首页> 外文期刊>The protein journal >Development of an in vitro Bioassay for Recombinant Human Erythropoietin (rHuEPO) Based on Proliferative Stimulation of an Erythroid Cell Line and Analysis of Sialic Acid Dependent Microheterogeneity: UT-7 Cell Bioassay
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Development of an in vitro Bioassay for Recombinant Human Erythropoietin (rHuEPO) Based on Proliferative Stimulation of an Erythroid Cell Line and Analysis of Sialic Acid Dependent Microheterogeneity: UT-7 Cell Bioassay

机译:基于增殖性刺激红细胞细胞系的增殖刺激和唾液酸依赖性微孔分析的重组人促红细胞生成素(Rhuepo)的体外生物测定的研制:UT-7细胞生物测定

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Determination of biological activity and its comparison with clinical behavior is important in the quality assessment of therapeutic glycoproteins. In vivo studies are usually employed for evaluating bioactivity of these glycomolecules. However, alternative methods are required to simplify the bioassay and avoid ethical issues associated with in vivo studies. Negatively charged sialic acid residues are known to be critical for in vivo bioactivity of rHuEPO. To address this need, we employed the human acute myeloid leukemia cell line UT-7 for the determination of proliferative stimulation induced by rHuEPO. Relative potencies of various intact and sugar-trimmed rHuEPO preparations were estimated using the International Standard for Human r-DNA derived EPO (87/684) as a reference for bioactivity. The cellular response was measured with a multi-channel photometer using a colorimetric microassay, based on the metabolism of the Resazurin sodium by cell viability. For a resourceful probing of physiological features of rHuEPO with significance, we obtained partly or completely desialylated rHuEPO digested by the neuraminidase enzyme without degradation of carbohydrates. Two-fold higher specific activity was shown by asialoerythropoietin in in vitro analysis compared with the sialoerythropoietin. Further, computational studies were also carried out to construct the 3D model of the erythropoietin (EPO) protein structure using standard comparative modeling methods. The quality of the model was validated using Procheck and protein structure analysis (ProSA) server tools. N-glycan units were constructed; moreover, EPO protein was glycosylated at potential glycosylation amino acid residue sites. The method described should be suitable for potency assessments of pharmaceutical formulations of rHuEPO (European Pharmacopeia, 2016).
机译:生物活性的测定及其与临床行为的比较对于治疗性糖蛋白的质量评估是重要的。体内研究通常用于评估这些甘道分子的生物活性。然而,需要替代方法来简化生物测定,并避免与体内研究相关的道德问题。已知带负电的唾液酸残基对rhuepo体内生物活性至关重要。为了满足这种需求,我们使用人急性髓性白血病细胞系UT-7来测定Rhuepo诱导的增殖刺激。使用国际人R-DNA衍生EPO(87/684)的国际标准作为生物活性的参考,估计各种完整和糖分修剪的RHUEPO制剂的相对效力。基于细胞活力的基于转塔嗪钠的代谢,用比色微量化测量细胞响应。对于具有重要性的Rhuepo的生理特征的探讨,我们通过神经氨酸酶消化的部分或完全除去的rhuepo而不会降解碳水化合物。与唾液管内素相比,Asialoerythropoietin通过Asialoerythropoietin显示了两倍更高的特异性活性。此外,还使用标准对比建模方法对计算研究构建促红细胞生成素(EPO)蛋白质结构的3D模型。使用Procheck和蛋白质结构分析(ProSa)服务器工具验证了模型的质量。构建了N-Glycan单位;此外,EPO蛋白在潜在的糖基化氨基酸残基位点是糖基化。所描述的方法适用于Rhuepo的药物制剂(欧洲药典,2016)的效力评估。

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