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一种用于预防结核病和其他疾病的有前景的疫苗载体:疫苗组学见解与应用

, a Promising Vaccine Vector for Preventing TB and Other Diseases: Vaccinomics Insights and Applications.

作者信息

Xie Weile, Wang Longlong, Luo Dan, Soni Vijay, Rosenn Eric H, Wang Zhe

机构信息

Shanghai Key Laboratory of Veterinary Biotechnology, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.

Shanghai Collaborative Innovation Center of Agri-Seeds/School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Vaccines (Basel). 2023 Jul 31;11(8):1302. doi: 10.3390/vaccines11081302.

Abstract

() is frequently used as an alternative model organism in ) studies. While containing high sequence homology with it is considered non-pathogenic in humans. As such it has been used to study and other infections in vivo and more recently been explored for potential therapeutic applications. A body of previous research has highlighted the potential of using genetically modified displaying rapid growth and unique immunostimulatory characteristics as an effective vaccine vector. Novel systems biology techniques can further serve to optimize these delivery constructs. In this article, we review recent advancements in vaccinomics tools that support the efficacy of a based vaccine vector. Moreover, the integration of systems biology and molecular omics techniques in these pioneering studies heralds a potential accelerated pipeline for the development of next-generation recombinant vaccines against rapidly developing diseases.

摘要

()在()研究中经常被用作替代模式生物。虽然它与()具有高度的序列同源性,但在人类中被认为是非致病性的。因此,它已被用于体内研究()和其他感染,最近还被探索用于潜在的治疗应用。先前的一系列研究强调了使用具有快速生长和独特免疫刺激特性的基因改造()作为有效疫苗载体的潜力。新颖的系统生物学技术可以进一步用于优化这些递送构建体。在本文中,我们回顾了支持基于()的疫苗载体效力的疫苗组学工具的最新进展。此外,这些开创性研究中系统生物学和分子组学技术的整合预示着针对快速发展的疾病开发下一代重组疫苗的潜在加速途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08c8/10459588/8fd08bdd40e2/vaccines-11-01302-g001.jpg

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