Saeed Pirmoradi, Mohammad Darvish Khadem, Zohre Monjezi, Somayeh Bahrami, Chukwunonso O Nzelu
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After preparing suitable epitopes of the <i>Leishmania</i> parasite and examining their antiparasitic properties, the process of making a fusion vaccine was performed and with the help of various bioinformatics tools, physicochemical and structural properties as well as immunological and simulation properties were studied and finally optimized. Construction and cloning were performed in the <i>E.coli</i> K12 system and finally, the docking process was performed with Toll-like receptors (TLRs), major histocompatibility complex I (MHC-I), and MHC-II receptors. With the help of selected epitopes of the <i>Leishmania</i> parasite, which had a high percentage of population coverage, a stable, antigenic, and non-allergenic chimeric vaccine was predicted.</p><p><strong>Results: </strong>The results of the structural analysis of the TLR5\\vaccine complex and simulation of its molecular dynamics showed a sufficiently stable binding. It also showed good potential for stimulation and production of active B cells and memory, as well as the potential for CD8+ T, CD4+ T cell production and development of Th2 and Th1-induced immune responses.</p><p><strong>Conclusion: </strong>Computational results showed that the designed immunogenic structure has the potential to adequately stimulate cellular and humoral immune responses against <i>Leishmania</i> parasitic disease. As a result of evaluating the effectiveness of the candidate vaccine through in vivo and in vitro immunological tests, it can be suggested as a vaccine against <i>Leishmania major</i>.</p>","PeriodicalId":14669,"journal":{"name":"Iranian Journal of Parasitology","volume":"19 3","pages":"290-304"},"PeriodicalIF":0.9000,"publicationDate":"2024-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11417980/pdf/","citationCount":"0","resultStr":"{\"title\":\"A New Immunogenic Structure of Polyepitopic Fusion against <i>Leishmania major</i>: In Silico Study.\",\"authors\":\"Saeed Pirmoradi, Mohammad Darvish Khadem, Zohre Monjezi, Somayeh Bahrami, Chukwunonso O Nzelu\",\"doi\":\"10.18502/ijpa.v19i3.16387\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>The lack of complete protection against leishmaniasis and the challenges of anti-leishmaniasis drug treatment have made the treatment process more difficult. 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引用次数: 0
摘要
背景:由于缺乏对利什曼病的完全保护以及抗利什曼病药物治疗的挑战,治疗过程变得更加困难。本研究旨在开发一种新策略,利用利什曼原虫的一些抗原蛋白制备皮肤利什曼病疫苗:这项研究于 2022 年在伊朗阿瓦士的沙希德-查姆兰大学进行。在制备了合适的利什曼原虫表位并检查了其抗寄生特性后,进行了融合疫苗的制作过程,并在各种生物信息学工具的帮助下,研究了其物理化学和结构特性以及免疫学和模拟特性,并最终进行了优化。在大肠杆菌 K12 系统中进行了构建和克隆,最后与 Toll 样受体 (TLR)、主要组织相容性复合体 I (MHC-I) 和 MHC-II 受体进行了对接。在利什曼寄生虫的选定表位(这些表位在人群中的覆盖率很高)的帮助下,预测出了一种稳定、抗原性和非过敏性的嵌合疫苗:结果:TLR5/疫苗复合物的结构分析和分子动力学模拟结果表明,其结合十分稳定。结果:TLR5(疫苗)复合物的结构分析和分子动力学模拟结果表明,该复合物具有足够稳定的结合力,同时还显示出刺激和产生活性 B 细胞和记忆细胞的良好潜力,以及产生 CD8+ T、CD4+ T 细胞和发展 Th2 和 Th1 诱导的免疫反应的潜力:计算结果表明,所设计的免疫原性结构具有充分刺激细胞和体液免疫反应以对抗利什曼寄生虫病的潜力。通过体内和体外免疫学试验对候选疫苗的有效性进行评估后,可以建议将其作为预防大利什曼病的疫苗。
A New Immunogenic Structure of Polyepitopic Fusion against Leishmania major: In Silico Study.
Background: The lack of complete protection against leishmaniasis and the challenges of anti-leishmaniasis drug treatment have made the treatment process more difficult. This study aimed to develop a new strategy for preparing a vaccine against cutaneous leishmaniasis using some of the antigenic proteins of the Leishmania parasite.
Methods: This study was carried out in 2022 at Shahid Chamran University of Ahvaz, Ahvaz, Iran. After preparing suitable epitopes of the Leishmania parasite and examining their antiparasitic properties, the process of making a fusion vaccine was performed and with the help of various bioinformatics tools, physicochemical and structural properties as well as immunological and simulation properties were studied and finally optimized. Construction and cloning were performed in the E.coli K12 system and finally, the docking process was performed with Toll-like receptors (TLRs), major histocompatibility complex I (MHC-I), and MHC-II receptors. With the help of selected epitopes of the Leishmania parasite, which had a high percentage of population coverage, a stable, antigenic, and non-allergenic chimeric vaccine was predicted.
Results: The results of the structural analysis of the TLR5\vaccine complex and simulation of its molecular dynamics showed a sufficiently stable binding. It also showed good potential for stimulation and production of active B cells and memory, as well as the potential for CD8+ T, CD4+ T cell production and development of Th2 and Th1-induced immune responses.
Conclusion: Computational results showed that the designed immunogenic structure has the potential to adequately stimulate cellular and humoral immune responses against Leishmania parasitic disease. As a result of evaluating the effectiveness of the candidate vaccine through in vivo and in vitro immunological tests, it can be suggested as a vaccine against Leishmania major.
期刊介绍:
Iranian Journal of Parasitology (IJP) is the official publication of Iranian Society of Parasitology (ISP) launched in 2006. The society was inaugurated in 1994 and pursues the improvement of the knowledge on the parasites and parasitic diseases, exchange of scientific knowledge with foreign societies, publicity activities, and consultation on the parasitic diseases, and intimate relationship among society members.
The main aims of the Journal are: contribution to the field of Parasitology, including all aspects of parasites and parasitic diseases (medical and veterinary) and related fields such as Entomology which may be submitted by scientists from Iran and all over the world.