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소아마비 바이러스로부터 유래된 RPS-Vax System에 Protein Transduction Domain을 도입하여 개발한 CTL-유도용 HCV 백신
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  • 소아마비 바이러스로부터 유래된 RPS-Vax System에 Protein Transduction Domain을 도입하여 개발한 CTL-유도용 HCV 백신
저자명
허진,윤철희,배용수,Hur. Jin,Yoon. Cheol-Hee,Bae. Yong-Soo
간행물명
Journal of bacteriology and virology : JBV
권/호정보
2004년|34권 4호|pp.363-371 (9 pages)
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대한미생물학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

We have reported RPS-Vax system by introducing multiple cloning site (MCS) and 3C-protease cutting site at the N-terminal end of the poliovirus Sabin 1 cDNA. Potential vaccine genes can be easily introduced into recombinant polioviral genome and expressed during the viral replication as a part of virus polyprotein and subsequently processed from the mature viral protein by the poliovirus-specific 3C-protease. However, these poliovirus vector-mediated chimeric viral vaccine was not efficient to induce the cell-mediated immunity because of its rapid cytolytic capacity. In order to make CTL-inducing vaccine vector, we integrated a protein transduction domain (PTD) into the pRPS-Vax vector system right ahead of the MCS, named RPS-Vax/PTD. We have incorporated the HCV core (N-terminal 100aa) antigen into the MCS of pRPSvax-PTD vector, followed by production of chimeric virus, named RPSvax-PTD/HCVc. The chimeric virus was genetically stable during the serial passages. Replication capacity of the RPSvax-PTD/HCVc was $1{sim}2;log$ lower than that of RPS-Vax control virus. These chimeric virus was very efficient to inducing antigen-specific IgG2a in the immunized mice, implying that the recombinant virus has a capacity to induce HCV-specific Th1 type immunity in the immunized animals or humans.