Progress in the Expression, Purification, and Characterization of Recombinant Collagen

重组DNA 圆二色性 大小排阻色谱法 化学 表征(材料科学) 生物化学 计算生物学 亲和层析 生化工程 纳米技术 生物物理学 过滤(数学) 体外 组织工程 细胞 细胞培养 色谱法 细胞生物学 生物活性 生物相容性材料 药物输送
作者
Youlin Deng,Jiyao Kang,Xiaoqun Duan,Yingjun Kong,Weiquan Xie,Dongjie Lei,Tingchun Wang,Guifeng Zhang
出处
期刊:Bioengineering [Multidisciplinary Digital Publishing Institute]
卷期号:13 (2): 159-159
标识
DOI:10.3390/bioengineering13020159
摘要

Synthesized by expressing natural collagen sequences in specific hosts, recombinant collagen exhibits multiple advantages, encompassing a higher content of bioactive domains, enhanced antioxidant activity, the absence of viral pathogens, favorable hydrophilicity, reproducible production, and low immunogenicity. Consequently, it has found extensive use in applications ranging from biomaterials and pharmaceuticals to skincare. This review systematically explores various expression systems for recombinant collagen, including those utilizing Escherichia coli, Pichia pastoris, plants, insect baculovirus, and mammalian cells. It provides a detailed comparison of their differences and commonalities in terms of production efficiency, post-translational modification capability, and cost-effectiveness. Key separation and purification techniques for recombinant collage-notably precipitation, affinity chromatography, ion-exchange chromatography, and gel filtration chromatography are further introduced, with an in-depth analysis of the applicable scenarios and purification outcomes for each method. Finally, the review comprehensively summarizes the characterization methods for both the physicochemical properties and biological functions of recombinant collagen. For physicochemical properties, techniques covered include scanning electron microscopy, micro-differential thermal analysis, circular dichroism spectroscopy, SDS-PAGE, mass spectrometry, and Fourier-transform infrared spectroscopy. For biological functions, the focus is on its roles and the corresponding assessment methods in processes such as cell proliferation, migration, adhesion, and wound healing. Building upon this comprehensive overview, current challenges facing recombinant collagen are identified, and future directions are proposed, emphasizing the need to reduce R&D costs, refine testing methods for cosmetic products, and improve safety evaluation protocols to advance the field.
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