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为食品和生物医学应用工程益生菌双歧杆菌 - 现状和未来展望。

Engineer probiotic bifidobacteria for food and biomedical applications - Current status and future prospective.

机构信息

Department of Laboratory Medicine, Division of Clinical Immunology and Transfusion Medicine, Karolinska Institutet at Karolinska University Hospital Huddinge, Stockholm SE-141 86, Sweden; Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, PR China; Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University, Stockholm SE-106 91, Sweden.

Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, PR China.

出版信息

Biotechnol Adv. 2020 Dec;45:107654. doi: 10.1016/j.biotechadv.2020.107654. Epub 2020 Nov 5.

Abstract

Bifidobacteria are members of the human gut microbiota and have shown to exert beneficial effects on their host. Certain strains have a long history of safe and effective use as probiotics. Due to the lack of efficient genetic tools, however, little is known about the molecular mechanisms on which these health-promoting properties are based, thus limiting the synthetic biology applications in bifidobacteria. Here, we discuss the recent development of genetic tools and their engagement in engineering bifidobacteria for food and biomedical applications, from eliminating antibiotic resistance mobile elements and improving robustness to preventing pathogen infections and delivering therapeutics for cancer treatment. In addition, we highlight the application of emerging genome engineering techniques for manipulating the bifidobacterial genome. Finally, we provide our perspective on the future development of synthetic biology techniques and programmed probiotic bifidobacteria with enhanced robustness and designer functionalities.

摘要

双歧杆菌是人类肠道微生物群的成员,已被证明对其宿主有有益的影响。某些菌株作为益生菌的使用具有悠久的安全和有效的历史。然而,由于缺乏有效的遗传工具,对于这些促进健康的特性所基于的分子机制知之甚少,从而限制了双歧杆菌在合成生物学中的应用。在这里,我们讨论了遗传工具的最新发展及其在用于食品和生物医学应用的双歧杆菌工程中的应用,包括消除抗生素抗性移动元件和提高稳健性,预防病原体感染和传递癌症治疗的治疗药物。此外,我们还强调了新兴的基因组工程技术在操纵双歧杆菌基因组方面的应用。最后,我们对增强稳健性和设计功能的合成生物学技术和编程益生菌双歧杆菌的未来发展提出了看法。

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