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High-level expression and preparation of recombinant human fibrinogen as biopharmaceuticals

机译:重组人纤维蛋白原作为生物药物的高表达及制备

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摘要

Fibrinogen is a large and complex glycoprotein containing two sets of each of three different chains (α, β and γ). There have been no reports of high-level expression of fibrinogen at commercial levels using mammalian cultured cells such as CHO cells because of the difficulty in highly expressing a protein with such a complex structure. We achieved high-level (1.3 g/l or higher) expression of recombinant human fibrinogen using CHO DG44 cells by optimizing the expression system and culture conditions. We also succeeded in establishing a high-recovery preparation method for recombinant fibrinogen that rarely yields degraded products. To characterize the properties of the recombinant human fibrinogen, we performed SDS-PAGE; western blotting of the α, β and γ chains using specific antibodies and scanning electron microscopy observations of fibrin fibres. We also evaluated the functional equivalence between recombinant fibrinogen and plasma fibrinogen with respect to the release of fibrinopeptides initiated by thrombin and its cross-linking properties. The basic properties of recombinant fibrinogen showed no apparent differences from those of plasma fibrinogen. Here, we report the development of methods for the culture and preparation of recombinant human fibrinogen of satisfactory quality that can be scaled up to the commercial level.
机译:纤维蛋白原是一种大而复杂的糖蛋白,包含两组分别位于三个不同链(α,β和γ)中的糖蛋白。由于难以高表达具有这种复杂结构的蛋白质,所以没有报道使用哺乳动物培养的细胞例如CHO细胞以商业水平高水平表达纤维蛋白原。通过优化表达系统和培养条件,我们使用CHO DG44细胞实现了重组人纤维蛋白原的高水平表达(1.3 g / l或更高)。我们还成功地建立了重组纤维蛋白原的高回收率制备方法,该方法很少产生降解产物。为了表征重组人纤维蛋白原的特性,我们进行了SDS-PAGE。使用特异性抗体进行的蛋白质,α和β和γ链的蛋白质印迹分析以及纤维蛋白纤维的扫描电子显微镜观察。我们还评估了重组纤维蛋白原和血浆纤维蛋白原之间功能上的等效性,即凝血酶引发的纤维蛋白肽的释放及其交联特性。重组纤维蛋白原的基本特性与血浆纤维蛋白原没有明显差异。在这里,我们报道了培养和制备质量令人满意的可重组至商业水平的重组人纤维蛋白原的方法的发展。

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