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微生物核糖体疫苗。

Microbial ribosomal vaccines.

作者信息

Gregory R L

出版信息

Rev Infect Dis. 1986 Mar-Apr;8(2):208-17. doi: 10.1093/clinids/8.2.208.

Abstract

Ribosomal vaccines have been prepared from several different bacterial, fungal, and protozoan microorganisms. Most of these preparations offer a higher degree of protection than do vaccines made from the homologous whole cells, but the mode of protection is controversial. All of the reported ribosomal vaccines are contaminated with cell surface determinants. Antisera raised to ribosomal preparations are directed to innate ribosomal components as well as to surface antigens. Several hypotheses exist for the reported protection from disease: the cell surface contaminants serve as the protective moieties; ribosomes act as potent adjuvants for contaminating cell surface determinants; ribosomes innately contain antigenic determinants that cross-react with cell surface antigens; recently translated cell surface polypeptides are still attached to the ribosomal RNA in the ribosomes; ribosomes migrate from the cytoplasm of the microbe to the periphery of the cell, and ribosomal antigens are exposed on the cell surface; or ribosomes contain messenger RNA and produce microbial cell surface polypeptides in immunized individuals. A short description of the biochemical, biophysical, and structural characteristics of prokaryotic and eukaryotic ribosomes is presented, followed by a discussion of the ability of various ribosomal vaccines to protect against infectious agents.

摘要

核糖体疫苗已从几种不同的细菌、真菌和原生动物微生物中制备出来。这些制剂中的大多数比同源全细胞制成的疫苗提供更高程度的保护,但保护方式存在争议。所有报道的核糖体疫苗都被细胞表面决定簇污染。针对核糖体制剂产生的抗血清既针对天然核糖体成分,也针对表面抗原。对于报道的预防疾病的机制存在几种假设:细胞表面污染物作为保护性部分;核糖体作为污染细胞表面决定簇的有效佐剂;核糖体天然含有与细胞表面抗原发生交叉反应的抗原决定簇;最近翻译的细胞表面多肽仍附着在核糖体中的核糖体RNA上;核糖体从微生物的细胞质迁移到细胞外围,核糖体抗原暴露在细胞表面;或者核糖体含有信使RNA并在免疫个体中产生微生物细胞表面多肽。本文介绍了原核和真核核糖体的生化、生物物理和结构特征,随后讨论了各种核糖体疫苗预防感染因子的能力。

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