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Adsorption of polypropylene oxide-polyethylene oxide type surfactants at surfaces of pharmaceutical relevant materials: effect of surface energetics and surfactant structures

机译:药物相关材料表面的聚环氧丙烷 - 聚环氧丙烷表面活性剂的吸附:表面能量和表面活性剂结构的影响

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摘要

Protein therapeutics are exposed to various surfaces during product development, where their adsorption possibly causes unfolding, denaturation, and aggregation. In this paper, we aim to characterize four types of typical surfaces used in the development of biologics: polycarbonate, polyethersulfone, borosilicate glass, and cellulose. Contact angles of these surfaces were measured using three probing liquids: water, formamide, and diidomethane, from which acid/base (AB) and Lifshitz-van der Waals (LW) interaction components were derived. To explore the interactions of surfactants of Pluronics/Poloxamers (PEO-PPO-PEO copolymers) with these surfaces, the adsorption of three Pluronics (F68, F127, and L44) at these surfaces was determined using a quartz crystal microbalance with dissipation technique (QCM-D). For hydrophobic surfaces without AB component (polycarbonate and polyethersulfone), these copolymers exhibited significant adsorption with a little dissipation at low concentrations. For hydrophilic surfaces with AB component (cellulose and borosilicate), the adsorption at low-surfactant concentration is low while dissipation is relatively high. Additionally, the chemical properties of Pluronics such as the ratio of PPO to PEO, along with the interaction of PPO with surfaces were observed to play a critical role in adsorption. Furthermore, the interfacial structure of the adsorbed layer was affected by both AB interaction and the presence of PEO block.
机译:在产品开发期间,蛋白质治疗剂暴露于各种表面,其吸附可能导致展开,变性和聚集。在本文中,我们的目的是在生物学发展中表征四种类型的典型表面:聚碳酸酯,聚醚砜,硼硅酸盐玻璃和纤维素。使用三种探测液体测量这些表面的接触角:水,甲酰胺和二甲烷,衍生酸/碱(AB)和Lifshitz-van der WaaS(LW)相互作用组分。为了探讨多龙学/泊洛克马酯(PPO-PPO-PEO共聚物)的相互作用与这些表面的相互作用,使用具有耗散技术的石英晶微观测定这些表面的三种Pluronics(F68,F127和L44)的吸附(QCM -D)。对于没有AB组分的疏水表面(聚碳酸酯和聚醚砜),这些共聚物表现出显着的吸附,在低浓度下略有散发。对于具有AB组分(纤维素和硼硅酸盐)的亲水性表面,在低表面活性剂浓度下吸附低,同时耗散相对较高。另外,观察PPO与PPO与PEO的比例的多种子学的化学性质,以及PPO与表面的相互作用在吸附中发挥着关键作用。此外,吸附层的界面结构受AB相互作用和PEO块的存在影响。

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