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Modification of fibroin film with a chimera fibroin fragment for improvement of cell adhesion

机译:用嵌合纤维素片段改性纤维素膜改善细胞粘附性

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Silk fibroin is a naturally occurring structural protein with good mechanical properties used in a variety of forms, such as powder, fiber, film, and gel. Although silk fibroin is potentially suitable for use in tissue engineering, it lacks cell regulation functions such as cell adhesion, growth, metabolism, and differentiation. The immobilization of biologically active molecules such as proteins and peptides has been reported as promising in controlling cell behavior. Silk fibroin's phase transition is characterized by a conformational change of protein from a random coil to a beta sheet. During phase transition, biological molecules can be stably entrapped in silk fibroin without the use of chemicals. We designed a novel immobilization using this phase transition mechanism with a chimera fibroin fragment. The chimera fibroin fragment was constructed by linking a bioactive peptide to fibroin fragments including crystal regions. In the first study, a synthetic oligonucleotide encoding Arg-Gly-Asp peptide which promotes cell adhesion, was fused to the fibroin fragment gene through inframe gene fusion, and the chimera fibroin (RGD-fibroin) gene was expressed by E.coli. This paper discusses RGD-fibroin construction, and the results of cell adhesion on fibroin films containing RGD-fibroin.
机译:丝素蛋白是一种天然存在的结构蛋白,具有良好的机械性能,用于各种形式,例如粉末,纤维,薄膜和凝胶。虽然丝素蛋白可能适用于组织工程,但它缺乏细胞调节功能,如细胞粘附,生长,新陈代谢和分化。据报道,在控制细胞行为方面存在对生物活性分子如蛋白质和肽的固定化。丝素素的相转变的特征在于从随机线圈到β板的蛋白质的构象变化。在相转变期间,在不使用化学物质的情况下,可以稳定地夹住生物分子。我们设计了使用具有嵌合纤维素片段的该相转变机制的新型固定化。通过将生物活性肽连接到包括晶体区域的纤维素片段来构建嵌合体纤维素片段。在第一研究中,编码促进细胞粘合力的氨基甘油族肽的合成寡核苷酸与紫蛋白片段基因融合,通过丙蛋白融合融合,并通过大肠杆菌表达嵌合体纤维素(RGD-纤维素)基因。本文讨论了RGD-纤维素结构,以及含有RGD-纤维素的纤维素膜的细胞粘附结果。

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