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三氧化二砷氧化还原性纳米递药系统的生物学评价
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作者 陆燕平 杨华俊 史东明 《中国卫生检验杂志》 CAS 2023年第7期779-782,共4页
目的本研究基于三氧化二砷氧化还原性纳米递药系统观察其在人源性肝癌细胞(HepG2细胞)的摄取情况以及在裸鼠肝癌模型中的抗肿瘤效果。方法采用激光共聚焦观察三氧化二砷氧化还原性纳米递药系统在HepG2细胞的摄取情况,构建BALB/c裸鼠肝... 目的本研究基于三氧化二砷氧化还原性纳米递药系统观察其在人源性肝癌细胞(HepG2细胞)的摄取情况以及在裸鼠肝癌模型中的抗肿瘤效果。方法采用激光共聚焦观察三氧化二砷氧化还原性纳米递药系统在HepG2细胞的摄取情况,构建BALB/c裸鼠肝癌模型并进行模型鼠肿瘤体积和体质量监测、存活率观察、肿瘤切片实验等实验研究其抑制肝癌生长的效果。结果HepG2细胞对氧化还原性纳米载体MSN-SS-PEG具有较好的摄取,生理盐水组、As2O3、MSN-SS-NH_(2)@As_(2)O_(3)组、MSN-SS-PEG@As_(2)O_(3)组的肿瘤体积分别为(1508.96±452.59)mm^(3)、(1293.29±163.89)mm^(3)、(890.58±178.57)mm^(3)、(488.39±279.43)mm^(3),存活率分别为(20.2±0.84)d、(22.8±0.84)d、(22.8±2.12)d、(26.0±1.00)d。与As2O3组比较,MSN-SS-NH_(2)@As_(2)O_(3)和MSN-SS-PEG@As_(2)O_(3)组的细胞凋亡或坏死面积逐渐增大。结论生物学评价证明经过修饰后的纳米给药系统能在一定程度上促进纳米递药系统入胞增加其抗肿瘤效果,体内药效学进一步表明所构建的纳米给药系统提高了裸鼠的生存时间,具有较好的肿瘤治疗效果。 展开更多
关键词 氧化二砷递药系统 肝癌 氧化还原反应响应 体内研究
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Nanostructured CdS for efficient photocatalytic H2 evolution: A review 被引量:23
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作者 Rongchen Shen Doudou Ren +4 位作者 Yingna Ding Yatong Guan Yun Hau Ng Peng Zhang Xin Li 《Science China Materials》 SCIE EI CSCD 2020年第11期2153-2188,共36页
Cadmium sulfide(Cd S)-based photocatalysts have attracted extensive attention owing to their strong visible light absorption,suitable band energy levels,and excellent electronic charge transportation properties.This r... Cadmium sulfide(Cd S)-based photocatalysts have attracted extensive attention owing to their strong visible light absorption,suitable band energy levels,and excellent electronic charge transportation properties.This review focuses on the recent progress related to the design,modification,and construction of Cd S-based photocatalysts with excellent photocatalytic H2 evolution performances.First,the basic concepts and mechanisms of photocatalytic H2 evolution are briefly introduced.Thereafter,the fundamental properties,important advancements,and bottlenecks of Cd S in photocatalytic H2 generation are presented in detail to provide an overview of the potential of this material.Subsequently,various modification strategies adopted for Cd S-based photocatalysts to yield solar H2 are discussed,among which the effective approaches aim at generating more charge carriers,promoting efficient charge separation,boosting interfacial charge transfer,accelerating charge utilization,and suppressing charge-induced self-photocorrosion.The critical factors governing the performance of the photocatalyst and the feasibility of each modification strategy toward shaping future research directions are comprehensively discussed with examples.Finally,the prospects and challenges encountered in developing nanostructured Cd S and Cd S-based nanocomposites in photocatalytic H2 evolution are presented. 展开更多
关键词 solar fuel nanostructured cadmium sulfide-based photocatalysts modification strategies hydrogen production photocharge utilization
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