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生物学与工程学的交汇之处:扩大微生物营养保健品的规模,以弥合营养、治疗和全球影响之间的差距。

Where Biology Meets Engineering: Scaling Up Microbial Nutraceuticals to Bridge Nutrition, Therapeutics, and Global Impact.

作者信息

Elazzazy Ahmed M, Baeshen Mohammed N, Alasmi Khalid M, Alqurashi Shatha I, Desouky Said E, Khattab Sadat M R

机构信息

Department of Biological Science, College of Science, University of Jeddah, Jeddah 21589, Saudi Arabia.

Laboratory of Microbial Technology, Division of Systems Bioengineering, Department of Bioscience and Biotechnology, Faculty of Agriculture, Graduate School, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.

出版信息

Microorganisms. 2025 Mar 2;13(3):566. doi: 10.3390/microorganisms13030566.

Abstract

The global nutraceutical industry is experiencing a paradigm shift, driven by an increasing demand for functional foods and dietary supplements that address malnutrition and chronic diseases such as obesity, diabetes, cardiovascular conditions, and cancer. Traditional plant- and animal-derived nutraceuticals face limitations in scalability, cost, and environmental impact, paving the way for microbial biotechnology as a sustainable alternative. Microbial cells act as bio-factories, converting nutrients like glucose and amino acids into valuable nutraceutical products such as polyunsaturated fatty acids (PUFAs), peptides, and other bioactive compounds. By harnessing their natural metabolic capabilities, microorganisms efficiently synthesize these bioactive compounds, making microbial production a sustainable and effective approach for nutraceutical development. This review explores the transformative role of microbial platforms in the production of nutraceuticals, emphasizing advanced fermentation techniques, synthetic biology, and metabolic engineering. It addresses the challenges of optimizing microbial strains, ensuring product quality, and scaling production while navigating regulatory frameworks. Furthermore, the review highlights cutting-edge technologies such as CRISPR/Cas9 for genome editing, adaptive evolution for strain enhancement, and bioreactor innovations to enhance yield and efficiency. With a focus on sustainability and precision, microbial production is positioned as a game-changer in the nutraceutical industry, offering eco-friendly and scalable solutions to meet global health needs. The integration of omics technologies and the exploration of novel microbial sources hold the potential to revolutionize this field, aligning with the growing consumer demand for innovative and functional bioactive products.

摘要

全球营养保健品行业正在经历一场范式转变,这是由对功能性食品和膳食补充剂的需求不断增加所驱动的,这些产品旨在解决营养不良以及肥胖、糖尿病、心血管疾病和癌症等慢性疾病。传统的植物和动物来源的营养保健品在可扩展性、成本和环境影响方面存在局限性,为微生物生物技术成为一种可持续的替代方案铺平了道路。微生物细胞充当生物工厂,将葡萄糖和氨基酸等营养物质转化为有价值的营养保健品,如多不饱和脂肪酸(PUFA)、肽和其他生物活性化合物。通过利用它们的天然代谢能力,微生物能够高效地合成这些生物活性化合物,使微生物生产成为营养保健品开发的一种可持续且有效的方法。本综述探讨了微生物平台在营养保健品生产中的变革性作用,强调了先进的发酵技术、合成生物学和代谢工程。它解决了在优化微生物菌株、确保产品质量、扩大生产规模以及应对监管框架方面所面临的挑战。此外,该综述还重点介绍了诸如用于基因组编辑的CRISPR/Cas9、用于菌株改良的适应性进化以及用于提高产量和效率的生物反应器创新等前沿技术。以可持续性和精准性为重点,微生物生产被定位为营养保健品行业的变革者,提供环保且可扩展的解决方案以满足全球健康需求。组学技术的整合以及新型微生物来源的探索有望彻底改变这一领域,这与消费者对创新和功能性生物活性产品不断增长的需求相一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e01/11945976/42fe742c6f62/microorganisms-13-00566-g001.jpg

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