CAS OpenIR  > 中科院上海应用物理研究所2011-2019年
Cotranscriptionally Folded RNA Nanostructures Pave the Way to Intracellular Nanofabrication
Li, J; Chao, J; Shi, JY; Fan, CH
2015
Source PublicationCHEMBIOCHEM
Volume16Issue:1Pages:39—41
Subtype期刊文献
AbstractA very attractive goal in nanotechnology is to manufacture smart nanodevices that integrate multiple biological/biomedical functions and autonomously function in vivo in a pre-defined and well-controlled manner. For decades, researchers have been developing many different ways toward this target, using bottom-up assembly of types of nanomaterials or top-down fabrication of devices with nanometer-scale precision. However, the practical application of these nanodevices re-mains challenging. One possible barrier lies in the spatiotemporal separation between fabrication and use, which poses a great challenge for the non-invasive delivery of fully functional nanodevice into live cells. Indeed, cells themselves are highly complex natural machines with membrane barriers and finely regulated pathways for intracellular delivery. However, there is plenty of evidence that nanomaterials or nanodevices are easily aggregated or trapped inside of the cells.
KeywordDna Nanostructures In-vivo Nanotechnology Nanoparticles Delivery Assemblies Cells
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.sinap.ac.cn/handle/331007/24420
Collection中科院上海应用物理研究所2011-2019年
Recommended Citation
GB/T 7714
Li, J,Chao, J,Shi, JY,et al. Cotranscriptionally Folded RNA Nanostructures Pave the Way to Intracellular Nanofabrication[J]. CHEMBIOCHEM,2015,16(1):39—41.
APA Li, J,Chao, J,Shi, JY,&Fan, CH.(2015).Cotranscriptionally Folded RNA Nanostructures Pave the Way to Intracellular Nanofabrication.CHEMBIOCHEM,16(1),39—41.
MLA Li, J,et al."Cotranscriptionally Folded RNA Nanostructures Pave the Way to Intracellular Nanofabrication".CHEMBIOCHEM 16.1(2015):39—41.
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