Roks A J M, Henning R H, Buikema H, Pinto Y M, Kraak M J J, Tio R A, de Zeeuw D, Haisma H J, Wilschut J, van Gilst W H
Department of Clinical Pharmacology, Groningen University Institute for Drug Exploration (GUIDE), University of Groningen, The Netherlands.
Gene Ther. 2002 Jan;9(2):95-101. doi: 10.1038/sj.gt.3301632.
Previously, we demonstrated that recombinant Semliki Forest virus (SFV) vector rapidly and selectively transfers genes into cultured vascular smooth muscle cells (VSMC), leaving endothelial cells (EC) unaffected. From this, we hypothesized that recombinant SFV in vivo only transfers genes into the media of balloon-injured but not intact vessel, that gene expression in VSMC is fast, and that the specificity of SFV for VSMC is caused by specific binding sites. To address these hypotheses, we studied the time course of in vivo SFV-LacZ and Ad-LacZ expression in balloon-injured rat aorta. In addition, the fusion characteristics of fluorescent pyrene-labeled SFV were explored in cultured VSMC and EC. In intact aorta, no LacZ expression was found in the intima or media at 24 h. In contrast, in denuded aorta, LacZ expression was detected in as early as 12 h after incubation. LacZ expression was predominantly present in the media. Ad-LacZ expression started after 12 h, but was predominantly present in the adventitia. Ad-LacZ expression in the media started after 72 h. In vitro transfection with SFV showed that fusion was higher and, moreover, saturable in VSMC as compared with EC, indicating the presence of specific SFV binding sites on VSMC, but not EC. From this we conclude that in vivo selectivity of SFV in balloon-injured vessels is based on the removal of the endothelium, which results in accessibility of VSMC in the media that carry specific binding sites for the SFV vector.
此前,我们证明重组塞姆利基森林病毒(SFV)载体能快速且选择性地将基因导入培养的血管平滑肌细胞(VSMC),而内皮细胞(EC)不受影响。据此,我们推测体内重组SFV仅将基因导入球囊损伤而非完整血管的中膜,VSMC中的基因表达迅速,且SFV对VSMC的特异性是由特定结合位点引起的。为验证这些推测,我们研究了球囊损伤大鼠主动脉中体内SFV-LacZ和腺病毒-LacZ(Ad-LacZ)表达的时间进程。此外,还在培养的VSMC和EC中探索了荧光芘标记的SFV的融合特性。在完整主动脉中,24小时时在内膜或中膜未发现LacZ表达。相反,在去内皮主动脉中,孵育后12小时就检测到了LacZ表达。LacZ表达主要出现在中膜。Ad-LacZ表达在12小时后开始,但主要出现在外膜。Ad-LacZ在中膜的表达在72小时后开始。体外转染SFV显示,与EC相比,VSMC中的融合更高且具有饱和性,这表明VSMC上存在特定的SFV结合位点,而EC上没有。由此我们得出结论,SFV在球囊损伤血管中的体内选择性是基于内皮的去除,这使得中膜中携带SFV载体特异性结合位点的VSMC能够被接触到。