Morral N, Parks R J, Zhou H, Langston C, Schiedner G, Quinones J, Graham F L, Kochanek S, Beaudet A L
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Hum Gene Ther. 1998 Dec 10;9(18):2709-16. doi: 10.1089/hum.1998.9.18-2709.
Optimal gene therapy for many disorders will require efficient transfer to cells in vivo, high-level and long-term expression, and tissue-specific regulation, all in the absence of significant toxicity or inflammatory responses. While recombinant adenoviral vectors are efficient for gene transfer to hepatocytes, their usefulness is limited by short duration of expression related, at least in part, to immune responses to viral proteins and by a low capacity for foreign DNA. A number of systems have been developed for producing adenoviral vectors devoid of all viral coding sequences. Using AdSTK109, a vector lacking all viral coding sequences and carrying the complete human alpha1-antitrypsin (hAAT) genomic DNA locus, we have demonstrated sustained expression for longer than 10 months in mice. Utilizing high doses of this vector for hepatic gene transfer in mice, we find that supraphysiological levels of hAAT can be achieved without hepatotoxicity.
对许多疾病而言,最佳的基因治疗需要在体内高效地将基因转移到细胞中,实现高水平的长期表达,并进行组织特异性调控,同时还要避免显著的毒性或炎症反应。虽然重组腺病毒载体能有效地将基因转移到肝细胞中,但其效用受到表达持续时间短的限制,这至少部分与对病毒蛋白的免疫反应有关,而且其容纳外源DNA的能力也较低。已经开发出了许多系统来生产不含所有病毒编码序列的腺病毒载体。使用AdSTK109这种缺乏所有病毒编码序列并携带完整人类α1-抗胰蛋白酶(hAAT)基因组DNA位点的载体,我们已在小鼠中证明其持续表达超过10个月。利用高剂量的这种载体对小鼠进行肝脏基因转移,我们发现可以实现超生理水平的hAAT表达而不会产生肝毒性。