Ohara N, Koyama H, Miyata T, Hamada H, Miyatake S I, Akimoto M, Shigematsu H
Division of Vascular Surgery, Department of Surgery, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Gene Ther. 2001 Jun;8(11):837-45. doi: 10.1038/sj.gt.3301475.
Adenovirus-mediated ex vivo gene transfer of basic fibroblast growth factor (bFGF), a new strategy for the treatment of chronic vascular occlusive disease, was examined in a rabbit model of hind limb ischemia. The left femoral artery was completely excised to induce an ischemic state in the hind limb of male rabbits. Simultaneously, a skin section was resected from the wound, and host fibroblasts were cultured. The cultured fibroblasts were infected with adenovirus vector containing modified human bFGF cDNA with the secretory signal sequence (AxCAMAssbFGF) or LacZ cDNA (AxCALacZ). At 21 days after femoral artery excision, the gene-transduced fibroblasts were administered through the left internal iliac artery. The fibroblasts significantly accumulated in the ischemic hind limb, and the AxCAMAssbFGF-treated cells secreted bFGF for less than 14 days without elevation of systemic bFGF level. At 28 days after cell administration, calf blood pressure ratio, angiographic score, capillary density of muscle tissue and blood flow of the left internal iliac artery were determined, and animals with AxCAMAssbFGF-treated cells showed significantly greater development of collateral vessels, as compared with those with AxCALacZ-treated cells. These findings suggest that adenovirus-mediated ex vivo gene transfer of bFGF was effective for improvement of chronic limb ischemia.
在兔后肢缺血模型中,研究了腺病毒介导的碱性成纤维细胞生长因子(bFGF)体外基因转移,这是一种治疗慢性血管闭塞性疾病的新策略。切除雄性兔的左股动脉以诱导后肢缺血状态。同时,从伤口切除一块皮肤组织,培养宿主成纤维细胞。用含有带有分泌信号序列的修饰人bFGF cDNA(AxCAMAssbFGF)或LacZ cDNA(AxCALacZ)的腺病毒载体感染培养的成纤维细胞。在股动脉切除后21天,通过左髂内动脉给予基因转导的成纤维细胞。成纤维细胞在缺血后肢中显著积聚,并且用AxCAMAssbFGF处理的细胞分泌bFGF少于14天,而全身bFGF水平没有升高。在细胞给药后28天,测定小腿血压比值、血管造影评分、肌肉组织的毛细血管密度和左髂内动脉的血流量,与用AxCALacZ处理的细胞的动物相比,用AxCAMAssbFGF处理的细胞的动物显示出明显更大的侧支血管发育。这些发现表明,腺病毒介导的bFGF体外基因转移对改善慢性肢体缺血有效。