Meng Shujuan, Miao Aijun, Wu Sen, Du Xuguang, Gao Fei
Frontiers Science Center for Molecular Design Breeding (MOE), State Key Laboratory of Animal Biotech Breeding, College of Biological Sciences, China Agricultural University, Beijing, China.
Sanya Institute of China Agricultural University, Sanya, China.
Front Genome Ed. 2025 Jan 7;6:1522837. doi: 10.3389/fgeed.2024.1522837. eCollection 2024.
Protein drug production encompasses various methods, among which animal bioreactors are emerging as a transgenic system. Animal bioreactors have the potential to reduce production costs and increase efficiency, thereby producing recombinant proteins that are crucial for therapeutic applications. Various species, including goats, cattle, rabbits, and poultry, have been genetically engineered to serve as bioreactors. This review delves into the analysis and comparison of different expression systems for protein drug production, highlighting the advantages and limitations of microbial, yeast, plant cell, and mammalian cell expression systems. Additionally, the emerging significance of genetically modified chickens as a potential bioreactor system for producing protein-based drugs is highlighted. The avian bioreactor enables the expression of target genes in ovarian cells, resulting in the production of corresponding gene expression products in egg whites. This production method boasts advantages such as a short cycle, high production efficiency, low research costs, and the expression products being closer to their natural state and easier to purify. It demonstrates immense potential in production applications, scientific research, and sustainable development. The utilization of advanced gene editing technologies, such as CRISPR/Cas9, has revolutionized the precision and efficiency of generating genetically modified chickens. This has paved the way for enhanced production of recombinant therapeutic proteins with desired glycosylation patterns and reduced immunogenic responses.
蛋白质药物生产涵盖多种方法,其中动物生物反应器正成为一种转基因系统。动物生物反应器有降低生产成本和提高效率的潜力,从而生产出对治疗应用至关重要的重组蛋白。包括山羊、牛、兔子和家禽在内的各种物种已被基因工程改造用作生物反应器。本综述深入分析和比较了用于蛋白质药物生产的不同表达系统,突出了微生物、酵母、植物细胞和哺乳动物细胞表达系统的优点和局限性。此外,强调了转基因鸡作为生产基于蛋白质药物的潜在生物反应器系统的新意义。禽类生物反应器能够在卵巢细胞中表达靶基因,从而在蛋清中产生相应的基因表达产物。这种生产方法具有周期短、生产效率高、研究成本低以及表达产物更接近其天然状态且易于纯化等优点。它在生产应用、科学研究和可持续发展方面展现出巨大潜力。先进基因编辑技术如CRISPR/Cas9的应用彻底改变了培育转基因鸡的精度和效率。这为提高具有所需糖基化模式的重组治疗性蛋白产量以及降低免疫原性反应铺平了道路。