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反离子优化用于疏水离子对(HIP):揭示关键因素。

Counterion optimization for hydrophobic ion pairing (HIP): Unraveling the key factors.

机构信息

Department of Pharmaceutical Technology, University of Innsbruck, Institute of Pharmacy, Center for Chemistry and Biomedicine, 6020 Innsbruck, Austria; Thiomatrix Forschungs- und Beratungs GmbH, Trientlgasse 65, 6020 Innsbruck, Austria.

Department of Pharmaceutical Technology, University of Innsbruck, Institute of Pharmacy, Center for Chemistry and Biomedicine, 6020 Innsbruck, Austria.

出版信息

Int J Pharm. 2023 Nov 25;647:123507. doi: 10.1016/j.ijpharm.2023.123507. Epub 2023 Oct 15.

Abstract

In the present study, various surfactants were combined with insulin (INS), bovine serum albumin (BSA) and horseradish peroxidase (HRP) via hydrophobic ion pairing to increase lipophilicity and facilitate incorporation into self-emulsifying drug delivery systems (SEDDS). Lipophilicity of model proteins was successfully increased, achieving log D values up to 3.5 (INS), 3.2 (BSA) and 1.2 (HRP). Hereby, key factors responsible for complex formation were identified. In particular, surfactants with branched alkyl chains or chain lengths greater than C12 showed favorable properties for hydrophobic ion pairs (HIP). Furthermore, flexibility of the carbon chain resulted in higher lipophilicity and suitability of polar head groups of surfactants for HIP decreased in the rank order sulfonate > sulfosuccinate > phosphate = sulfate > carbonate > phosphonic acids = sulfobetaines. Stability studies of formed HIP complexes were performed in various gastrointestinal fluids and their solubility was determined in commonly used SEDDS excipients. Formed complexes were stable in simulated gastrointestinal fluids and could be incorporated into SEDDS formulations (C1: 10% caprylocaproyl polyoxyl-8 glycerides, 20% PEG-40 hydrogenated castor oil, 20% medium-chain triglycerides, 50% n-butanol; C2: 10% caprylocaproyl polyoxyl-8 glycerides, 20% PEG-40 hydrogenated castor oil, 20% medium-chain triglycerides, 40% n-butanol, 10% 1,2-butanediol), resulting in suitable payloads of up to 11.9 mg/ml for INS, 1.0 mg/ml for BSA and 1.6 mg/ml for HRP.

摘要

在本研究中,通过疏水离子配对将各种表面活性剂与胰岛素 (INS)、牛血清白蛋白 (BSA) 和辣根过氧化物酶 (HRP) 结合,以增加亲脂性并促进其纳入自乳化药物传递系统 (SEDDS)。成功增加了模型蛋白的亲脂性,实现了 log D 值高达 3.5(INS)、3.2(BSA)和 1.2(HRP)。由此确定了形成复合物的关键因素。特别是具有支链烷基链或链长大于 C12 的表面活性剂对疏水离子对 (HIP) 表现出有利的性质。此外,碳链的柔韧性导致更高的亲脂性,并且表面活性剂的极性头基团对于 HIP 的适宜性按以下顺序降低:磺酸盐 > 磺基琥珀酸盐 > 磷酸盐 = 硫酸盐 > 碳酸盐 > 膦酸 = 磺基甜菜碱。在各种胃肠液中进行了形成的 HIP 复合物的稳定性研究,并在常用的 SEDDS 赋形剂中测定了它们的溶解度。形成的复合物在模拟胃肠液中稳定,可以被纳入 SEDDS 制剂(C1:10%辛基十二酰基聚氧乙烯-8 甘油酯、20%聚乙二醇-40 氢化蓖麻油、20%中链甘油三酯、50%正丁醇;C2:10%辛基十二酰基聚氧乙烯-8 甘油酯、20%聚乙二醇-40 氢化蓖麻油、20%中链甘油三酯、40%正丁醇、10%1,2-丁二醇),导致 INS 的适宜载药量高达 11.9mg/ml、BSA 为 1.0mg/ml 和 HRP 为 1.6mg/ml。

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