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Induction of Cell-Mediated Immunity against Mycobacterium tuberculosis Using DNA Vaccines Encoding Cytotoxic and Helper T-Cell Epitopes of the 38-Kilodalton Protein

机译:使用编码38 Kilodalton蛋白的细胞毒性和辅助T细胞表位的DNA疫苗诱导针对结核分枝杆菌的细胞介导的免疫

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摘要

Cell-mediated immune responses are crucial in the protection against tuberculosis. In this study, we constructed DNA vaccines encoding cytotoxic T lymphocytes (CTL) and T helper cell (Th) epitopes of the 38-kDa lipoglycoprotein of Mycobacterium tuberculosis and analyzed and compared their immunogenicities with that of pXJ38, a DNA vaccine encoding the entire 38-kDa protein (X. Zhu, N. Venkataprasad, H. S. Thangaraj, M. Hill, M. Singh, J. Ivanyi, and H. M. Vordermeier, J. Immunol. 158:5921–5926, 1997). Plasmid DNAs encoding a CTL epitope, P3 (pP3), a Th epitope (vTh), or both the Th and the P3 epitopes (pThP3) were prepared and tested in C57BL6/J (H-2b) mice. Our results confirmed that DNA immunization with pXJ38 induces strong CD8+ CTL and Th1 responses (high gamma interferon [IFN-γ], low interleukin-4 [IL-4]). Coadministration of plasmid DNAs encoding a Th epitope with those encoding a CTL epitope (vTh+pP3) elicited both antigen-specific CD8+ CTL and Th1 responses. High levels of IFN-γ were secreted by spleen cells from all plasmid DNA-vaccinated mice after in vitro stimulation with the recombinant 38-kDa protein. Small or undetectable amounts of IL-4 were observed, which indicates the induction of a Th1-like response. Multiple-epitope vaccination by vTh+pP3 or pThP3 resulted in a broader Th1 response to peptide or epitopes than the single-epitope plasmid DNAs. Antigen-specific immunoglobulin G2a was only detected in sera from mice immunized with the plasmid pXJ38, and not in mice immunized with the epitope-based DNA vaccines. Thus, the absence of an antibody response after immunization with epitope plasmid DNAs and their ability to trigger only a specific cellular immune response may prove to be important advantages for a vaccine against tuberculosis.
机译:细胞介导的免疫反应对于预防结核病至关重要。在这项研究中,我们构建了编码结核分枝杆菌38 kDa脂糖蛋白的细胞毒性T淋巴细胞(CTL)和T辅助细胞(Th)表位的DNA疫苗,并将其免疫原性与pXJ38进行了比较,pXJ38是一种编码整个38 -kDa蛋白(X. Zhu,N。Venkataprasad,HS Thangaraj,M。Hill,M。Singh,J。Ivanyi和HM Vordermeier,J。Immunol。158:5921-5926,1997)。制备了编码CTL表位,P3(pP3),Th表位(vTh)或Th和P3表位(pThP3)的质粒DNA,并在C57BL6 / J(H-2b)小鼠中进行了测试。我们的结果证实,用pXJ38进行DNA免疫可诱导强烈的CD8 + CTL和Th1反应(高γ干扰素[IFN-γ],低白介素4 [IL-4])。编码Th表位的质粒DNA与编码CTL表位的质粒DNA(vTh + pP3)并用会引起抗原特异性CD8 + CTL和Th1应答。在用重组38-kDa蛋白体外刺激后,所有质粒DNA疫苗接种小鼠的脾细胞分泌高水平的IFN-γ。观察到少量或不可检测的IL-4,这表明诱导了类似Th1的反应。 vTh + pP3或pThP3的多表位疫苗接种比单表位质粒DNA产生对肽或表位的更广泛的Th1反应。抗原特异性免疫球蛋白G2a仅在用质粒pXJ38免疫的小鼠的血清中检测到,而在用基于表位的DNA疫苗免疫的小鼠中未检测到。因此,用表位质粒DNA免疫后不存在抗体应答,其仅触发特定细胞免疫应答的能力可能被证明是抗结核疫苗的重要优势。

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