Meng Hong-Min, Zhang Xiaobing, Lv Yifan, Zhao Zilong, Wang Nan-Nan, Fu Ting, Fan Huanhuan, Liang Hao, Qiu Liping, Zhu Guizhi, Tan Weihong
Molecular Science and Biomedicine Laboratory, State Key Laboratory for Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering, College of Biology, and Collaborative Research Center of Molecular Engineering for Theranostics, Hunan University , Changsha 410082, China.
ACS Nano. 2014 Jun 24;8(6):6171-81. doi: 10.1021/nn5015962. Epub 2014 May 13.
Functional nucleic acid (FNA)-based sensing systems have been developed for efficient detection of a wide range of biorelated analytes by employing DNAzymes or aptamers as recognition units. However, their intracellular delivery has always been a concern, mainly in delivery efficiency, kinetics, and the amount of delivered FNAs. Here we report a DNA dendrimer scaffold as an efficient nanocarrier to deliver FNAs and to conduct in situ monitoring of biological molecules in living cells. A histidine-dependent DNAzyme and an anti-ATP aptamer were chosen separately as the model FNAs to make the FNA dendrimer. The FNA-embedded DNA dendrimers maintained the catalytic activity of the DNAzyme or the aptamer recognition function toward ATP in the cellular environment, with no change in sensitivity or specificity. Moreover, these DNA dendrimeric nanocarriers show excellent biocompatibility, high intracellular delivery efficiency, and sufficient stability in a cellular environment. This FNA dendrimeric nanocarrier may find a broad spectrum of applications in biomedical diagnosis and therapy.
基于功能核酸(FNA)的传感系统已被开发出来,通过使用DNA酶或适体作为识别单元,高效检测各种生物相关分析物。然而,它们的细胞内递送一直是一个问题,主要涉及递送效率、动力学以及递送的FNA数量。在此,我们报道一种DNA树枝状聚合物支架作为一种高效的纳米载体,用于递送FNA并对活细胞中的生物分子进行原位监测。分别选择一种组氨酸依赖性DNA酶和一种抗ATP适体作为模型FNA来制备FNA树枝状聚合物。嵌入FNA的DNA树枝状聚合物在细胞环境中保持了DNA酶的催化活性或适体对ATP的识别功能,灵敏度和特异性没有变化。此外,这些DNA树枝状纳米载体表现出优异的生物相容性、高细胞内递送效率以及在细胞环境中的足够稳定性。这种FNA树枝状纳米载体可能在生物医学诊断和治疗中找到广泛的应用。