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首页> 外文期刊>International Journal of Pharmaceutics >Quality by design: Impact of formulation variables and their interactions on quality attributes of a lyophilized monoclonal antibody
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Quality by design: Impact of formulation variables and their interactions on quality attributes of a lyophilized monoclonal antibody

机译:设计质量:制剂变量及其相互作用对冻干单克隆抗体质量属性的影响

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摘要

The purpose of this study was to use QbD approaches to evaluate the effect of several variables and their interactions on quality of a challenging model murine IgG3κ monoclonal antibody (mAb), and then to obtain an optimized formulation with predefined quality target product profile. This antibody was chosen because it has a propensity to precipitate and thus represents a challenge condition for formulation development. Preliminary experiments were conducted to rule out incompatible buffer systems for the mAb product quality. A fractional factorial experimental design was then applied to screen the effects of buffer type, pH and excipients such as sucrose, sodium chloride (NaCl), lactic acid and Polysorbate 20 on glass transition temperature (T′ g), monoclonal antibody concentration (A 280), presence of aggregation, unfolding transition temperature (T m) of the lyophilized product, and particle size of the reconstituted product. A Box-Behnken experimental design was subsequently applied to study the main, interaction, and quadratic effects of these variables on the responses. Pareto ranking analyses showed that the three most important factors affecting the selected responses for this particular antibody were pH, NaCl, and Polysorbate 20. The presence of curvature in the variables' effects on responses indicated interactions. Based on the constraints set on the responses, a design space was identified for this mAb and confirmed with experiments at three different levels of the variables within the design space. The model indicated a combination of high pH (8) and NaCl (50 mM) levels, and a low Polysorbate 20 (0.008 mM) level at which an optimal formulation of the mAb could be achieved. Moisture contents and other analytical procedures such as size exclusion chromatography, protein A analysis and SDS-PAGE of the pre-lyophilized and final reconstituted lyophilized products indicated an intact protein structure with minimal aggregation after formulation and lyophilization. In conclusion, experimental design approach was effective in identifying optimal concentrations of excipients and pH for this challenging monoclonal antibody formulation.
机译:这项研究的目的是使用QbD方法来评估几个变量及其相互作用对具有挑战性的模型鼠IgG3κ单克隆抗体(mAb)的质量的影响,然后获得具有预定质量目标产品概况的优化制剂。选择该抗体是因为它具有沉淀倾向,因此代表了制剂开发的挑战性条件。进行了初步实验,以排除mAb产品质量不兼容的缓冲系统。然后应用分数阶乘实验设计来筛选缓冲液类型,pH和辅料如蔗糖,氯化钠(NaCl),乳酸和聚山梨酯20对玻璃化转变温度(T'g),单克隆抗体浓度(A 280)的影响),凝集的存在,冻干产品的展开转变温度(T m)以及重构产品的粒径。 Box-Behnken实验设计随后用于研究这些变量对响应的主效应,相互作用和二次效应。 Pareto排名分析表明,影响此特定抗体选择反应的三个最重要因素是pH,NaCl和Polysorbate20。变量对反应的影响中存在曲率表明存在相互作用。基于对响应设置的约束,为此mAb识别了一个设计空间,并通过在设计空间内变量的三个不同级别上的实验进行了确认。该模型显示了高pH(8)和NaCl(50 mM)含量,以及低聚山梨酯20(0.008 mM)含量的组合,在该浓度下可以实现mAb的最佳配方。水分含量和其他分析程序,如尺寸排阻色谱,蛋白A分析和预冻干和最终重构的冻干产品的SDS-PAGE表明,完整的蛋白质结构在配制和冻干后具有最小的聚集。总之,对于这种具有挑战性的单克隆抗体制剂,实验设计方法可以有效地确定辅料的最佳浓度和pH。

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