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首页> 外文期刊>Molecular pharmaceutics >Characterization of Protein-Excipient Microheterogeneity in Biopharmaceutical Solid-State Formulations by Confocal Fluorescence Microscopy
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Characterization of Protein-Excipient Microheterogeneity in Biopharmaceutical Solid-State Formulations by Confocal Fluorescence Microscopy

机译:通过共聚焦荧光显微镜表征生物制药固态配方中蛋白质 - 赋形剂微孔性能

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摘要

Protein-stabilizer microheterogeneity is believed to influence long-term protein stability in solid-state biopharmaceutical formulations and its characterization is therefore essential for the rational design of stable formulations. However, the spatial distribution of the protein and the stabilizer in a solid-state formulation is, in general, difficult to characterize because of the lack of a functional, simple, and reliable characterization technique. We demonstrate the use of confocal fluorescence microscopy with fluorescently labeled monoclonal antibodies (mAbs) and antibody fragments (Fabs) to directly-visualize three-dimensional particle morphologies and protein distributions in dried biopharmaceutical formulations, without restrictions on processing conditions or the need for extensive data analysis. While industrially relevant lyophilization procedures of a model IgG1 mAb generally lead to uniform protein excipient distribution, the method shows that specific spray-drying conditions lead to distinct protein excipient segregation. Therefore, this method can enable more definitive optimization of formulation conditions than has previously been possible.
机译:据信蛋白质 - 稳定剂微型能量性可影响固态生物制剂中的长期蛋白质稳定性,因此其表征对于稳定制剂的合理设计是必不可少的。然而,蛋白质和稳定剂在固态配方中的空间分布通常是由于缺乏功能性,简单和可靠的表征技术而表征难以表征。我们证明使用共聚焦荧光显微镜与荧光标记的单克隆抗体(mAb)和抗体片段(Fabs)直接可视化干生物制药制剂中的三维颗粒形态和蛋白质分布,而不限制加工条件或需要广泛数据的需求分析。虽然IgG1 MAB的工业相关的冻干程序通常导致均匀的蛋白质赋形剂分布,但该方法表明特定的喷雾干燥条件导致不同的蛋白质赋形剂偏析。因此,该方法可以使得可以更明确的配方条件优化而不是先前可能的。

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