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用于血管疾病的基因疗法及其他生物疗法。

Gene and other biological therapies for vascular diseases.

作者信息

Stephan D, Nabel E G

机构信息

Service d'Hypertension et des Maladies Vasculaires, Faculté de Médecine, CHRU Strasbourg, France.

出版信息

Fundam Clin Pharmacol. 1997;11(2):97-110. doi: 10.1111/j.1472-8206.1997.tb00175.x.

Abstract

Gene transfer and antisense therapy offer novel approaches to the study and treatment of vascular diseases. The localized nature of vascular diseases like restenosis has made the application of genetic material an attractive therapeutic option. Viral and nonviral vectors have been developed to facilitate the entry of foreign DNA or RNA into cells. Vector improvement and production, demonstration of vector safety and demonstration of therapeutic efficacy are among the main present challenges. Various strategies have already been shown to be successful in preventing restenosis in animal models and include: the transfer of the herpes simplex virus thymidine kinase associated with ganciclovir: transfection of the cell cycle regulatory genes encoding for the active form of retinoblastoma gene product (Rb) or the cyclin-dependent kinase inhibitor p21, and antisense therapy. Therapeutic angiogenesis using gene transfer is a new strategy for the treatment of severe limb ischemia. Transfection of DNA encoding for the vascular endothelial growth factor has resulted in increasing collateral flow in animal models of peripheral ischemia. This approach is currently being investigated in a clinical trial in patients with distal ischemia. Other potential targets for genetic treatment in cardiovascular diseases include thrombosis, extracellular matrix synthesis and lipid metabolism.

摘要

基因转移和反义疗法为血管疾病的研究和治疗提供了新方法。像再狭窄这样的血管疾病的局部性使得遗传物质的应用成为一种有吸引力的治疗选择。已经开发出病毒和非病毒载体以促进外源DNA或RNA进入细胞。载体改进与生产、载体安全性证明以及治疗效果证明是当前主要的挑战。已经证明各种策略在动物模型中预防再狭窄是成功的,包括:与更昔洛韦相关的单纯疱疹病毒胸苷激酶的转移;编码视网膜母细胞瘤基因产物(Rb)活性形式或细胞周期蛋白依赖性激酶抑制剂p21的细胞周期调节基因的转染,以及反义疗法。利用基因转移进行治疗性血管生成是治疗严重肢体缺血的一种新策略。编码血管内皮生长因子的DNA转染已导致外周缺血动物模型中的侧支血流增加。这种方法目前正在远端缺血患者的临床试验中进行研究。心血管疾病基因治疗的其他潜在靶点包括血栓形成、细胞外基质合成和脂质代谢。

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