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《用于肝脏的纳米颗粒基因传递载体的发展:30 年来的经验教训》。

"Evolving nanoparticle gene delivery vectors for the liver: What has been learned in 30 years".

机构信息

Division of Medicinal and Natural Products Chemistry, College of Pharmacy, University of Iowa, Iowa City, IA 52242,USA.

Division of Medicinal and Natural Products Chemistry, College of Pharmacy, University of Iowa, Iowa City, IA 52242,USA.

出版信息

J Control Release. 2015 Dec 10;219:457-470. doi: 10.1016/j.jconrel.2015.10.008. Epub 2015 Oct 9.

DOI:10.1016/j.jconrel.2015.10.008
PMID:26439664
Abstract

Nonviral gene delivery to the liver has been under evolution for nearly 30years. Early demonstrations established relatively simple nonviral vectors could mediate gene expression in HepG2 cells which understandably led to speculation that these same vectors would be immediately successful at transfecting primary hepatocytes in vivo. However, it was soon recognized that the properties of a nonviral vector resulting in efficient transfection in vitro were uncorrelated with those needed to achieve efficient nonviral transfection in vivo. The discovery of major barriers to liver gene transfer has set the field on a course to design biocompatible vectors that demonstrate increased DNA stability in the circulation with correlating expression in liver. The improved understanding of what limits nonviral vector gene transfer efficiency in vivo has resulted in more sophisticated, low molecular weight vectors that allow systematic optimization of nanoparticle size, charge and ligand presentation. While the field has evolved DNA nanoparticles that are stable in the circulation, target hepatocytes, and deliver DNA to the cytosol, breaching the nucleus remains the last major barrier to a fully successful nonviral gene transfer system for the liver. The lessons learned along the way are fundamentally important to the design of all systemically delivered nanoparticle nonviral gene delivery systems.

摘要

近 30 年来,非病毒基因递送至肝脏一直在不断发展。早期的研究表明,相对简单的非病毒载体可以介导 HepG2 细胞中的基因表达,这使得人们推测这些相同的载体将立即成功地转染体内原代肝细胞。然而,人们很快认识到,导致体外高效转染的非病毒载体的性质与体内实现高效非病毒转染所需的性质无关。发现肝脏基因转移的主要障碍使该领域致力于设计生物相容性载体,这些载体在循环中表现出更高的 DNA 稳定性,并在肝脏中具有相应的表达。对体内非病毒载体基因转移效率的限制因素有了更深入的了解,从而产生了更复杂的、低分子量的载体,可以系统地优化纳米颗粒的大小、电荷和配体呈现。虽然该领域已经开发出在循环中稳定、靶向肝细胞并将 DNA 递送至细胞质的 DNA 纳米颗粒,但突破核仍然是肝脏非病毒基因传递系统完全成功的最后一个主要障碍。一路走来所学到的经验教训对于所有系统递送的纳米颗粒非病毒基因传递系统的设计都具有重要意义。

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J Control Release. 2015 Dec 10;219:457-470. doi: 10.1016/j.jconrel.2015.10.008. Epub 2015 Oct 9.
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