Department of Biochemistry, School of Life Sciences, Central University of Rajasthan, NH-8, Bandarsindri, Kishangarh, 305817, Ajmer, Rajasthan, India.
Sci Rep. 2017 Aug 15;7(1):8285. doi: 10.1038/s41598-017-08842-w.
Visceral leishmaniasis (VL) is a fatal form of leishmaniasis which affects 70 countries, worldwide. Increasing drug resistance, HIV co-infection, and poor health system require operative vaccination strategy to control the VL transmission dynamics. Therefore, a holistic approach is needed to generate T and B memory cells to mediate long-term immunity against VL infection. Consequently, immunoinformatics approach was applied to design Leishmania secretory protein based multi-epitope subunit vaccine construct consisting of B and T cell epitopes. Further, the physiochemical characterization was performed to check the aliphatic index, theoretical PI, molecular weight, and thermostable nature of vaccine construct. The allergenicity and antigenicity were also predicted to ensure the safety and immunogenic behavior of final vaccine construct. Moreover, homology modeling, followed by molecular docking and molecular dynamics simulation study was also performed to evaluate the binding affinity and stability of receptor (TLR-4) and ligand (vaccine protein) complex. This study warrants the experimental validation to ensure the immunogenicity and safety profile of presented vaccine construct which may be further helpful to control VL infection.
内脏利什曼病(VL)是一种致命形式的利什曼病,影响全球 70 个国家。不断增加的药物耐药性、HIV 合并感染和薄弱的卫生系统需要有效的疫苗接种策略来控制 VL 传播动态。因此,需要采用整体方法来产生 T 和 B 记忆细胞,以介导针对 VL 感染的长期免疫。因此,应用免疫信息学方法来设计基于利什曼虫 secretory 蛋白的多表位亚单位疫苗构建体,该构建体包含 B 和 T 细胞表位。此外,还进行了理化特性分析,以检查疫苗构建体的脂肪指数、理论 PI、分子量和热稳定性。还预测了过敏原性和抗原性,以确保最终疫苗构建体的安全性和免疫原性。此外,还进行了同源建模,随后进行了分子对接和分子动力学模拟研究,以评估受体(TLR-4)和配体(疫苗蛋白)复合物的结合亲和力和稳定性。这项研究需要进行实验验证,以确保所提出的疫苗构建体的免疫原性和安全性,这可能有助于进一步控制 VL 感染。