Diederichs Tim, Mittag Judith J, Humphrey James, Voss Söhnke, Carle Stefan, Buske Julia, Garidel Patrick
Boehringer Ingelheim Pharma GmbH & Co. KG, Innovation Unit, PDB, Birkendorfer Straße 65, 88397 Biberach an der Riss, Germany.
Boehringer Ingelheim Pharma GmbH & Co. KG, Innovation Unit, PDB, Birkendorfer Straße 65, 88397 Biberach an der Riss, Germany.
Int J Pharm. 2023 Mar 25;635:122660. doi: 10.1016/j.ijpharm.2023.122660. Epub 2023 Feb 3.
Biologicals including monoclonal antibodies are the current flagships in pharmaceutical industry. However, they are exposed to a multitude of destabilization conditions like for instance hydrophobic interfaces, leading to reduced biological activity. Polysorbates are commonly applied to effectively stabilize these active pharmaceutical ingredients against colloidal stress. Nevertheless, chemical instability of polysorbate via hydrolysis or oxidation results in degradation products that might form particles via phase separation. Polysorbates are mixtures of hundreds of individual components, and recently purer quality grades with reduced variations in the fatty acid composition are available. As the protective function of polysorbate itself is not completely understood, even less is known about its individual components, raising the question of the existence of a superior polysorbate species in respect to protein stabilization or degradation susceptibility. Here, we evaluated the protective function of four main fractions of polysorbate 20 (PS20) in agitation studies with monoclonal antibodies, followed by particle analysis as well as protein and polysorbate content determination. The commercially-available inherent mixtures PS20 high purity and PS20 all-laurate, as well as the fraction isosorbide-POE-monolaurate showed superior protection against mechanical-induced stress (visual inspection and turbidity) at the air-water interface in comparison to sole sorbitan-POE-monolaurate, -dilaurate, and -trilaurate. Fractions composed mainly of higher-order esters like sorbitan-POE-dilaurate and sorbitan-POE-trilaurate indicated high turbidities as indication for subvisible and small particles accompanied by a reduced protein monomer content after agitation. For the isosorbide-POE-monolaurates as well as for the inherent polysorbate mixtures no obvious differences in protein content and protein aggregation (SEC) were observed, reflecting the observations from visual appearance. However, absolute polysorbate concentrations vary drastically between different species in the actual formulations. As there are still open questions in respect to protein specificity or regarding mixtures versus individual components of PS20, further studies must be performed, to gain a better understanding of a "generalized" stabilizing effect of polysorbates on monoclonal antibodies. The knowledge of the characteristics of individual polysorbate species can have the potential to pave the way to superior detergents in respect to protein stabilization and/or degradation susceptibility.
包括单克隆抗体在内的生物制品是制药行业当前的旗舰产品。然而,它们会面临多种使稳定性降低的条件,例如疏水界面,这会导致生物活性降低。聚山梨酯通常用于有效稳定这些活性药物成分,使其免受胶体应力影响。然而,聚山梨酯通过水解或氧化产生的化学不稳定性会导致降解产物,这些降解产物可能通过相分离形成颗粒。聚山梨酯是数百种单个成分的混合物,最近有了脂肪酸组成变化更小的更纯质量等级产品。由于聚山梨酯本身的保护功能尚未完全了解,对其单个成分的了解就更少了,这就引发了一个问题,即就蛋白质稳定化或降解敏感性而言,是否存在一种更优质的聚山梨酯种类。在此,我们在单克隆抗体的搅拌研究中评估了聚山梨酯20(PS20)四个主要组分的保护功能,随后进行了颗粒分析以及蛋白质和聚山梨酯含量测定。与单独的脱水山梨醇聚氧乙烯单月桂酸酯、二月桂酸酯和三月桂酸酯相比,市售的固有混合物PS20高纯度品和PS20全月桂酸酯,以及异山梨醇聚氧乙烯单月桂酸酯组分在气 - 水界面处对机械诱导应力(目视检查和浊度)表现出更好的保护作用。主要由高阶酯如脱水山梨醇聚氧乙烯二月桂酸酯和脱水山梨醇聚氧乙烯三月桂酸酯组成的组分显示出高浊度,这表明存在亚可见和小颗粒,并且搅拌后蛋白质单体含量降低。对于异山梨醇聚氧乙烯单月桂酸酯以及固有聚山梨酯混合物,未观察到蛋白质含量和蛋白质聚集(尺寸排阻色谱法)有明显差异,这与目视外观观察结果一致。然而,实际配方中不同种类的聚山梨酯绝对浓度差异很大。由于在蛋白质特异性方面以及关于PS20的混合物与单个成分方面仍存在未解决的问题,必须进行进一步研究,以更好地理解聚山梨酯对单克隆抗体的“普遍”稳定作用。了解单个聚山梨酯种类的特性有可能为在蛋白质稳定化和/或降解敏感性方面的优质去污剂铺平道路。