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用于透皮产品的5-氟尿嘧啶的HSPiP、计算建模和质量源于设计辅助的优化方法验证

HSPiP, Computational Modeling, and QbD-Assisted Optimized Method Validation of 5-Fluorouracil for Transdermal Products.

作者信息

Hussain Afzal, Ramzan Mohhammad, Altamimi Mohammad A, Khuroo Tahir, Mohd Siddique Mohd Usman, Alnemer Osamah Abdulrahman

机构信息

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

School of Pharmaceutical Sciences, Lovely Professional University, Phagwara, Punjab 144411, India.

出版信息

ACS Omega. 2023 Dec 22;9(1):903-916. doi: 10.1021/acsomega.3c07061. eCollection 2024 Jan 9.

Abstract

This study addressed the simplest and most efficient HPLC (high-performance liquid chromatography) method for the estimation of 5-fluorouracil (5-FU) from rat blood plasma by implementing the Hansen solubility parameters (HSP), computation prediction program, and QbD (quality by design) tool. The mobile phase selection was based on the HSP predictions and experimental data. The Taguchi model identified seven variables (preoptimization) to screen two factors (mobile phase ratio as A and column temperature as B) at three levels as input parameters in "CCD (central composite design)" optimization (retention time as and peak area as ). The stability study (freeze-thaw cycle and short- and long-term stability) was conducted in the rat plasma. Results showed that HSPiP-based HSP values and computational model-based predictions were well simulated with the experimental solubility data. Acetonitrile (ACN) was relatively suitable over methanol as evidenced by the experimental solubility value, HSP predicted parameters (δ of 5-FU - δ of ACN = 8.3-8.3 = 0 as high interactive solvent whereas δ of 5-FU - δ of methanol = 8.3-21.7 = -13.4), and instrumental conditions. CCD-based dependent variables ( and ) exhibited the best fit of the model as evidenced by a high value of combined desirability (0.978). The most robust method was adopted at A = 96:4 and B = 40 °C to get earlier and high as evidenced by high desirability () = 0.978 (quadratic model with < 0.0023). The estimated values of LLOD and LLOQ were found to be 0.11 and 0.36 μg/mL, respectively with an accuracy range of 94.4-98.7%. Thus, the adopted method was the most robust, reliable, and reproducible methodology for pharmacokinetic parameters after the transdermal application of formulations in the rat.

摘要

本研究通过应用汉森溶解度参数(HSP)、计算预测程序和质量源于设计(QbD)工具,探讨了从大鼠血浆中估算5-氟尿嘧啶(5-FU)的最简单、最有效的高效液相色谱(HPLC)方法。流动相的选择基于HSP预测和实验数据。田口模型确定了七个变量(预优化),以筛选两个因素(流动相比例为A,柱温为B),在三个水平下作为“中心复合设计(CCD)”优化中的输入参数(保留时间为 ,峰面积为 )。在大鼠血浆中进行了稳定性研究(冻融循环以及短期和长期稳定性)。结果表明,基于HSPiP的HSP值和基于计算模型的预测与实验溶解度数据模拟良好。实验溶解度值、HSP预测参数(5-FU的δ - ACN的δ = 8.3 - 8.3 = 0,为高相互作用溶剂,而5-FU的δ - 甲醇的δ = 8.3 - 21.7 = -13.4)以及仪器条件均表明,乙腈(ACN)比甲醇更合适。基于CCD的因变量( 和 )表现出模型的最佳拟合,综合可取性值较高(0.978)证明了这一点。采用A = 96:4和B = 40°C时最稳健的方法,以获得更早的 和更高的 ,高可取性() = 0.978(二次模型, < 0.0023)证明了这一点。检测限(LOD)和定量限(LLOQ)的估计值分别为0.11和0.36μg/mL,准确度范围为94.4 - 98.7%。因此,所采用的方法是大鼠经皮应用制剂后药代动力学参数测定中最稳健、可靠和可重复的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/364b/10785067/1d035ea1d0b5/ao3c07061_0001.jpg

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