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功能化二氧化硅纳米材料在肿瘤治疗领域的应用 被引量:3
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作者 王小妮 魏娟娟 +1 位作者 欧阳津 那娜 《科学通报》 EI CAS CSCD 北大核心 2022年第20期2333-2351,共19页
纳米材料(如脂质体、聚合物胶束、树枝状聚合物)基于其良好的物理化学特性,在药物递送、成像诊断等肿瘤诊疗领域拥有巨大的应用前景.其中,介孔二氧化硅纳米材料(mesoporous silica nanomaterials,MSNs)具有独特的孔径结构、较大的比表面... 纳米材料(如脂质体、聚合物胶束、树枝状聚合物)基于其良好的物理化学特性,在药物递送、成像诊断等肿瘤诊疗领域拥有巨大的应用前景.其中,介孔二氧化硅纳米材料(mesoporous silica nanomaterials,MSNs)具有独特的孔径结构、较大的比表面积,并且其粒径大小、形貌结构易于调控,同时结合多种修饰手段,在生物医学领域引起了广泛的关注.MSNs材料功能化修饰后,可作为化学药物、基因、核酸、多肽、蛋白酶等治疗药物载体,在内、外源性刺激触发下,对肿瘤部位进行特异性靶向识别和可控性药物释放,使得肿瘤诊疗一体化成为可能.本文在对MSNs材料独特的物理化学特性进行介绍的基础上,综述了其在现代生物医学中的发展趋势,并展望了其在临床应用中的巨大潜力. 展开更多
关键词 介孔二氧化硅纳米材料 功能化修饰 药物递送 肿瘤诊断治疗 生物成像检测
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Peptide-assembled siRNA nanomicelles confine MnOx-loaded silicages for synergistic chemical and gene-regulated cancer therapy
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作者 Jingjing Li juanjuan wei +4 位作者 Yixuan Gao Qi Zhao Jianghui Sun Jin Ouyang Na Na 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第4期453-458,共6页
Chemodynamic therapy(CDT) is a promising therapeutic approach for in situ cancer treatment, but it is still hindered by inefficient single-modality treatment and the weak targeted delivery of reagents into mitochondri... Chemodynamic therapy(CDT) is a promising therapeutic approach for in situ cancer treatment, but it is still hindered by inefficient single-modality treatment and the weak targeted delivery of reagents into mitochondria(the main site of intracellular ROS production). Herein, to obtain a multimodal strategy,peptide-assembled si RNA nanomicelles were prepared to confine ultrasmall MnOxin small silica cages(silicages), which is convenient for synergistic chemical and gene-regulated cancer therapy. Given the free energy and versatility of small silicages, as well as the excellent Fenton-like activity of ultrasmall MnOx,MnOx-inside-loaded silicages(10 nm) were prepared for CDT delivery to mitochondria. Subsequently, to obtain a synergistic CDT and gene silencing treatment, the peptide-mediated assembly of si RNA and MnOx-loaded silicages were employed to obtain silicage@MnOx-si RNA nanomicelles(SMS NMs). After multiple modifications, sequential cancer cell-targeted delivery, GSH-controlled reagent release of si RNA and mitochondria-targeted delivery of MnOx-loaded silicages were successfully achieved. Finally, by both in vitro and in vivo experiments, SMS NMs were confirmed to be effective for synergistic chemical and gene-regulated cancer therapy. Our findings expand the applications of silicages and initiate the development of multimodal CDT. 展开更多
关键词 Peptide-assembled siRNA nanomicelles MnOx-loaded silicages GSH-stimulated release Mitochondria-targeted delivery Cancer therap
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