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长期 VEGF-A 表达可促进骨骼肌中异常血管生成和纤维化。

Long-term VEGF-A expression promotes aberrant angiogenesis and fibrosis in skeletal muscle.

机构信息

Department of Biotechnology and Molecular Medicine, A. I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, Kuopio, Finland.

出版信息

Gene Ther. 2011 Dec;18(12):1166-72. doi: 10.1038/gt.2011.66. Epub 2011 May 12.

Abstract

Vascular endothelial growth factor A (VEGF-A) induces strong angiogenesis and it has been widely used in proangiogenic gene therapy studies. However, little is known about long-term effects of VEGF-A expression in skeletal muscle. Here the long- term effects of adeno-associated virus (AAV) encoding human VEGF-A(165) (AAV-VEGF-A) gene transfer in normal and ischemic rabbit hindlimb skeletal muscles were studied. AAV-LacZ was used as a control. In one-year follow-up, a remarkable increase in skeletal muscle perfusion compared with AAV-LacZ was observed measured with Doppler and contrast pulse sequence ultrasound. Angiogenesis was also seen in histology as enlarged and sprouting capillaries. In addition to favorable angiogenic effects, aberrant vascular structures with CD31 positive cell layers were seen inside muscle fibers after AAV-VEGF-A gene transfer. Importantly, we found increased amounts of extracellular matrix with a high number of macrophages and fibrosis in AAV-VEGF-A transduced muscles. No changes in skeletal muscle morphology were detected in AAV-LacZ transduced muscles. Our results indicate that local AAV-VEGF-A gene transfer efficiently promotes long-term angiogenesis in large animal model. However, non-regulated expression of VEGF-A causes unfavorable changes in muscle morphology, which suggests the need for regulation of the transgene expression in long-term AAV-mediated VEGF-A gene transfer applications.

摘要

血管内皮生长因子 A(VEGF-A)可诱导强烈的血管生成,已广泛应用于促血管生成基因治疗研究中。然而,人们对 VEGF-A 在骨骼肌中的长期表达效应知之甚少。本研究旨在探讨腺相关病毒(AAV)编码人 VEGF-A(165)(AAV-VEGF-A)基因转移在正常和缺血性兔后肢骨骼肌中的长期效应。AAV-LacZ 被用作对照。在为期一年的随访中,与 AAV-LacZ 相比,多普勒和对比脉冲序列超声测量显示骨骼肌灌注明显增加。组织学也观察到血管生成,表现为毛细血管增大和发芽。除了有利的血管生成效应外,在 AAV-VEGF-A 基因转移后,肌肉纤维内可见具有 CD31 阳性细胞层的异常血管结构。重要的是,我们发现 AAV-VEGF-A 转导的肌肉中细胞外基质增加,巨噬细胞和纤维化数量增多。在 AAV-LacZ 转导的肌肉中未检测到骨骼肌形态的变化。我们的研究结果表明,局部 AAV-VEGF-A 基因转移可有效促进大动物模型的长期血管生成。然而,VEGF-A 的非调节表达导致肌肉形态的不利变化,这表明在长期 AAV 介导的 VEGF-A 基因转移应用中需要调节转基因的表达。

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