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食品工业中重组技术的全面综述:探索表达系统、应用及未来挑战。

A comprehensive review of recombinant technology in the food industry: Exploring expression systems, application, and future challenges.

作者信息

Liu Ming, Xiao Ran, Li Xiaolin, Zhao Yingyu, Huang Jihong

机构信息

College of Grain and Food Science, Henan University of Technology, Zhengzhou, Henan, P. R. China.

Food Laboratory of Zhongyuan, Henan University of Technology, Zhengzhou, Henan, P. R. China.

出版信息

Compr Rev Food Sci Food Saf. 2025 Mar;24(2):e70078. doi: 10.1111/1541-4337.70078.

Abstract

Biotechnology has significantly advanced the production of recombinant proteins (RPs). This review examines the latest advancements in protein production technologies, including CRISPR, genetic engineering, vector integration, and fermentation, and their implications for the food industry. This review delineates the merits and shortcomings of prevailing host systems for RP production, underscoring molecular and process strategies pivotal for amplifying yields and purity. It traverses the spectrum of RP applications, challenges, and burgeoning trends, highlighting the imperative of employing robust hosts and cutting-edge genetic engineering to secure high-quality, high-yield outputs while circumventing protein aggregation and ensuring correct folding for enhanced activity. Recombinant technology has paved the way for the food industry to produce alternative proteins like leghemoglobin and cytokines, along with enzyme preparations such as proteases and lipases, and to modify microbial pathways for synthesizing beneficial compounds, including pigments, terpenes, flavonoids, and functional sugars. However, scaling microbial production to industrial scales presents economic, efficiency, and environmental challenges that demand innovative solutions, including high-throughput screening and CRISPR/Cas9 systems, to bolster protein yield and quality. Although recombinant technology holds much promise, it must navigate high costs and scalability to satisfy the escalating global demand for RPs in therapeutics and food. The variability in ethical and regulatory hurdles across regions further complicates market acceptance, underscoring an urgent need for robust regulatory frameworks for genetically modified organisms. These frameworks are essential for safeguarding the production process, ensuring product safety, and upholding the efficacy of RPs in industrial applications.

摘要

生物技术显著推动了重组蛋白(RPs)的生产。本综述探讨了蛋白质生产技术的最新进展,包括CRISPR、基因工程、载体整合和发酵,以及它们对食品工业的影响。本综述阐述了用于生产重组蛋白的现有宿主系统的优缺点,强调了提高产量和纯度的关键分子和工艺策略。它涵盖了重组蛋白的应用范围、挑战和新兴趋势,强调了采用强大的宿主和前沿基因工程的必要性,以确保获得高质量、高产量的产品,同时避免蛋白质聚集并确保正确折叠以增强活性。重组技术为食品工业生产诸如豆血红蛋白和细胞因子等替代蛋白、蛋白酶和脂肪酶等酶制剂,以及改造微生物途径以合成有益化合物(包括色素、萜类化合物、黄酮类化合物和功能性糖)铺平了道路。然而,将微生物生产扩大到工业规模面临经济、效率和环境挑战,需要创新解决方案,包括高通量筛选和CRISPR/Cas9系统,以提高蛋白质产量和质量。尽管重组技术前景广阔,但它必须应对高成本和可扩展性问题,以满足全球对治疗和食品领域重组蛋白不断增长的需求。各地区道德和监管障碍的差异进一步使市场接受度复杂化,凸显了迫切需要建立强大的转基因生物监管框架。这些框架对于保障生产过程、确保产品安全以及维护重组蛋白在工业应用中的功效至关重要。

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