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氧化石墨烯-聚乙烯亚胺纳米结构作为基因传递载体和生物成像工具。

Graphene oxide-polyethylenimine nanoconstruct as a gene delivery vector and bioimaging tool.

机构信息

Department of Chemistry, BK School of Molecular Science, Polymer Research Institute, Pohang University of Science and Technology, Pohang, Korea.

出版信息

Bioconjug Chem. 2011 Dec 21;22(12):2558-67. doi: 10.1021/bc200397j. Epub 2011 Nov 16.

Abstract

Graphene oxide (GO) has attracted an increasing amount of interest because of its potential applications in biomedical fields such as biological imaging, molecular imaging, drug/gene delivery, and cancer therapy. Moreover, GO could be fabricated by modifying its functional groups to impart specific functional or structural attributes. This study demonstrated the development of a GO-based efficient gene delivery carrier through installation of polyethylenimine, a cationic polymer, which has been widely used as a nonviral gene delivery vector. It was revealed that a hybrid gene carrier fabricated by conjugation of low-molecular weight branched polyethylenimine (BPEI) to GO increased the effective molecular weight of BPEI and consequently improved DNA binding and condensation and transfection efficiency. Furthermore, this hybrid material facilitated sensing and bioimaging because of its tunable and intrinsic electrical and optical properties. Considering the extremely high transfection efficiency comparable to that of high-molecular weight BPEI, high cell viability, and its application as a bioimaging agent, the BPEI-GO hybrid material could be extended to siRNA delivery and photothermal therapy.

摘要

氧化石墨烯(GO)因其在生物医学领域的潜在应用而受到越来越多的关注,如生物成像、分子成像、药物/基因传递和癌症治疗。此外,通过修饰其功能基团,可以赋予 GO 特定的功能或结构属性,从而制备 GO。本研究通过安装聚亚乙基亚胺(PEI)——一种已广泛用作非病毒基因传递载体的阳离子聚合物——来展示基于 GO 的高效基因传递载体的开发。结果表明,通过将低分子量支化聚亚乙基亚胺(BPEI)接枝到 GO 上制备的杂交基因载体增加了 BPEI 的有效分子量,从而提高了 DNA 的结合和凝聚以及转染效率。此外,由于其可调谐的固有电学和光学特性,这种混合材料有利于传感和生物成像。考虑到其与高分子量 BPEI 相当的超高转染效率、高细胞存活率以及作为生物成像剂的应用,BPEI-GO 杂化材料可扩展至 siRNA 传递和光热治疗。

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