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基于 HSPiP、计算和热力学模型优化的酒石酸托特罗定皮下给药溶剂及基于 GastroPlus 的人体体内预测:第一部分

HSPiP, Computational, and Thermodynamic Model-Based Optimized Solvents for Subcutaneous Delivery of Tolterodine Tartrate and GastroPlus-Based In Vivo Prediction in Humans: Part I.

机构信息

Department of Pharmaceutics, College of Pharmacy, King Saud University, 11451, Riyadh, Saudi Arabia.

Department of Pharmaceutics, School of Pharmaceutical Education and Research (SPER), Jamia Hamdard, New Delhi, 110062, India.

出版信息

AAPS PharmSciTech. 2024 May 1;25(5):93. doi: 10.1208/s12249-024-02800-2.

DOI:10.1208/s12249-024-02800-2
PMID:38693316
Abstract

Tolterodine tartrate (TOTA) is associated with adverse effect, high hepatic access, varied bioavailability, slight aqueous solubility, and short half-life after oral delivery. Hansen solubility parameters (HSP, HSPiP program), experimental solubility (T = 298.2 to 318.2 K and p = 0.1 MPa), computational (van't Hoff and Apelblat models), and thermodynamic models were used to the select solvent(s). HSPiP predicted PEG400 as the most suitable co-solvent based on HSP values (δ = 17.88, δ = 4.0, and δ = 8.8 of PEG400) and comparable to the drug (δ = 17.6, δ = 2.4, and δ = 4.6 of TOTA). The experimental mole fraction solubility of TOTA was maximum (x = 0.0852) in PEG400 confirming the best fit of the prediction. The observed highest solubility was attributed to the δ and δ interacting forces. The activity coefficient (ϒi) was found to be increased with temperature. The higher values of r (linear regression coefficient) and low RMSD (root mean square deviation) indicated a good correlation between the generated "xe" data for crystalline TOTA and the explored models (modified Apelblat and van't Hoff models). TOTA solubility in "PEG400 + water mixture" was endothermic and entropy-driven. IR (immediate release product) formulation can be tailored using 60% PEG400 in buffer solution for 2 mg of TOTA in 0.25 mL (dosing volume). The isotonic binary solution was associated with a pH of 7.2 suitable for sub-Q delivery. The approach would be a promising alternative with ease of delivery to children and aged patients.

摘要

酒石酸托特罗定(TOTA)与不良反应、高肝摄取率、变异性生物利用度、轻微水溶性和口服后半衰期短有关。汉森溶解度参数(HSP,HSPiP 程序)、实验溶解度(T=298.2 至 318.2 K 和 p=0.1 MPa)、计算(范特霍夫和阿佩尔布拉特模型)和热力学模型用于选择溶剂。HSPiP 根据 HSP 值(PEG400 的 δ=17.88、δ=4.0 和 δ=8.8)和与药物的可比性(TOTA 的 δ=17.6、δ=2.4 和 δ=4.6)预测 PEG400 为最合适的共溶剂。TOTA 的实验摩尔分数溶解度在 PEG400 中最大(x=0.0852),证实了预测的最佳拟合。观察到的最高溶解度归因于 δ 和 δ 相互作用力。发现活度系数(ϒi)随温度升高而增加。较高的 r 值(线性回归系数)和低 RMSD(均方根偏差)表明,生成的“xe”数据与所探索的模型(改进的 Apelblat 和范特霍夫模型)之间存在良好的相关性。TOTA 在“PEG400+水混合物”中的溶解度为吸热和熵驱动。IR(速释产品)制剂可以使用缓冲液中的 60% PEG400 进行定制,对于 0.25 mL(给药体积)中的 2 mg TOTA。等渗二元溶液的 pH 值为 7.2,适合皮下给药。该方法将为儿童和老年患者提供一种易于给药的有前途的替代方法。

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