Highly immunogenic artificial complexes based on synthetic immunopotentiating polyions (artificial antigens and vaccines).

R V Petrov, R M Khaitov
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Abstract

An interpretive review of the theoretical and experimental data on the immunogenetic concept that "there are no strong and weak antigens, there are high and low responder genotypes," developed and upheld by the authors is presented. To achieve phenotypic correction (finding ways of turning genetically low responder individuals into high responder ones) the authors have developed complex antigens--artificial macromolecular complexes containing both the required antigenic determinants and adjuvant structures. Synthetic nonnatural carbohydrates and heterochain polyions with controlled structure (PAA, PVP, polyconidine quarternary salts) were shown to act as immunopotentiators, substituting the helper signal of T-cells. The authors' data confirm this immunogenetic principle for developing highly immunogenic preparations, prototypes of future vaccines.

基于合成免疫增强多离子的高免疫原性人工复合物(人工抗原和疫苗)。
本文对作者提出并坚持的免疫遗传学概念“没有强抗原和弱抗原,只有高应答基因型和低应答基因型”的理论和实验数据进行了解释性回顾。为了实现表型校正(找到将基因低应答个体转变为高应答个体的方法),作者开发了复杂抗原——人工大分子复合物,包含所需的抗原决定因子和佐剂结构。合成的非天然碳水化合物和具有控制结构的杂链多离子(PAA, PVP,多聚苯乙烯季盐)被证明可以作为免疫增强剂,替代t细胞的辅助信号。作者的数据证实了这种用于开发高免疫原性制剂和未来疫苗原型的免疫遗传学原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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