Antigenic and immunogenic properties of synthetic peptide-based T-cell determinant polymers.

D C Jackson, C Fitzmaurice, R C Sheppard, J McMurray, L E Brown
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Abstract

Presentation of T-cell determinants to the immune system in multimeric form has clear advantages and the production of synthetic peptide-based polymers using the solubilisable KS resin described by Goddard et al. [1] provides a method of assembling such polymers and also offers the means for making heteropolymers. The present study investigates the potential of polymeric synthetic peptide constructs in eliciting proliferative T-cell responses to determinants of the influenza virus hemagglutinin. The induction of vigorous CD4+ T-cell immunity was achieved with a polymeric construct containing two different T-cell determinants. The data presented here also highlight the fact that distancing the determinant from the support backbone with appropriate amino acid residues is an important consideration for the success of these polymeric immunogens. This approach may be readily applied in other systems where induction of helper T-cell responses are required.

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合成肽基t细胞决定聚合物的抗原性和免疫原性。
将t细胞决定因子以多聚体形式呈现给免疫系统具有明显的优势,使用Goddard等人描述的可溶KS树脂生产合成肽基聚合物[1]提供了一种组装此类聚合物的方法,也提供了制造异聚物的手段。本研究探讨了聚合合成肽结构在引发对流感病毒血凝素决定因子的增殖性t细胞反应中的潜力。通过含有两种不同t细胞决定因子的聚合构建体,实现了强烈的CD4+ t细胞免疫诱导。这里提出的数据也强调了这样一个事实,即用适当的氨基酸残基将决定因子与支持主链隔开是这些聚合免疫原成功的重要考虑因素。这种方法可以很容易地应用于需要诱导辅助性t细胞反应的其他系统。
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