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丝蛋白基因工程及其应用:分子生物技术推动下生物医药领域的最新进展

Silk Protein Gene Engineering and Its Applications: Recent Advances in Biomedicine Driven by Molecular Biotechnology.

作者信息

Ji Xingxiang, Li Yanyan, Wang Jingsheng, Wang Gang, Ma Bin, Shi Jingfei, Cui Chao, Wang Ruiming

机构信息

State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology, Shandong Academy of Sciences, Jinan, Shandong, 250353, People's Republic of China.

Key Laboratory of Maternal & Fetal Medicine of National Health Commission of China, Shandong Provincial Maternal and Child Health Care Hospital Affiliated to Qingdao University, Jinan, 250014, People's Republic of China.

出版信息

Drug Des Devel Ther. 2025 Jan 25;19:599-626. doi: 10.2147/DDDT.S504783. eCollection 2025.

Abstract

Silk protein, as a natural polymer material with unique structures and properties, exhibits tremendous potential in the biomedical field. Given the limited production and restricted properties of natural silk proteins, molecular biotechnology has been extensively applied in silk protein genetic engineering to produce novel silk proteins with specific properties. This review outlines the roles of major model organisms, such as silkworms and spiders, in silk protein production, and provides a detailed introduction to the applications of gene editing technologies (eg, CRISPR-Cas9), transgenic expression technologies, and synthetic biology techniques in silk protein genetic engineering. By analyzing the genetic factors influencing silk protein expression, this review further elaborates on the innovative applications of silk proteins in drug delivery systems, tissue engineering and regenerative medicine (eg, skin, bone, cartilage, and vascular repair), as well as antibacterial immune strategies. Notably, modified silk proteins expressed by transgenic silkworms demonstrate significant advantages in enhancing drug bioavailability and promoting cell proliferation and differentiation. In conclusion, silk protein gene engineering, through continuous innovations in molecular biotechnology, has provided an effective pathway for the production of high-performance silk protein materials. The extensive applications of these modified silk proteins in the biomedical field have not only expanded the functionality of silk proteins but also offered new approaches to address medical challenges. In the future, the development of silk protein gene engineering will further rely on interdisciplinary integration to promote in-depth research and the expansion of industrial applications of silk proteins.

摘要

丝蛋白作为一种具有独特结构和性质的天然高分子材料,在生物医学领域展现出巨大潜力。鉴于天然丝蛋白产量有限且性质受限,分子生物技术已广泛应用于丝蛋白基因工程,以生产具有特定性质的新型丝蛋白。本文综述了家蚕和蜘蛛等主要模式生物在丝蛋白生产中的作用,并详细介绍了基因编辑技术(如CRISPR-Cas9)、转基因表达技术和合成生物学技术在丝蛋白基因工程中的应用。通过分析影响丝蛋白表达的遗传因素,本文进一步阐述了丝蛋白在药物递送系统、组织工程和再生医学(如皮肤、骨骼、软骨和血管修复)以及抗菌免疫策略中的创新应用。值得注意的是,转基因家蚕表达的修饰丝蛋白在提高药物生物利用度以及促进细胞增殖和分化方面显示出显著优势。总之,丝蛋白基因工程通过分子生物技术的不断创新,为生产高性能丝蛋白材料提供了一条有效途径。这些修饰丝蛋白在生物医学领域的广泛应用不仅扩展了丝蛋白的功能,也为应对医学挑战提供了新方法。未来,丝蛋白基因工程的发展将进一步依赖跨学科整合,以推动丝蛋白的深入研究和产业应用拓展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dedb/11776523/f31ca3e1dfcd/DDDT-19-599-g0001.jpg

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