Laboratory of Thermodynamics, Department of Biochemical and Chemical Engineering, TU Dortmund University, 44227 Dortmund, Germany.
Roquette Asia Pacific Pte. Ltd., Singapore 138588, Singapore.
Molecules. 2022 Aug 10;27(16):5094. doi: 10.3390/molecules27165094.
Due to the growing demand for patient-friendly subcutaneous dosage forms, the ability to increasing protein solubility and stability in formulations to deliver on the required high protein concentrations is crucial. A common approach to ensure protein solubility and stability in high concentration protein formulations is the addition of excipients such as sugars, amino acids, surfactants, approved by the Food and Drug Administration. In a best-case scenario, these excipients fulfil multiple demands simultaneously, such as increasing long-term stability of the formulation, reducing protein adsorption on surfaces/interfaces, and stabilizing the protein against thermal or mechanical stress. 2-Hydroxylpropyl-β-cyclodextrin (derivative of β-cyclodextrin) holds this potential, but has not yet been sufficiently investigated for use in protein formulations. Within this work, we have systematically investigated the relevant molecular interactions to identify the potential of KleptoseHPB (2-hydroxylpropyl-β-cyclodextrin from Roquette Freres, Lestrem, France) as "multirole" excipient within liquid protein formulations. Based on our results three factors determine the influence of KleptoseHPB on protein formulation stability: (1) concentration of KleptoseHPB, (2) protein type and protein concentration, and (3) quality of the protein formulation. Our results not only contribute to the understanding of the relevant interactions but also enable the target-oriented use of KleptoseHPB within formulation design.
由于对患者友好的皮下剂型的需求不断增长,提高蛋白质在制剂中的溶解度和稳定性以达到所需的高蛋白质浓度的能力至关重要。一种确保高浓度蛋白质制剂中蛋白质溶解度和稳定性的常见方法是添加赋形剂,如糖、氨基酸、表面活性剂等,这些赋形剂已获得美国食品和药物管理局的批准。在理想情况下,这些赋形剂可以同时满足多种需求,例如提高制剂的长期稳定性、减少蛋白质在表面/界面上的吸附,以及稳定蛋白质免受热或机械应力的影响。2-羟丙基-β-环糊精(β-环糊精的衍生物)具有这种潜力,但尚未在蛋白质制剂中得到充分研究。在这项工作中,我们系统地研究了相关的分子相互作用,以确定 KleptoseHPB(来自法国勒斯特雷的罗盖特公司的 2-羟丙基-β-环糊精)作为液体蛋白质制剂中“多用途”赋形剂的潜力。基于我们的结果,有三个因素决定了 KleptoseHPB 对蛋白质制剂稳定性的影响:(1)KleptoseHPB 的浓度,(2)蛋白质类型和蛋白质浓度,以及(3)蛋白质制剂的质量。我们的研究结果不仅有助于理解相关的相互作用,而且还能够在制剂设计中针对目标使用 KleptoseHPB。