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首页> 外文期刊>Medical Microbiology and Immunology >Inducing protective antibodies against ring-infected erythrocyte surface peptide antigen of Plasmodium falciparum using immunostimulating complex (ISCOMs) delivery.
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Inducing protective antibodies against ring-infected erythrocyte surface peptide antigen of Plasmodium falciparum using immunostimulating complex (ISCOMs) delivery.

机译:使用免疫刺激复合物(ISCOM)递送诱导针对恶性疟原虫环感染的红细胞表面肽抗原的保护性抗体。

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摘要

In the present study, synthetic peptides (EENVEHDA)2 [(oc)2] and (DDEHVEEPTVA)2 [(un)2] of ring-infected erythrocyte surface antigen (RESA) of Plasmodlium filciparum were linked with palmitic acid and entrapped in immunostimulating complexes (ISCOMs). The immunogenicity of the peptide(s) and mixture of peptides were studied in mice with different genetic background. Peptide(s) entrapped in ISCOMs using a low-dose immunization strategy generated high-titer as well as high-affinity antibodies. Interestingly, no genetic restriction of the immune response was observed in any of the strains studied. The IgG subclass pattern with the peptide(s) showed predominately IgG2a/2b isotypes, while with the mixed peptide formulation, (un)2-specific IgG isotype pattern showed induction of both IgG1 and IgG2a/2b isotypes. These cytophilic antibodies inhibited the ring as well as schizont stage and total parasite growth during in vitro merozoite reinvasion inhibition study. In the mixed peptide preparation, the same pattern of immune response was achieved as that of individual peptide(s) using ISCOMs delivery. Therefore, the entrapment of otherwise poorly immunogenic synthetic peptides in ISCOMs resulted in increased immunogenicity followed by strong secondary response and can be adopted for developing subunit immunogen formulation against malarial parasite.
机译:在本研究中,恶性疟原虫环感染的红细胞表面抗原(RESA)的合成肽(EENVEHDA)2 [(oc)2]和(DDEHVEEPTVA)2 [(un)2]与棕榈酸连接,并被包埋在免疫刺激中综合体(ISCOM)。在具有不同遗传背景的小鼠中研究了肽和肽混合物的免疫原性。使用低剂量免疫策略捕获在ISCOM中的肽可产生高滴度和高亲和力抗体。有趣的是,在所研究的任何菌株中均未观察到免疫应答的遗传限制。具有一种或多种肽的IgG亚类模式主要显示为IgG2a / 2b同种型,而对于混合肽制剂,(非)2-特异性IgG同种型模式显示出对IgG1和IgG2a / 2b同种型的诱导。这些亲细胞抗体在体外裂殖子再入侵抑制研究中抑制了环以及裂殖体阶段和总寄生虫的生长。在混合肽制剂中,使用ISCOM递送可实现与单个肽相同的免疫反应模式。因此,将原本免疫原性差的合成肽截留在ISCOM中会导致免疫原性增强,继之以强烈的继发反应,可用于开发抗疟原虫的亚基免疫原制剂。

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