聚乙烯亚胺
材料科学
纳米载体
清脆的
纳米技术
量子产额
光致发光
生物相容性
基因传递
光子上转换
碳纤维
基因组编辑
量子点
表面改性
荧光
生物物理学
转染
化学工程
发光
基因
光电子学
化学
生物
药物输送
生物化学
复合材料
工程类
冶金
物理
复合数
量子力学
作者
Akbar Hasanzadeh,Fatemeh Radmanesh,Jafar Kiani,Mehrdad Bayandori,Yousef Fatahi,Amir Reza Aref,Mahdi Karimi
出处
期刊:Nanotechnology
[IOP Publishing]
日期:2019-02-04
卷期号:30 (13): 135101-135101
被引量:38
标识
DOI:10.1088/1361-6528/aafbf9
摘要
Gene therapy using clustered regularly interspaced short palindromic repeat plasmids (pCRISPR) reduces mistakes in gene editing and prevents engendering integrational mutagenesis that has been seen in available genome engineering technologies. Developing an ideal and traceable nanocarrier, which can accurately and efficiently transfer this complex into the cytosol and which facilitates the journey towards the nucleus, is a fascinating area of research. Polyethylenimine (PEI) functionalized carbon dots (CD-PEI) were fabricated by one-step microwave assisted pyrolysis with an average size around 3 nm. This CD-PEI showed good potential for intracellular delivery of genetic materials (∼70%). Also, this CD-PEI with passive surface modification with low molecular PEI (2 kDa) has a very high quantum yield, as high as 40% with low cytotoxicity. The expression rate of the pCRISPR was around 15% in the HEK-293 cell which is comparable with the pristine PEI. Furthermore, the CD-PEI demonstrated good properties, such as high quantum yield, biocompatibility and tunable emission wavelengths, suggesting the potential application of photoluminescent functionalized CDs as a suitable, traceable nanocarrier for CRISPR delivery.
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