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李翛然
(2023-12-30 10:31):
#paper doi:10.4161/bioe.28791 Bioengineered collagens: Emerging directions for biomedical materials
1. 胶原蛋白作为生物医学材料的历史和应用。
2. 动物胶原蛋白的局限性及疾病传播风险。
3. 重组胶原蛋白技术的发展,特别是在大肠杆菌中表达的细菌胶原蛋白的特性和潜在应用。
4. 生物工程方法改善胶原蛋白稳定性和功能的可能性。
5. 不同系统(如酵母、昆虫细胞、植物、微生物)用于胶原蛋白的生产。
6. 细菌胶原蛋白的特性、稳定性、非免疫原性和生产方法。
7. 结合生物工程技术,设计出具有特定功能的胶原蛋白结构。
Abstract:
Mammalian collagen has been widely used as a biomedical material. Nevertheless, there are still concerns about the variability between preparations, particularly with the possibility that the products may transmit animal-based …
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Mammalian collagen has been widely used as a biomedical material. Nevertheless, there are still concerns about the variability between preparations, particularly with the possibility that the products may transmit animal-based diseases. Many groups have examined the possible application of bioengineered mammalian collagens. However, translating laboratory studies into large-scale manufacturing has often proved difficult, although certain yeast and plant systems seem effective. Production of full-length mammalian collagens, with the required secondary modification to give proline hydroxylation, has proved difficult in E. coli. However, recently, a new group of collagens, which have the characteristic triple helical structure of collagen, has been identified in bacteria. These proteins are stable without the need for hydroxyproline and are able to be produced and purified from E. coli in high yield. Initial studies indicate that they would be suitable for biomedical applications.
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