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流体动力学基因递送技术在肝脏疾病研究中的改进与应用

Technical Improvement and Application of Hydrodynamic Gene Delivery in Study of Liver Diseases.

作者信息

Huang Mei, Sun Rui, Huang Qiang, Tian Zhigang

机构信息

Anhui Province Key Laboratory of Hepatopancreatobiliary Surgery, Department of General Surgery, Anhui Provincial Hospital Affiliated with Anhui Medical UniversityHefei, China.

Institute of Immunology, School of Life Sciences and Medical Center, University of Science and Technology of ChinaHefei, China.

出版信息

Front Pharmacol. 2017 Aug 30;8:591. doi: 10.3389/fphar.2017.00591. eCollection 2017.

Abstract

Development of an safe and efficient gene delivery method is indispensable for molecular biology research and the progress in the following gene therapy. Over the past few years, hydrodynamic gene delivery (HGD) with naked DNA has drawn increasing interest in both research and potential clinic applications due to its high efficiency and low risk in triggering immune responses and carcinogenesis in comparison to viral vectors. This method, involving intravenous injection (i.v.) of massive DNA in a short duration, gives a transient but high gene expression especially in the liver of small animals. In addition to DNA, it has also been shown to deliver other substance such as RNA, proteins, synthetic small compounds and even viruses . Given its ability to robustly mimic hepatitis B virus (HBV) production in liver, HGD has become a fundamental and important technology on HBV studies in our group and many other groups. Recently, there have been interesting reports about the applications and further improvement of this technology in other liver research. Here, we review the principle, safety, current application and development of hydrodynamic delivery in liver disease studies, and discuss its future prospects, clinical potential and challenges.

摘要

开发一种安全有效的基因递送方法对于分子生物学研究以及后续基因治疗的进展而言不可或缺。在过去几年中,采用裸DNA的流体动力学基因递送(HGD)因其与病毒载体相比具有高效性以及引发免疫反应和致癌作用的低风险性,在研究和潜在临床应用方面都引起了越来越多的关注。这种方法包括在短时间内静脉注射(i.v.)大量DNA,可产生短暂但高水平的基因表达,尤其是在小动物的肝脏中。除了DNA之外,它还被证明能够递送其他物质,如RNA、蛋白质、合成小分子化合物甚至病毒。鉴于其能够在肝脏中有力地模拟乙型肝炎病毒(HBV)的产生,HGD已成为我们小组以及许多其他小组在HBV研究中的一项基础且重要的技术。最近,有关于该技术在其他肝脏研究中的应用及进一步改进的有趣报道。在此,我们综述了流体动力学递送在肝脏疾病研究中的原理、安全性、当前应用及发展情况,并讨论其未来前景、临床潜力及挑战。

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