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合成生物学在医学和制药领域的应用。

Applications of synthetic biology in medical and pharmaceutical fields.

机构信息

School of Life Sciences, Tsinghua University, 100084, Beijing, China.

PhaBuilder Biotech Co. Ltd., Shunyi District, Zhaoquan Ying, 101309, Beijing, China.

出版信息

Signal Transduct Target Ther. 2023 May 11;8(1):199. doi: 10.1038/s41392-023-01440-5.

Abstract

Synthetic biology aims to design or assemble existing bioparts or bio-components for useful bioproperties. During the past decades, progresses have been made to build delicate biocircuits, standardized biological building blocks and to develop various genomic/metabolic engineering tools and approaches. Medical and pharmaceutical demands have also pushed the development of synthetic biology, including integration of heterologous pathways into designer cells to efficiently produce medical agents, enhanced yields of natural products in cell growth media to equal or higher than that of the extracts from plants or fungi, constructions of novel genetic circuits for tumor targeting, controllable releases of therapeutic agents in response to specific biomarkers to fight diseases such as diabetes and cancers. Besides, new strategies are developed to treat complex immune diseases, infectious diseases and metabolic disorders that are hard to cure via traditional approaches. In general, synthetic biology brings new capabilities to medical and pharmaceutical researches. This review summarizes the timeline of synthetic biology developments, the past and present of synthetic biology for microbial productions of pharmaceutics, engineered cells equipped with synthetic DNA circuits for diagnosis and therapies, live and auto-assemblied biomaterials for medical treatments, cell-free synthetic biology in medical and pharmaceutical fields, and DNA engineering approaches with potentials for biomedical applications.

摘要

合成生物学旨在设计或组装现有的生物部件或生物组件,以获得有用的生物特性。在过去的几十年中,已经取得了进展,构建了精密的生物电路、标准化的生物构建模块,并开发了各种基因组/代谢工程工具和方法。医学和制药的需求也推动了合成生物学的发展,包括将异源途径整合到设计细胞中以高效生产药物、在细胞生长培养基中提高天然产物的产量,使其与植物或真菌提取物的产量相等或更高,构建用于肿瘤靶向的新型遗传电路,以及针对特定生物标志物的可控释放治疗剂,以治疗糖尿病和癌症等疾病。此外,还开发了新的策略来治疗复杂的免疫疾病、传染病和代谢紊乱,这些疾病通过传统方法难以治愈。总的来说,合成生物学为医学和制药研究带来了新的能力。本文综述了合成生物学的发展时间表,总结了合成生物学在微生物制药生产、配备合成 DNA 电路的工程细胞用于诊断和治疗、用于医疗的活体和自动组装生物材料、医学和制药领域的无细胞合成生物学以及具有生物医学应用潜力的 DNA 工程方法的过去和现在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1a3/10175497/666025c10fc5/41392_2023_1440_Fig1_HTML.jpg

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