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Au@TiO_2纳米核壳与HMME结合体的制备及其光动力疗效初探 被引量:4
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作者 姚翠萍 王佳壮 +3 位作者 王晶 张璐薇 王斯佳 张镇西 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2017年第12期3670-3676,共7页
光动力疗法(PDT)是一种高效、安全、微创的新型治疗方法,国产光敏剂血卟啉单甲醚(HMME)介导的光动力疗法由于其成分单一、单态氧产量高及光敏周期短,临床上已用于脑胶质瘤和鲜红斑痣的治疗。为了进一步提高光动力疗效,本研究基于晶种生... 光动力疗法(PDT)是一种高效、安全、微创的新型治疗方法,国产光敏剂血卟啉单甲醚(HMME)介导的光动力疗法由于其成分单一、单态氧产量高及光敏周期短,临床上已用于脑胶质瘤和鲜红斑痣的治疗。为了进一步提高光动力疗效,本研究基于晶种生长法制备稳定粒径均一的吸收峰在530nm的阳离子金纳米球。采用毒性低且阴离子电解活化作用强的聚(四-苯乙烯磺酸钠)(PSS)进行修饰。利用静电吸引力将钛源TiCl_3水解的TiOH^(2+)与其结合并氧化制备AuNP@TiO_2核壳,通过改变NaHCO_3量制得不同TiO_2壳层厚度的AuNP@TiO_2核壳,并进一步将其与HMME结合制备结合体。采用紫外-可见吸收光谱、红外光谱、激光纳米粒度仪和透射电镜对所制样品进行表征。结果表明新型的光敏剂粒径均匀,结构稳定。最后采用细胞实验验证了其光动力疗效。总之,该研究合成了新型的Au@TiO_2-HMME纳米光敏剂,通过人口腔表皮样癌细胞系KB细胞与新型核壳纳米结构的光动力作用,与纯HMME相比,在最优条件下可提高约35%的细胞杀伤率。 展开更多
关键词 核壳结构 光动力学疗效 载药 稳定结合
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Self-assembled nanostructured photosensitizer with aggregation-induced emission for enhanced photodynamic anticancer therapy 被引量:3
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作者 Wenkun Han Song Zhang +7 位作者 Rong Deng Yangyang Du Jingyu Qian Xiaohua Zheng Bin Xu Zhigang Xie Fei Yan Wenjing Tian 《Science China Materials》 SCIE EI CSCD 2020年第1期136-146,共11页
Three nanostructured photosensitizers with aggregation-induced emission(AIE) characteristics based on2,3-bis(4?-(diphenylamino)-[1,1?-biphenyl]-4-yl) fumaronitrile(BDBF) were prepared for image-guided photodynamic the... Three nanostructured photosensitizers with aggregation-induced emission(AIE) characteristics based on2,3-bis(4?-(diphenylamino)-[1,1?-biphenyl]-4-yl) fumaronitrile(BDBF) were prepared for image-guided photodynamic therapy(PDT). BDBF was encapsulated with Pluronic F-127(F127) to form usual spherical nanoparticles(F127@BDBF NPs) with a red fluorescence emission and 9.8% fluorescence quantum yield(FQY). Moreover, BDBF self-assembled into nanorods(BDBF NRs) in water. Compared with F127@BDBF NPs, BDBF NRs exhibited stronger orange fluorescence with a higher FQY of 23.3% and similar singlet oxygen(1O2) generation capability. BDBF NRs were further modified with F127 to form BDBF@F127 NRs with the same 1O2 generation ability as BDBF NRs. The three nanostructures exhibited a higher 1O2 production capacity than BDBF molecule in dissolved state and favorable stability in an aqueous solution as well as under physiological condition. In vitro photocytotoxicity experiments indicated that the three nanostructures inhibited tumor cell proliferation effectively.Therefore, to construct eligible nanostructures with a high FQY and 1O2 generation ability, simple self-assembly can serve as a valuable method to prepare photosensitizers with enhanced PDT. 展开更多
关键词 aggregation-induced emission PHOTOSENSITIZER NANORODS photodynamic therapy
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