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Disulfide-Bridged Organosilica Frameworks: Designed, Synthesis, Redox-Triggered Biodegradation, and Nanobiomedical Applications
Du, Xin1,2; Kleitz, Freddy3; Li, Xiaoyu4; Huang, Hongwei5; Zhang, Xueji1; Qiao, Shi-Zhang2
刊名ADVANCED FUNCTIONAL MATERIALS
2018-06-27
卷号28期号:26页码:35
关键词Biocompatibility Disulfide-bridged Silsesquioxane Frameworks Mesoporous Silica Nanoparticles Nanobiomedicine Redox-triggered Biodegradation
ISSN号1616-301X
DOI10.1002/adfm.201707325
英文摘要

Over the past few years, silica-based nanotheranostics have demonstrated their great potential for nano/biomedical applications. However, the uncontrollable and difficult degradability of their pure silica framework and long-time in vivo retention still cause severe and unpredictable toxicity risks. Therefore, it is highly desirable to design and synthesize materials with safer framework structures and compositions. To this aim, the introduction of disulfide bonds into the silica framework can not only maintain high stability in physiological conditions, but also achieve a stimuli-responsive biodegradation triggered by intracellular reducing microenvironment in living cells, especially in cancer cells. Once nanotheranostics with disulfide (i.e., thioether)-bridged silsesquioxane framework are taken up by tumor cells via passive or active targeting, the disulfide bonds in the hybrid silica matrix can be cleaved by a high concentration of intracellular glutathione, enabling redox-triggered biodegradation of the nanosystems for both concomitant release of the loaded therapeutic cargo and in vivo clearance. It is envisioned that such hybrid materials comprised of disulfide-bridged silsesquioxane frameworks can become promising responsive and biodegradable nanotheranostics. This review summarizes the recent advances in the synthesis of hybrid organosilicas with disulfide-bridged silsesquioxane frameworks, and discuss their redox-triggered biodegradation behaviors combined with their biocompatibility and nanobiomedical applications.

资助项目Fundamental Research Funds for the Central Universities[2302015-06500017] ; Fundamental Research Funds for the Central Universities[FRF-BR-17-002B] ; Fundamental Research Funds for the Central Universities[FRF-BR-17-032A] ; Australian Research Council (ARC)[DP160104866] ; Australian Research Council (ARC)[DP140104062] ; Australian Research Council (ARC)[DP170104464] ; University of Vienna ; National Natural Science Foundation of China[51671181] ; National Natural Science Foundation of China[21501009] ; Beijing Municipal Science and Technology Commission[z131102002813058]
WOS关键词Mesoporous Silica Nanoparticles ; Drug-delivery System ; Mononuclear Phagocyte System ; One-pot Synthesis ; Biomedical Applications ; In-vivo ; Cancer-therapy ; Protein Delivery ; Gene Delivery ; Silsesquioxane Framework
WOS研究方向Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
语种英语
出版者WILEY-V C H VERLAG GMBH
WOS记录号WOS:000436104800006
资助机构Fundamental Research Funds for the Central Universities ; Australian Research Council (ARC) ; University of Vienna ; National Natural Science Foundation of China ; Beijing Municipal Science and Technology Commission
内容类型期刊论文
源URL[http://ir.ipe.ac.cn/handle/122111/25039]  
专题中国科学院过程工程研究所
通讯作者Du, Xin; Kleitz, Freddy; Qiao, Shi-Zhang
作者单位1.Univ Sci & Technol Beijing, Beijing Key Lab Bioengn & Sensing Technol, Sch Chem & Biol Engn, Res Ctr Bioengn & Sensing Technol, Beijing 100083, Peoples R China
2.Univ Adelaide, Sch Chem Engn, Adelaide, SA 5005, Australia
3.Univ Vienna, Fac Chem, Dept Inorgan Chem Funct Mat, A-1090 Vienna, Austria
4.Chinese Acad Sci, Inst Proc Engn, Key Lab Green Proc & Engn, Beijing 100190, Peoples R China
5.China Univ Geosci, Sch Mat Sci & Technol, Beijing 100083, Peoples R China
推荐引用方式
GB/T 7714
Du, Xin,Kleitz, Freddy,Li, Xiaoyu,et al. Disulfide-Bridged Organosilica Frameworks: Designed, Synthesis, Redox-Triggered Biodegradation, and Nanobiomedical Applications[J]. ADVANCED FUNCTIONAL MATERIALS,2018,28(26):35.
APA Du, Xin,Kleitz, Freddy,Li, Xiaoyu,Huang, Hongwei,Zhang, Xueji,&Qiao, Shi-Zhang.(2018).Disulfide-Bridged Organosilica Frameworks: Designed, Synthesis, Redox-Triggered Biodegradation, and Nanobiomedical Applications.ADVANCED FUNCTIONAL MATERIALS,28(26),35.
MLA Du, Xin,et al."Disulfide-Bridged Organosilica Frameworks: Designed, Synthesis, Redox-Triggered Biodegradation, and Nanobiomedical Applications".ADVANCED FUNCTIONAL MATERIALS 28.26(2018):35.
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