10:1(w / w)]的温度升高了60℃以上。与初始温度24.82±0.15°C相比,温度降低了20°C,与未辐照的相应样品相比,ZnPc的释放得到改善。与癌细胞(人食道癌Eca-109)一起孵育后,纳米球表现出光热和光动力疗法,对激光照射具有协同作用。这项工作提供了通过高效策略制备的新型Au_2Se / Au负载聚合物纳米球,用于掺入药物以提高杀死癌细胞的效率。

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