In Vitro Physicochemical and Pharmacokinetic Properties of Bevacizumab Dissolved in Silicone Oils Compared to Hydrogel-Substitutes and Porcine Vitreous Bodies.

IF 5 3区 化学 Q1 POLYMER SCIENCE
Gels Pub Date : 2024-07-28 DOI:10.3390/gels10080501
Maximilian Hammer, Jonathan Herth, Lorenz Herbster, Manuel Ben Böhmann, Marcel Muuss, Ramin Khoramnia, Alexander Scheuerle, Walter Mier, Sabrina Wohlfart, Gerd Uwe Auffarth, Philipp Uhl
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引用次数: 0

Abstract

Anti-VEGF agents, e.g., bevacizumab, are used in retinal surgery, while their interaction with silicone oils and novel hydrogels remains unclear. This study examines the in vitro pharmacokinetics of bevacizumab in silicone oil-filled eyes compared to various hydrogel replacements and the porcine vitreous body as well as its impact on the interface tension of silicone oils. An in vitro model filled with light or heavy silicone oil, porcine vitreous bodies, or hydrogels (alginate and polyethylene glycol (PEG)-based) was equilibrated with a balanced salt solution. Monitoring of bevacizumab in the aqueous phase was conducted for up to 24 h, and its effect on interfacial tension was studied. Significant differences in bevacizumab partitioning were observed across endotamponades after 24 h. In silicone oils, bevacizumab was found exclusively in the aqueous phase, while in the other endotamponades, it accumulated in the gel phase (96.1% in porcine vitreous body, 83.5% in alginate, and 27.6% in PEG-based hydrogel). Bevacizumab significantly reduced interfacial tension (40 to 8 mN/m), possibly enhancing silicone oil emulsification. The type of endotamponade heavily influenced the bevacizumab concentration in the aqueous. The vitreous body and replacement hydrogels likely serve as a drug reservoir, highlighting the need for in vivo studies to explore these interactions prior to clinical application.

与水凝胶替代物和猪玻璃体相比,溶解在硅油中的贝伐珠单抗的体外理化和药代动力学特性。
贝伐单抗等抗血管内皮生长因子药物被用于视网膜手术,但它们与硅油和新型水凝胶的相互作用仍不清楚。本研究考察了贝伐单抗在硅油填充的眼球中与各种水凝胶替代物和猪玻璃体相比的体外药代动力学,以及它对硅油界面张力的影响。用平衡盐溶液平衡填充有轻质或重质硅油、猪玻璃体或水凝胶(海藻酸盐和聚乙二醇 (PEG) 基)的体外模型。对水相中的贝伐珠单抗进行了长达 24 小时的监测,并研究了其对界面张力的影响。在硅油中,贝伐单抗只存在于水相中,而在其他内填料中,贝伐单抗则积聚在凝胶相中(猪玻璃体中为 96.1%,藻酸盐中为 83.5%,PEG 水凝胶中为 27.6%)。贝伐单抗能明显降低界面张力(40 至 8 mN/m),这可能会增强硅油的乳化作用。内腔填塞的类型严重影响了水液中贝伐单抗的浓度。玻璃体和替代水凝胶很可能是药物储存库,这突出表明在临床应用前需要进行体内研究以探索这些相互作用。
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来源期刊
Gels
Gels POLYMER SCIENCE-
CiteScore
4.70
自引率
19.60%
发文量
707
审稿时长
11 weeks
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