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基于HBcAg(18 - 27)CTL表位的治疗性多肽可在HLA - A2转基因小鼠中诱导抗原特异性CD(8)(+)CTL介导的细胞毒性。

Therapeutic polypeptides based on HBcAg(18-27) CTL epitope can induce antigen-specific CD(8)(+) CTL-mediated cytotoxicity in HLA-A2 transgenic mice.

作者信息

Shi Tong-Dong, Wu Yu-Zhang, Jia Zheng-Cai, Zhou Wei, Zou Li-Yun

机构信息

Institute of Immunology, Third Military Medical University, 30 Gaotanyan Street, Chongqing 400038, China.

出版信息

World J Gastroenterol. 2004 Apr 15;10(8):1222-6. doi: 10.3748/wjg.v10.i8.1222.

Abstract

AIM

To explore how to trigger an HLAI-restricted CD8(+) T cell response to exogenously synthesized polypeptides in vivo.

METHODS

Three mimetic therapeutic polypeptides based on the immunodominant CTL epitope of HBcAg, the B- epitope of HBV PreS(2) region and a common T helper sequence of tetanus toxoid were designed and synthesized with Merrifield's solid-phase peptide synthesis method. Their immunological properties of inducing T( H1) polarization, CD8(+) HBV-specific CTL expansion and CD8(+) T cell mediated cytotoxicity were investigated in HLA-A2 transgenic mice.

RESULTS

Results demonstrated that the mimetic polypeptides comprised of the immunodominant CTL, B-, and T helper epitopes could trigger specifically and effectively vigorous CD8(+) HBV-specific CTL-mediated cytotoxicity and T(H1) polarization of T cells in HLA-A2 transgenic mice.

CONCLUSION

A designed universal T helper plus B-epitopes with short and flexible linkers could dramatically improve the immunogenicity of CTL epitopes in vivo. And that the mimetic therapeutic peptides based on the reasonable match of the above CTL, B- and T helper epitopes could be a promising therapeutic peptide vaccine candidate against HBV infection.

摘要

目的

探讨如何在体内触发针对外源性合成多肽的HLA I类限制性CD8(+) T细胞应答。

方法

采用Merrifield固相肽合成法设计并合成了三种模拟治疗性多肽,分别基于乙肝核心抗原(HBcAg)的免疫显性CTL表位、乙肝病毒前S(2)区的B表位以及破伤风类毒素的一个常见T辅助序列。在HLA - A2转基因小鼠中研究它们诱导T(H1)极化、CD8(+)乙肝特异性CTL扩增以及CD8(+) T细胞介导的细胞毒性的免疫学特性。

结果

结果表明,由免疫显性CTL、B表位和T辅助表位组成的模拟多肽能够在HLA - A2转基因小鼠中特异性且有效地触发强烈的CD8(+)乙肝特异性CTL介导的细胞毒性以及T细胞的T(H1)极化。

结论

设计的带有短且灵活连接子的通用T辅助表位加B表位可显著提高体内CTL表位的免疫原性。并且基于上述CTL、B表位和T辅助表位合理匹配的模拟治疗性肽可能是一种有前景的抗乙肝病毒感染的治疗性肽疫苗候选物。

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