Ng Ming Guan, Tan Hui Ying, Ng Pei Ying, Koh Rhun Yian, Voon Kenny Gah Leong, Chye Soi Moi
School of Health Science, International Medical University, Kuala Lumpur 57000, Malaysia.
Centre for Pre-University Studies, International Medical University, Kuala Lumpur 57000, Malaysia.
Curr Pharm Biotechnol. 2024 Jul 12. doi: 10.2174/0113892010307146240626080746.
Cancer is a significant issue worldwide. Generally, commercially available treatments, such as surgery, radiotherapy, and chemotherapy, are associated with undesirable complications. Hence, immunotherapy serves as a crucial alternative to those treatment options.
This modality is aimed to boost the immune system through the application of engineered antibodies, which can be produced using recombinant DNA technology.
The discussion of the technologies leads to an introduction of the single-chain variable fragment (scFv). Thereafter, the advantages, disadvantages, and challenges associated with different expression systems, such as mammalian cells, yeast cells, bacterial cells, plant cells, and phage display were discussed comprehensively.
Furthermore, conventional approaches such as hybridoma and modern approaches such as cell-free protein synthesis (CFPS) and simple colony assays are included. In short, this article has compiled evidence relating to each display system and may serve as a reference for those who aim to explore antibody engineering using one of the methods listed in this article.
癌症是全球范围内的一个重大问题。一般来说,诸如手术、放疗和化疗等市售治疗方法都伴有不良并发症。因此,免疫疗法成为这些治疗选择的关键替代方案。
这种治疗方式旨在通过应用工程抗体来增强免疫系统,而工程抗体可利用重组DNA技术生产。
对这些技术的讨论引出了单链可变片段(scFv)。此后,全面讨论了与不同表达系统(如哺乳动物细胞、酵母细胞、细菌细胞、植物细胞和噬菌体展示)相关的优缺点及挑战。
此外,还包括传统方法如杂交瘤以及现代方法如无细胞蛋白质合成(CFPS)和简单菌落测定。简而言之,本文汇编了与每种展示系统相关的证据,可为那些旨在使用本文所列方法之一探索抗体工程的人提供参考。