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基于通用肽的犬瘟热病毒(CDV)潜在疫苗设计:一种疫苗组学方法。

Universal peptide-based potential vaccine design against canine distemper virus (CDV) using a vaccinomic approach.

机构信息

Grupo de Investigación en Ciencias Animales - GRICA, Facultad de Medicina Veterinaria y Zootecnia, Universidad Cooperativa de Colombia, sede Bucaramanga, Bucaramanga, Colombia.

Grupo Infettare, Facultad de Medicina, Universidad Cooperativa de Colombia, Medellín, Colombia.

出版信息

Sci Rep. 2024 Jul 18;14(1):16605. doi: 10.1038/s41598-024-67781-5.

Abstract

Canine distemper virus (CDV) affects many domestic and wild animals. Variations among CDV genome linages could lead to vaccination failure. To date, there are several vaccine alternatives, such as a modified live virus and a recombinant vaccine; however, most of these alternatives are based on the ancestral strain Onderstepoort, which has not been circulating for years. Vaccine failures and the need to update vaccines have been widely discussed, and the development of new vaccine candidates is necessary to reduce circulation and mortality. Current vaccination alternatives cannot be used in wildlife animals due to the lack of safety data for most of the species, in addition to the insufficient immune response against circulating strains worldwide in domestic species. Computational tools, including peptide-based therapies, have become essential for developing new-generation vaccines for diverse models. In this work, a peptide-based vaccine candidate with a peptide library derived from CDV H and F protein consensus sequences was constructed employing computational tools. The molecular docking and dynamics of the selected peptides with canine MHC-I and MHC-II and with TLR-2 and TLR-4 were evaluated. In silico safety was assayed through determination of antigenicity, allergenicity, toxicity potential, and homologous canine peptides. Additionally, in vitro safety was also evaluated through cytotoxicity in cell lines and canine peripheral blood mononuclear cells (cPBMCs) and through a hemolysis potential assay using canine red blood cells. A multiepitope CDV polypeptide was constructed, synthetized, and evaluated in silico and in vitro by employing the most promising peptides for comparison with single CDV immunogenic peptides. Our findings suggest that predicting immunogenic CDV peptides derived from most antigenic CDV proteins could aid in the development of new vaccine candidates, such as multiple single CDV peptides and multiepitope CDV polypeptides, that are safe in vitro and optimized in silico. In vivo studies are being conducted to validate potential vaccines that may be effective in preventing CDV infection in domestic and wild animals.

摘要

犬瘟热病毒(CDV)影响许多家养和野生动物。CDV 基因组谱系的变异可能导致疫苗接种失败。迄今为止,有几种疫苗替代品,如改良活病毒和重组疫苗;然而,这些替代品大多基于多年未流行的祖先株 Onderstepoort。疫苗失效和更新疫苗的需求已被广泛讨论,有必要开发新的疫苗候选物来减少病毒循环和死亡率。由于大多数物种缺乏安全性数据,以及在全球范围内,家养动物对循环株的免疫反应不足,当前的疫苗替代品不能用于野生动物。计算工具,包括基于肽的疗法,对于开发针对不同模型的新一代疫苗变得至关重要。在这项工作中,构建了一种基于肽的候选疫苗,该疫苗使用来自 CDV H 和 F 蛋白共识序列的肽库,通过计算工具构建。评估了所选肽与犬 MHC-I 和 MHC-II 以及 TLR-2 和 TLR-4 的分子对接和动力学。通过测定抗原性、变应原性、毒性潜力和同源犬肽来评估其在计算机中的安全性。此外,还通过细胞系和犬外周血单核细胞(cPBMC)中的细胞毒性以及使用犬红细胞的溶血潜力测定来评估体外安全性。构建、合成并通过最有前途的肽进行了 CDV 多表位多肽的计算机模拟和体外评估,以与单个 CDV 免疫原性肽进行比较。我们的研究结果表明,预测源自最具抗原性 CDV 蛋白的免疫原性 CDV 肽有助于开发新的疫苗候选物,例如多个单一 CDV 肽和多表位 CDV 多肽,这些在体外是安全的,并且在计算机中进行了优化。正在进行体内研究以验证可能对预防家养和野生动物 CDV 感染有效的潜在疫苗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a41b/11258135/bf3d4f760a5f/41598_2024_67781_Fig1_HTML.jpg

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