Basic Research
Copyright ©2005 Baishideng Publishing Group Inc. All rights reserved.
World J Gastroenterol. Jun 28, 2005; 11(24): 3686-3690
Published online Jun 28, 2005. doi: 10.3748/wjg.v11.i24.3686
Kinase domain insert containing receptor promotor controlled suicide gene system kills human umbilical vein endothelial cells
Zong-Hai Huang, Wen-Yu Yang, Qi Cheng, Jing-Long Yu, Zhou Li, Zong-Yan Tong, Hui-Juan Song, Xiao-Yan Che
Zong-Hai Huang, Wen-Yu Yang, Jing-Long Yu, Zhou Li, Zong-Yan Tong, Hui-Juan Song, Department of General Surgery, Zhujiang Hospital, First Military Medical University, Guangzhou 510282, Guangdong Province, China
Qi Cheng, Department of Ultrasonic Diagnosis, General Hospital of Guangzhou Military Command, Guangzhou 510010, Guangdong Province, China
Xiao-Yan Che, Central Laboratory, Zhujiang Hospital, First Military Medical University, Guangzhou 510282, Guangdong Province, China
Author contributions: All authors contributed equally to the work.
Correspondence to: Zong-Hai Huang, Department of General Surgery, Zhujiang Hospital, First Military Medical University, Guangzhou 510282, Guangdong Province, China. yangwenyugang@vip.sina.com
Telephone: +86-20-61643213
Received: February 6, 2004
Revised: February 8, 2004
Accepted: March 2, 2004
Published online: June 28, 2005
Abstract

AIM: To evaluate the killing effect of double suicide gene mediated by adenovirus and regulated under kinase domain insert containing receptor (KDR) promoter on human umbilical vein endothelial cells.

METHODS: By PCR technology, human KDR promoter gene, Escherichia coli (E. coli) cytosine deaminase (CD) gene and the herpes simple virus-thymidine kinase (TK) gene were cloned. Plasmid pKDR-CDglyTK was constructed with them. Then, a recombinant adenoviral plasmid pAdKDR-CDglyTK was constructed in a “two-step transformation protocol”. The newly constructed plasmids were transfected to 293 packaging cells to grow adenoviruses, which were further propagated and purified. Human umbilical vein endothelial cells (HUVEC) were infected with a different multiplicity of infection (MOI) of resultant recombinant adenovirus, the infection rate was measured with the aid of (GFP) expression. Infected cells were cultured in culture media containing different concentrations of (GCV) and/or 5-(FC), and the killing effects were measured.

RESULTS: Recombinant adenoviruses AdKDR-CDglyTK were successfully constructed, and they infected HUVEC cells efficiently. Our data indicated that the infection rate was relevant to MOI of recombinant adenoviruses. HUVEC cells infected with AdKDR-CDglyTK were highly sensitive to the prodrugs, their survival rate correlated to both the concentration of the prodrugs and the MOI of recombinant adenoviruses. Our data also indicated that the two prodrugs used in combination were much more effective on killing transgeneic cells than GCV or 5-FC used alone.

CONCLUSION: Prodrug/KDR-CDglyTK system is effective on killing HUVEC cells, its killing effect correlates to the concentration of prodrugs and recombinant adenovirus’ MOI. Combined use of the two prodrugs confers better killing effects on transgeneic cells.

Keywords: Suicide gene, Adenovirus