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嵌合疫苗工艺开发中的挑战与机遇

Challenges and Opportunities in the Process Development of Chimeric Vaccines.

作者信息

Chauhan Shivani, Khasa Yogender Pal

机构信息

Department of Microbiology, University of Delhi South Campus, New Delhi 110021, India.

出版信息

Vaccines (Basel). 2023 Dec 8;11(12):1828. doi: 10.3390/vaccines11121828.

Abstract

Vaccines are integral to human life to protect them from life-threatening diseases. However, conventional vaccines often suffer limitations like inefficiency, safety concerns, unavailability for non-culturable microbes, and genetic variability among pathogens. Chimeric vaccines combine multiple antigen-encoding genes of similar or different microbial strains to protect against hyper-evolving drug-resistant pathogens. The outbreaks of dreadful diseases have led researchers to develop economical chimeric vaccines that can cater to a large population in a shorter time. The process development begins with computationally aided omics-based approaches to design chimeric vaccines. Furthermore, developing these vaccines requires optimizing upstream and downstream processes for mass production at an industrial scale. Owing to the complex structures and complicated bioprocessing of evolving pathogens, various high-throughput process technologies have come up with added advantages. Recent advancements in high-throughput tools, process analytical technology (PAT), quality-by-design (QbD), design of experiments (DoE), modeling and simulations, single-use technology, and integrated continuous bioprocessing have made scalable production more convenient and economical. The paradigm shift to innovative strategies requires significant attention to deal with major health threats at the global scale. This review outlines the challenges and emerging avenues in the bioprocess development of chimeric vaccines.

摘要

疫苗对于人类生命至关重要,可保护人们免受危及生命的疾病侵害。然而,传统疫苗常常存在局限性,如效率低下、安全问题、无法用于不可培养的微生物以及病原体之间的基因变异性等。嵌合疫苗将相似或不同微生物菌株的多个抗原编码基因组合在一起,以抵御不断进化的耐药病原体。可怕疾病的爆发促使研究人员开发经济实惠的嵌合疫苗,以便在更短时间内满足大量人群的需求。工艺开发始于基于计算辅助组学的方法来设计嵌合疫苗。此外,开发这些疫苗需要优化上游和下游工艺,以实现工业规模的大规模生产。由于不断进化的病原体结构复杂且生物加工过程繁琐,各种高通量工艺技术应运而生,并具有额外的优势。高通量工具、过程分析技术(PAT)、质量源于设计(QbD)、实验设计(DoE)、建模与模拟、一次性技术以及集成连续生物加工等方面的最新进展,使得可扩展生产更加便捷且经济。向创新策略的范式转变需要高度关注,以应对全球范围内的重大健康威胁。本综述概述了嵌合疫苗生物工艺开发中的挑战和新兴途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbc6/10747103/d83ac5993ef3/vaccines-11-01828-g001.jpg

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