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PDA-Dox对癌细胞化疗及光热治疗的协同作用探讨
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作者 李艳丽 《临床医学研究与实践》 2016年第14期146-146,共1页
目的研究聚多巴胺-阿霉素纳米颗粒对癌细胞的化疗-光热治疗协同作用。方法将单分子巴多胺聚合成PDA纳米颗粒,通过共价键作用和π-π作用,将抗癌药物阿霉素(Dox)负载在PDA表面,形成聚巴多胺纳米颗粒-阿霉素聚合物(PDADox)。分析PDA-Dox... 目的研究聚多巴胺-阿霉素纳米颗粒对癌细胞的化疗-光热治疗协同作用。方法将单分子巴多胺聚合成PDA纳米颗粒,通过共价键作用和π-π作用,将抗癌药物阿霉素(Dox)负载在PDA表面,形成聚巴多胺纳米颗粒-阿霉素聚合物(PDADox)。分析PDA-Dox药物的释放性能。结果利用PDA良好的光热转换能力,通过激光照射,在酸性条件下释放阿霉素,在阿霉素与化疗-光热治疗协同作用下,极大地提高扼杀癌细胞的效率。结论 PDA-Dox对癌细胞的化疗-光热治疗具有协同作用,可增强扼杀癌细胞能力,提高疗效。 展开更多
关键词 聚巴多胺纳米颗粒 阿霉素 癌细胞 化疗 光热治疗
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Facile in‐situ synthesis and deposition of monodisperse palladium nanoparticles on polydopamine‐functionalized silica gel as a heterogeneous and recyclable nanocatalyst for aerobic oxidation of alcohols 被引量:1
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作者 Hojat Veisi Ahmad Nikseresht +1 位作者 Shahin Mohammadi Saba Hemmati 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第6期1044-1050,共7页
This paper describes a facile in‐situ synthesis of palladium nanoparticles (Pd NPs) on silica gel/polydopamine composite(SiO2/PDA) without any stabilizer or reducing agent. In this approach, palladium ions were a... This paper describes a facile in‐situ synthesis of palladium nanoparticles (Pd NPs) on silica gel/polydopamine composite(SiO2/PDA) without any stabilizer or reducing agent. In this approach, palladium ions were adsorbed on SiO2/PDA surfaces by immersing the PDA‐coated SiO2 particles in a palladium plating bath. Then, they were reduced in situ to Pd nanoclusters by the reducing ability of PDA's N‐containing groups. The structure, morphology, and physicochemical properties of the synthesized nanocomposites were characterized by different analytical techniques such as high‐resolution transmission electron microscopy, field‐emission scanning electron microscopy, energy‐dispersive X‐ray spectroscopy, X‐ray diffraction analysis, X‐ray photoelectron spectroscopy, inductively coupled plasma and Fourier‐transform infrared spectroscopy. The Pd NPs capped by the PDA groups had a strikingly small size(30–40 nm). SiO2/PDA/Pd NPs exhibited high catalytic activ‐ity as a recyclable nanocatalyst in the aerobic oxidation of alcohols. Furthermore, recovery and multiple reuse of the catalyst revealed no detectable activity loss. 展开更多
关键词 Silica POLYDOPAMINE Palladiumnanoparticle OxidationAlcohol
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