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一种用于构建免疫原性缀合物的棕榈酰尾序列寡肽载体。

A palmitoyl-tailed sequential oligopeptide carrier for engineering immunogenic conjugates.

作者信息

Kargakis Michael, Zevgiti Stella, Krikorian Dimitrios, Sakarellos-Daitsiotis Maria, Sakarellos Constantinos, Panou-Pomonis Eugenia

机构信息

Department of Chemistry, Section of Organic Chemistry and Biochemistry, University of Ioannina, 45110 Ioannina, Greece.

出版信息

Vaccine. 2007 Sep 17;25(37-38):6708-12. doi: 10.1016/j.vaccine.2007.07.007. Epub 2007 Jul 26.

Abstract

The main guideline in designing effective immunogens as vaccine candidates capable of eliciting potent and specific immune responses is to combine B/T cell epitopes and adjuvants as immunostimulators on the same carrier that links the major histocompatibility complex with T cell receptors. Aiming at contributing to the development of carriers for human usage a helicoid type sequential oligopeptide carrier, SOC(n)-II, formed by the repeating tetrapeptide unit (Aib-Lys-Aib-Gly)(n), n=2-7, elongated from the amino-terminus by the palmitoyl group, known for its adjuvanticity, is now presented. The main B cell epitope, PPGMRPP, of the Sm autoantigen against which the majority of antibodies in patients with systemic lupus erythematosus is directed, was coupled to the Lys-N(epsilon)H(2) groups of the carrier in four copies and the resulting conjugate Palm-SOC(4)-II-Sm(4) was subjected to animal immunizations without utilizing any adjuvant. The induced immune response was comparable with that produced when Ac-SOC(4)-II-Sm(4) was administered in animals following the conventional immunization protocol of complete/incomplete Freund's adjuvant. High titers of anti-Palm-SOC(4)-II-Sm(4) antibodies were generated, which recognize the priming immunogenic conjugate, as well as reconstituted Sm mimics but not the carrier alone. It is concluded that Palm-SOC(n)-II carrier is a valuable tool for engineering immunogens eliciting enhanced and specific humoral immune responses.

摘要

设计有效的免疫原作为能够引发强效特异性免疫反应的候选疫苗的主要指导原则是,将B/T细胞表位和作为免疫刺激剂的佐剂结合在同一载体上,该载体将主要组织相容性复合体与T细胞受体连接起来。为了促进人类使用载体的开发,现展示一种螺旋型序列寡肽载体,即SOC(n)-II,它由重复的四肽单元(Aib-Lys-Aib-Gly)(n)(n = 2 - 7)形成,从氨基末端通过棕榈酰基延长,因其佐剂活性而闻名。系统性红斑狼疮患者体内大多数抗体所针对的Sm自身抗原的主要B细胞表位PPGMRPP以四个拷贝与载体的Lys-N(ε)H₂基团偶联,所得偶联物Palm-SOC(4)-II-Sm(4)在不使用任何佐剂的情况下进行动物免疫。诱导的免疫反应与按照完全/不完全弗氏佐剂的常规免疫方案向动物施用Ac-SOC(4)-II-Sm(4)时产生的免疫反应相当。产生了高滴度的抗Palm-SOC(4)-II-Sm(4)抗体,这些抗体识别引发免疫的共轭物以及重组的Sm模拟物,但不识别单独的载体。结论是,Palm-SOC(n)-II载体是一种用于构建能引发增强的特异性体液免疫反应的免疫原的有价值工具。

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