微流控平台在推进可扩展和精确微生物生物处理中的作用的系统综述

IF 3 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Alperen Alpural, Ilgin Kimiz-Gebologlu, Mayur Parekh, Esra Imamoglu, Zulfiqur Ali, Ozlem Yesil-Celiktas
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引用次数: 0

摘要

微生物生物加工是生产多种生物分子的关键技术,包括蛋白质、酶、抗生素和其他生物活性化合物。近年来,由于能够在微观尺度上精确控制和操纵流体,人们对使用微流体平台进行生物处理的兴趣越来越大。微流体通过解决可扩展性、精度、可重复性和研究复杂生物系统的能力等关键技术挑战,为临床应用的生物分子制造提供了一个变革性的平台。在这篇综述中,讨论了用于制造微流体平台的各种方法,以及生物制药、聚合物、生物活性化合物的合成/生产的最新进展,以及微尺度生物过程的实时监测。此外,还强调了未来的趋势和方向。总的来说,我们设想利用微流控平台来推进微生物生物处理领域和生物医学领域的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Systematic Review on the Role of Microfluidic Platforms in Advancing Scalable and Precise Microbial Bioprocessing

Systematic Review on the Role of Microfluidic Platforms in Advancing Scalable and Precise Microbial Bioprocessing

Systematic Review on the Role of Microfluidic Platforms in Advancing Scalable and Precise Microbial Bioprocessing

Systematic Review on the Role of Microfluidic Platforms in Advancing Scalable and Precise Microbial Bioprocessing

Systematic Review on the Role of Microfluidic Platforms in Advancing Scalable and Precise Microbial Bioprocessing

Microbial bioprocessing is a key technology for the production of a wide range of biomolecules, including proteins, enzymes, antibiotics, and other bioactive compounds. In recent years, there has been an increasing interest in using microfluidic platforms for bioprocessing, due to the ability to precisely control and manipulate fluids at the microscale. Microfluidics offers a transformative platform for the manufacturing of biomolecules intended for clinical applications by addressing key technical challenges in scalability, precision, reproducibility, and the ability to study complex biological systems. In this review, various methods used to fabricate microfluidic platforms and the current state-of-the-art in the synthesis/production of biopharmaceuticals, polymers, bioactive compounds, and real-time monitoring in microscale bioprocesses are discussed. Additionally, the future trends and directions are highlighted. Overall, we envisage the utilization of microfluidic platforms to advance the field of microbial bioprocessing and applications in the biomedical field.

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来源期刊
Engineering in Life Sciences
Engineering in Life Sciences 工程技术-生物工程与应用微生物
CiteScore
6.40
自引率
3.70%
发文量
81
审稿时长
3 months
期刊介绍: Engineering in Life Sciences (ELS) focuses on engineering principles and innovations in life sciences and biotechnology. Life sciences and biotechnology covered in ELS encompass the use of biomolecules (e.g. proteins/enzymes), cells (microbial, plant and mammalian origins) and biomaterials for biosynthesis, biotransformation, cell-based treatment and bio-based solutions in industrial and pharmaceutical biotechnologies as well as in biomedicine. ELS especially aims to promote interdisciplinary collaborations among biologists, biotechnologists and engineers for quantitative understanding and holistic engineering (design-built-test) of biological parts and processes in the different application areas.
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