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生物工程益生菌:合成生物学可为食源性疾病的治疗提供活细胞疗法。

Bioengineered Probiotics: Synthetic Biology Can Provide Live Cell Therapeutics for the Treatment of Foodborne Diseases.

作者信息

Cruz Karla Cristina P, Enekegho Laura O, Stuart David T

机构信息

Department of Biochemistry, University of Alberta, Edmonton, AB, Canada.

出版信息

Front Bioeng Biotechnol. 2022 May 17;10:890479. doi: 10.3389/fbioe.2022.890479. eCollection 2022.

Abstract

The rising prevalence of antibiotic resistant microbial pathogens presents an ominous health and economic challenge to modern society. The discovery and large-scale development of antibiotic drugs in previous decades was transformational, providing cheap, effective treatment for what would previously have been a lethal infection. As microbial strains resistant to many or even all antibiotic drug treatments have evolved, there is an urgent need for new drugs or antimicrobial treatments to control these pathogens. The ability to sequence and mine the genomes of an increasing number of microbial strains from previously unexplored environments has the potential to identify new natural product antibiotic biosynthesis pathways. This coupled with the power of synthetic biology to generate new production chassis, biosensors and "weaponized" live cell therapeutics may provide new means to combat the rapidly evolving threat of drug resistant microbial pathogens. This review focuses on the application of synthetic biology to construct probiotic strains that have been endowed with functionalities allowing them to identify, compete with and in some cases kill microbial pathogens as well as stimulate host immunity. Weaponized probiotics may have the greatest potential for use against pathogens that infect the gastrointestinal tract: , , and . The potential benefits of engineered probiotics are highlighted along with the challenges that must still be met before these intriguing and exciting new therapeutic tools can be widely deployed.

摘要

抗生素耐药性微生物病原体的日益流行给现代社会带来了严峻的健康和经济挑战。前几十年抗生素药物的发现和大规模开发具有变革性,为以前会致命的感染提供了廉价、有效的治疗方法。随着对许多甚至所有抗生素治疗产生耐药性的微生物菌株不断进化,迫切需要新的药物或抗菌疗法来控制这些病原体。对越来越多来自以前未探索环境的微生物菌株进行基因组测序和挖掘的能力,有可能识别新的天然产物抗生素生物合成途径。这与合成生物学在生成新的生产底盘、生物传感器和“武器化”活细胞疗法方面的能力相结合,可能提供新的手段来应对耐药性微生物病原体迅速演变的威胁。本综述重点关注合成生物学在构建益生菌菌株方面的应用,这些菌株被赋予了多种功能,使其能够识别、与微生物病原体竞争,在某些情况下杀死它们,并刺激宿主免疫力。“武器化”益生菌在对抗感染胃肠道的病原体方面可能具有最大的应用潜力: , , 以及 。本文在强调工程益生菌潜在益处的同时,也指出了在这些有趣且令人兴奋的新治疗工具能够广泛应用之前仍需克服的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b44/9152101/9d94d5f37952/fbioe-10-890479-g001.jpg

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