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首页> 外文期刊>Iranian Journal of Basic Medical Sciences >Incorporation of T-cell epitopes from tetanus and diphtheria toxoids into in-silico-designed hypoallergenic vaccine may enhance the protective immune response against allergens
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Incorporation of T-cell epitopes from tetanus and diphtheria toxoids into in-silico-designed hypoallergenic vaccine may enhance the protective immune response against allergens

机译:将T细胞和白喉类毒素的T细胞表位掺入硅设计中,可以增强对过敏原的保护性免疫应答

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Objective(s): New generation of allergy vaccines is capable of promoting the development of protective IgG and blocking the functionality of allergen-specific IgE. We incorporated universal and powerful T-cell epitopes from tetanus and diphtheria toxoids (TD epitope) into recombinant Che a 2, the well-known allergic profilin of Chenopodium album , to determine its immunological properties. Materials and Methods: The sequence and accordingly the structure of the recombinant Che a 2 was altered to generate a hypoallergenic variant (rChe a 2.rs). Moreover, TD epitope was incorporated to produce a novel vaccine that was nominated as rChe a 2.rssupT.D/sup. The effect of treatment with these variants was evaluated on the generation of allergen-specific IgG class, as well as lymphocyte proliferation in mice. Moreover, IgE-binding characteristics of the allergic patients’ sera were determined by ELISA and proliferation and cytokine production was measured in T-cells. Results: ELISA and dot blot revealed strong reduction of the IgE-reactivity of human sera to the variants of Che a 2 as compared to the wild-type molecule. Furthermore, Che a 2.rs and Che a 2.rssupT.D/sup induced much lower levels of IL5 and IL13 secretion from allergic patients’ PBMCs in comparison to wild-type Che a 2 protein. In mice, rChe a 2.rssupT.D/sup induced high titers of Che a 2-specific IgG antibody capable of blocking IgE-binding to rChe a 2 and induced lymphocyte proliferation more potently than rChe a 2.rs. Conclusion: Collectively, incorporation of T-cell epitopes of tetanus and diphtheria into hypoallergenic vaccines can dramatically enhance anti-allergic immune mechanisms, particularly in poor responders.
机译:目的:新一代过敏疫苗能够促进保护性IgG的发育并阻断过敏原特异性IgE的功能。我们将来自破伤风和白喉类毒素(TD表位)的通用和强大的T细胞表位纳入重组Che A 2,陈诺平型专辑的众所周知的过敏性泛素,以确定其免疫学特性。材料和方法:序列并因此改变重组CHE A 2的结构以产生低过敏性变体(RCHE a 2.RS)。此外,掺入Td表位以产生新的疫苗,该疫苗被提名为RCHE a 2.Rs t.d 。对这些变体的治疗的效果在过敏原特异性IgG类的产生以及小鼠中的淋巴细胞增殖中评价。此外,通过ELISA测定过敏患者血清的IgE结合特征,并在T细胞中测量细胞因子产生。结果:与野生型分子相比,ELISA和DOT印迹揭示了人血清对CHE A 2的变体的强烈降低了人血清的IgE反应性。此外,Che a 2.rs和Che a 2.rs t.d 与野生型Che a 2蛋白相比,从过敏患者的pbmcs诱导低于过敏性患者的PBMC水平的IL5和IL13分泌物。在小鼠中,RCHE a 2.rs t.d 诱导Che A 2特异性IgG抗体的高滴度,该抗体能够阻断IgE结合以使IgE结合诱导的淋巴细胞增殖比RCHE 2.RS更有效地。结论:集体,将破伤风和白喉肝脏掺入低过敏性疫苗的T细胞表位,可以显着增强抗过敏免疫机制,特别是在贫困受响应者中。

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