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从制剂角度看他汀类药物在环糊精水性眼用制剂中的化学稳定性表征及动力学

The Chemical Stability Characterization and Kinetics of Statins in Aqueous Cyclodextrin Ocular Preparations: A Formulation Perspective.

作者信息

Abo Horan Ismael, Loftsson Thorsteinn, Sigurdsson Hakon Hrafn

机构信息

Faculty of Pharmaceutical Sciences, University of Iceland, Hofsvallagata 53, 107 Reykjavik, Iceland.

出版信息

Pharmaceutics. 2025 Jun 23;17(7):808. doi: 10.3390/pharmaceutics17070808.

Abstract

: Topical statin therapy holds promise for ocular diseases, such as age-related macular degeneration, but the effective delivery to the posterior segment is limited by poor aqueous solubility, chemical instability, and ocular barriers. Cyclodextrins (CDs) can enhance statin solubility and stability; however, the behavior of CD-statin complexes in aqueous eye drops-particularly their influence on the equilibrium between the inactive lactone (ring closed) and active hydroxyacid forms (ring open)-remains unclear. This study aimed to (i) investigate how 5% and 10% (/) concentrations of selected CDs affect the lactone/acid equilibrium of simvastatin and atorvastatin and (ii) define formulation parameters (statin form, CD type and concentration, and pH range) for stable eye drop development. : Simvastatin or atorvastatin was added to buffered solutions (pH 2.0 to pH 9.5) of RMβCD, HPβCD, γ-CD, or SBEβCD at 0%, 5%, and 10% (/), incubated at 23 ± 1 °C, and sampled over time for UPLC quantification of lactone and hydroxyacid forms, and rate constants for the forward and reverse reaction were calculated. Phase solubility studies were also conducted to further characterize equilibrium behavior in aqueous CD systems. : The lactone form was most stable at a pH of 4.5, while the hydroxyacid form prevailed at a pH ≥ 7. γ-CD and HPβCD accelerated lactone hydrolysis for both statins, whereas RMβCD exerted a stabilizing effect. Increasing the CD concentration from 5% to 10% provided minimal additional stabilization. : These findings highlight that the precise control of the pH, an appropriate cyclodextrin choice, and the selection of the statin form are critical to developing chemically stable eye drops.

摘要

局部应用他汀类药物治疗有望用于治疗眼部疾病,如年龄相关性黄斑变性,但由于水溶性差、化学稳定性低以及眼部屏障等因素,药物向眼后段的有效递送受到限制。环糊精(CDs)可提高他汀类药物的溶解度和稳定性;然而,CD - 他汀类药物复合物在水性滴眼液中的行为,尤其是它们对无活性内酯(环闭合)和活性羟基酸形式(环打开)之间平衡的影响仍不清楚。本研究旨在:(i)研究选定的CDs的5%和10%(/)浓度如何影响辛伐他汀和阿托伐他汀的内酯/酸平衡;(ii)确定用于开发稳定滴眼液的配方参数(他汀类药物形式、CD类型和浓度以及pH范围)。:将辛伐他汀或阿托伐他汀分别以0%、5%和10%(/)添加到随机甲基化β - 环糊精(RMβCD)、羟丙基β - 环糊精(HPβCD)、γ - 环糊精或磺丁基醚β - 环糊精(SBEβCD)的缓冲溶液(pH 2.0至pH 9.5)中,在23±1℃下孵育,并随时间取样,通过超高效液相色谱(UPLC)定量内酯和羟基酸形式,并计算正向和反向反应的速率常数。还进行了相溶解度研究,以进一步表征CD水性体系中的平衡行为。:内酯形式在pH 4.5时最稳定,而羟基酸形式在pH≥7时占主导。γ - 环糊精和羟丙基β - 环糊精加速了两种他汀类药物的内酯水解,而随机甲基化β - 环糊精则发挥了稳定作用。将CD浓度从5%提高到10%提供的额外稳定性极小。:这些发现突出表明,精确控制pH、选择合适的环糊精以及他汀类药物形式的选择对于开发化学稳定的滴眼液至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab37/12300459/a44636c60536/pharmaceutics-17-00808-g004.jpg

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