Effects of excipients on the interactions of self-emulsifying drug delivery systems with human blood plasma and plasma membranes.

IF 5.7 3区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Drug Delivery and Translational Research Pub Date : 2024-11-01 Epub Date: 2024-02-27 DOI:10.1007/s13346-024-01541-w
Bao Le-Vinh, Nguyet-Minh Nguyen Le, Thi Nhu Quynh Phan, Hung Thanh Lam, Andreas Bernkop-Schnürch
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Abstract

Due to its versatility in formulation and manufacturing, self-emulsifying drug delivery systems (SEDDS) can be used to design parenteral formulations. Therefore, it is necessary to understand the effects of excipients on the behavior of SEDDS formulations upon parenteral administration, particularly their interactions with blood plasma and cell membranes. In this study, we prepared three neutrally charged SEDDS formulations composed of medium-chain triglycerides as the oil phase, polyoxyl-35 castor oil (EL35) and polyethylene glycol (15)-hydroxystearate (HS15) as the nonionic surfactants, medium-chain mono- and diglycerides as the co-surfactant, and propylene glycol as the co-solvent. The cationic surfactant, didodecyldimethylammonium bromide (DDA), and the anionic surfactant, sodium deoxycholate (DEO), were added to the neutral SEDDS preconcentrates to obtain cationic and anionic SEDDS, respectively. SEDDS were incubated with human blood plasma and recovered by size exclusion chromatography. Data showed that SEDDS emulsion droplets can bind plasma protein to different extents depending on their surface charge and surfactant used. At pH 7.4, the least protein binding was observed with anionic SEDDS. Positive charges increased protein binding. SEDDS stabilized by HS15 can adsorb more plasma protein and induce more plasma membrane disruption activity than SEDDS stabilized by EL35. These effects were more pronounced with the HS15 + DDA combination. The addition of DDA and DEO to SEDDS increased plasma membrane disruption (PMD) activities, and DDA (1% w/w) was more active than DEO (2% w/w). PMD activities of SEDDS were concentration-dependent and vanished at appropriate dilution ratios.

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辅料对自乳化给药系统与人体血浆和血浆膜相互作用的影响。
由于自乳化给药系统(SEDDS)在配制和生产方面的多功能性,它可用于设计肠外制剂。因此,有必要了解辅料对 SEDDS 制剂肠外给药行为的影响,特别是它们与血浆和细胞膜的相互作用。在这项研究中,我们制备了三种带中性电荷的 SEDDS 制剂,它们由中链甘油三酯作为油相,聚氧乙烯-35 蓖麻油(EL35)和聚乙二醇(15)-羟基硬脂酸酯(HS15)作为非离子表面活性剂,中链单甘油酯和二甘油酯作为助表面活性剂,丙二醇作为助溶剂组成。在中性 SEDDS 预浓缩物中分别加入阳离子表面活性剂十二烷基二甲基溴化铵(DDA)和阴离子表面活性剂脱氧胆酸钠(DEO),得到阳离子和阴离子 SEDDS。将 SEDDS 与人血浆培养,并通过尺寸排阻色谱法进行回收。数据显示,SEDDS 乳液液滴可在不同程度上与血浆蛋白结合,具体取决于其表面电荷和所使用的表面活性剂。在 pH 值为 7.4 时,阴离子 SEDDS 的蛋白质结合率最低。正电荷增加了蛋白质的结合。与 EL35 稳定的 SEDDS 相比,HS15 稳定的 SEDDS 能吸附更多的血浆蛋白,并诱导更多的血浆膜破坏活性。这些效果在 HS15 + DDA 组合中更为明显。在 SEDDS 中添加 DDA 和 DEO 可提高质膜破坏(PMD)活性,DDA(1% w/w)比 DEO(2% w/w)更活跃。SEDDS 的质膜破坏活性与浓度有关,并在适当的稀释比例下消失。
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来源期刊
Drug Delivery and Translational Research
Drug Delivery and Translational Research MEDICINE, RESEARCH & EXPERIMENTALPHARMACOL-PHARMACOLOGY & PHARMACY
CiteScore
11.70
自引率
1.90%
发文量
160
期刊介绍: The journal provides a unique forum for scientific publication of high-quality research that is exclusively focused on translational aspects of drug delivery. Rationally developed, effective delivery systems can potentially affect clinical outcome in different disease conditions. Research focused on the following areas of translational drug delivery research will be considered for publication in the journal. Designing and developing novel drug delivery systems, with a focus on their application to disease conditions; Preclinical and clinical data related to drug delivery systems; Drug distribution, pharmacokinetics, clearance, with drug delivery systems as compared to traditional dosing to demonstrate beneficial outcomes Short-term and long-term biocompatibility of drug delivery systems, host response; Biomaterials with growth factors for stem-cell differentiation in regenerative medicine and tissue engineering; Image-guided drug therapy, Nanomedicine; Devices for drug delivery and drug/device combination products. In addition to original full-length papers, communications, and reviews, the journal includes editorials, reports of future meetings, research highlights, and announcements pertaining to the activities of the Controlled Release Society.
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