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用于血管系统的非病毒基因转移策略。

Nonviral gene transfer strategies for the vasculature.

作者信息

Young Jennifer L, Dean David A

机构信息

Division of Pulmonary and Critical Care Medicine, Northwestern University Medical School, Chicago, IL 60611, USA.

出版信息

Microcirculation. 2002 Jan;9(1):35-49. doi: 10.1038/sj/mn/7800120.

Abstract

Major attention has been focused on the development of gene therapy approaches for the treatment of vascular diseases. In this review, we focus on an alternative use of gene therapy: the use of genetic means to study vascular cell biology and physiology. Both viral and nonviral gene transfer strategies have limitations, but because of the overwhelming inflammatory responses associated with the use of viral vectors, nonviral gene transfer methods are likely to be used more abundantly for future applications in the vasculature. Researchers have made great strides in the advancement of gene delivery to the vasculature in vivo. However, the efficiency of gene transfer seen with most nonviral approaches has been exceedingly low. We discuss how to circumvent and take advantage of a number of the barriers that limit efficient gene delivery to the vasculature to achieve high-level gene expression in appropriate cell types within the vessel wall. With such levels of expression, gene transfer offers the ability to alter pathways at the molecular level by genetically modulating the activity of a gene product, thus obviating the need to rely on pharmacological agents and their foreseen and unforeseen side effects. This genetic ability to alter distinct gene products within a signaling or biosynthetic pathway or to alter structural interactions within and between cells is extremely useful and technologically possible today. Hopefully, with the availability of these tools, new advances in cardiovascular physiology will emerge.

摘要

人们主要关注用于治疗血管疾病的基因治疗方法的发展。在本综述中,我们关注基因治疗的另一种用途:利用遗传学手段研究血管细胞生物学和生理学。病毒和非病毒基因转移策略都有局限性,但由于使用病毒载体存在强烈的炎症反应,非病毒基因转移方法在未来血管系统应用中可能会更广泛地使用。研究人员在体内将基因递送至血管系统方面取得了很大进展。然而,大多数非病毒方法的基因转移效率一直极低。我们讨论如何规避和利用限制有效基因递送至血管系统的诸多障碍,以在血管壁内的适当细胞类型中实现高水平的基因表达。有了这样的表达水平,基因转移能够通过基因调控基因产物的活性在分子水平改变信号通路,从而无需依赖药理试剂及其可预见和不可预见的副作用。如今,这种在信号或生物合成途径中改变不同基因产物或改变细胞内及细胞间结构相互作用的遗传能力极其有用且在技术上可行。有望借助这些工具,心血管生理学将取得新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6db/4403639/83451b96221b/nihms48129f1.jpg

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