开发和评估用于诊断登革热病毒感染的多表位合成抗原。

IF 3 4区 医学 Q2 INFECTIOUS DISEASES Brazilian Journal of Infectious Diseases Pub Date : 2024-05-01 DOI:10.1016/j.bjid.2024.103746
Isis Botelho Nunes da Silva , Juliano de Moraes Rodrigues , Ramon Cid Gismonti Batista , Vivian dos Santos Gomes , Clarissa de Souza Chacon , Marcius da Silva Almeida , Talita Stelling de Araujo , Bianca Ortiz da Silva , Terezinha Marta Pereira Pinto Castiñeiras , Orlando da Costa Ferreira Junior , Fabiana Avila Carneiro , Monica Montero-Lomeli
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引用次数: 0

摘要

检测登革热病毒感染的免疫诊断试验遇到了与其他相关黄病毒交叉反应的挑战。我们的研究重点是开发一种为登革热免疫诊断量身定制的合成多表位抗原。选定的登革热表位涉及结构线性以及与寨卡病毒和黄热病病毒蛋白质组的相似性,这有助于对蛋白质的三维结构进行计算建模,最终设计出两种蛋白质:rDME-C 和 rDME-BR。这两种蛋白质都由七个表位和一个羧基末端 6 × -组氨酸标签组成,表位之间由 GPGPG 连接器隔开。最终蛋白质 rDME-C 和 rDME-BR 的分子量分别为 16.83 kDa 和 16.80 kDa,等电点均为 6.35。这两种蛋白质的区别在于其表位序列的来源,rDME-C 以参考登革热蛋白质组为基础,而 rDME-BR 则采用了 2008 年至 2019 年巴西流行的登革热基因型序列。PyMol 分析显示二级结构中的表位暴露。抗原以可溶形式成功表达,荧光实验表明其结构紊乱。在随后的测试中,使用针对登革热感染血清的间接Elisa方案对rDME-BR和rDME-C抗原进行了评估。抗原的最佳浓度被确定为:rDME-BR 为 10 µg/mL,rDME-C 为 30 µg/mL,血清稀释度为 1:50 至 1:100。两种抗原都能有效检测出登革热患者体内的 IgM 和 IgG 抗体,其中 rDME-BR 的灵敏度更高。我们的内部测试显示,rDME-C 和 rDEM-BR 抗原的灵敏度分别为 77.3 % 和 82.6 %,特异性分别为 89.4 % 和 71.4 %。与寨卡病毒感染小鼠的血清没有交叉反应,但与 COVID-19 血清样本有交叉反应。我们的研究结果凸显了合成生物学在制作登革热特异性多位点蛋白方面的实用性,并为精确临床诊断和监测对新出现的登革热疫苗的反应带来了希望。
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Development and assessment of a multiepitope synthetic antigen for the diagnosis of Dengue virus infection

Immunodiagnostic tests for detecting dengue virus infections encounter challenges related to cross-reactivity with other related flaviviruses. Our research focuses on the development of a synthetic multiepitope antigen tailored for dengue immunodiagnostics. Selected dengue epitopes involved structural linearity and dissimilarity from the proteomes of Zika and Yellow fever viruses which served for computationally modeling the three-dimensional protein structure, resulting in the design of two proteins: rDME-C and rDME-BR. Both proteins consist of seven epitopes, separated by the GPGPG linker, and a carboxy-terminal 6 × -histidine tag. The molecular weights of the final proteins rDME-C and rDME-BR are 16.83 kDa and 16.80 kDa, respectively, both with an isoelectric point of 6.35. The distinguishing factor between the two proteins lies in the origin of their epitope sequences, where rDME-C is based on the reference dengue proteome, while rDME-BR utilizes sequences from prevalent Dengue genotypes in Brazil from 2008 to 2019. PyMol analysis revealed exposure of epitopes in the secondary structure. Successful expression of the antigens was achieved in soluble form and fluorescence experiments indicated a disordered structure. In subsequent testing, rDME-BR and rDME-C antigens were assessed using an indirect Elisa protocol against Dengue infected serum, previously examined with a commercial diagnostic test. Optimal concentrations for antigens were determined at 10 µg/mL for rDME-BR and 30 µg/mL for rDME-C, with serum dilutions ranging from 1:50 to 1:100. Both antigens effectively detected IgM and IgG antibodies in Dengue fever patients, with rDME-BR exhibiting higher sensitivity. Our in-house test showed a sensitivity of 77.3 % and 82.6 % and a specificity of 89.4 % and 71.4 % for rDME-C and rDEM-BR antigens. No cross-reactivity was observed with serum from Zika-infected mice but with COVID-19 serum samples. Our findings underscore the utility of synthetic biology in crafting Dengue-specific multiepitope proteins and hold promise for precise clinical diagnosis and monitoring responses to emerging Dengue vaccines.

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来源期刊
CiteScore
5.50
自引率
0.00%
发文量
925
审稿时长
41 days
期刊介绍: The Brazilian Journal of Infectious Diseases is the official publication of the Brazilian Society of Infectious Diseases (SBI). It aims to publish relevant articles in the broadest sense on all aspects of microbiology, infectious diseases and immune response to infectious agents. The BJID is a bimonthly publication and one of the most influential journals in its field in Brazil and Latin America with a high impact factor, since its inception it has garnered a growing share of the publishing market.
期刊最新文献
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