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Investigating high-concentration monoclonal antibody powder suspension in nonaqueous suspension vehicles for subcutaneous injection

机译:皮下注射非水悬浮液中高浓度单克隆抗体粉末悬浮液的研究

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Developing high-concentration monoclonal antibody (mAb) liquid formulations for subcutaneous (s.c.) administration is challenging because increased viscosity makes injection difficult. To overcome this obstacle, we investigated a nonaqueous powder suspension approach. Three IgG1 mAbs were spray dried and suspended at different concentrations in Miglyol? 840, benzyl benzoate, or ethyl lactate. Suspensions were characterized for viscosity, particle size, and syringeability; physical stability was visually inspected. Suspensions generally outperformed liquid solutions for injectability despite higher viscosity at the same mAb concentrations. Powder formulations and properties had little effect on viscosity or injectability. Ethyl lactate suspensions had lowest viscosity (<20 cP) and lowest syringe injection glide force (<15 N) at mAb concentrations as high as 333 mg/mL (500 mg powder/mL). Inverse gas chromatography analysis indicated that the vehicle was the most important factor impacting suspension performance. Ethyl lactate rendered greater heat of sorption (suggesting strong particle-suspension vehicle interaction may reduce particle-particle self-association, leading to low suspension viscosity and glide force) but lacked the physical suspension stability exhibited by the other vehicles. Specific mixtures of ethyl lactate and Miglyol? 840 improved overall performance in high mAb concentration suspensions. This study demonstrated the viability of high mAb concentration (>300 mg/mL) in suspension formulations for s.c. administration.
机译:开发用于皮下给药的高浓度单克隆抗体(mAb)液体制剂具有挑战性,因为增加的粘度使注射变得困难。为了克服这一障碍,我们研究了一种非水性粉末悬浮法。将三种IgG1 mAb喷雾干燥并以不同浓度悬浮在Miglyol? 840,苯甲酸苄酯或乳酸乙酯。对悬浮液的粘度,粒度和可注射性进行了表征;目视检查物理稳定性。尽管在相同的mAb浓度下粘度较高,但对于可注射性而言,悬浮液通常要优于液体溶液。粉末配方和性能对粘度或可注射性影响很小。在mAb浓度高达333 mg / mL(500 mg粉末/ mL)的mAb浓度下,乳酸乙酯悬浮液的粘度最低(<20 cP),注射器注射滑移力最低(<15 N)。反相气相色谱分析表明,载体是影响悬架性能的最重要因素。乳酸乙酯具有更高的吸附热(建议较强的颗粒与悬浮液载体相互作用可能会降低颗粒与颗粒的自缔合,导致较低的悬浮液粘度和滑移力),但缺乏其他载体所表现出的物理悬浮液稳定性。乳酸乙酯和Miglyol的特定混合物? 840改善了高mAb浓度悬浮液的整体性能。这项研究证明了悬浮制剂中高浓度mAb(> 300 mg / mL)的可行性。行政。

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