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替戈拉赞多晶型稳定性及相变动力学的综合研究

Comprehensive Investigation of Polymorphic Stability and Phase Transformation Kinetics in Tegoprazan.

作者信息

Lee Joo Ho, Kim Ki Hyun, Ryu Se Ah, Kim Jason, Jung Kiwon, Kang Ki Sung, Yamaguchi Tokutaro

机构信息

J2Hbiotech Inc., #210, B Dong, Suwon Venture Valley II, Suwon 16648, Republic of Korea.

School of Pharmacy, Sungkyunkwan University, Suwon 16419, Republic of Korea.

出版信息

Pharmaceutics. 2025 Jul 18;17(7):928. doi: 10.3390/pharmaceutics17070928.

Abstract

Tegoprazan (TPZ) is a potassium-competitive acid blocker (P-CAB) used to treat conditions such as gastroesophageal reflux disease, peptic ulcer, and infection. It exists in three solid forms: amorphous, Polymorph A, and Polymorph B. This study investigates the molecular basis of polymorph selection, focusing on conformational bias and solvent-mediated phase transformations (SMPTs). The conformational energy landscapes of two TPZ tautomers were constructed using relaxed torsion scans with the OPLS4 force field and validated by nuclear Overhauser effect (NOE)-based nuclear magnetic resonance (NMR). Hydrogen-bonded dimers were analyzed using DFT-D. Powder X-ray diffraction (PXRD), differential scanning calorimetry (DSC), solubility, and slurry tests were conducted using methanol, acetone, and water. Kinetic profiles were modeled with the Kolmogorov-Johnson-Mehl-Avrami (KJMA) equation. Polymorph A was thermodynamically stable across all analyses. Both amorphous TPZ and Polymorph B converted to A in a solvent-dependent manner. Methanol induced direct A formation, while acetone showed a B → A transition. Crystallization was guided by solution conformers and hydrogen bonding. TPZ polymorph selection is governed by solution-phase conformational preferences, tautomerism, and solvent-mediated hydrogen bonding. DFT-D and NMR analyses showed that protic solvents favor the direct crystallization of stable Polymorph A, while aprotic solvents promote the transient formation of metastable Polymorph B. Elevated temperatures and humidity accelerate polymorphic transitions. This crystal structure prediction (CSP)-independent strategy offers a practical framework for rational polymorph control and the mitigation of disappearing polymorph risks in tautomeric drugs.

摘要

替戈拉赞(TPZ)是一种钾离子竞争性酸阻滞剂(P-CAB),用于治疗胃食管反流病、消化性溃疡和感染等病症。它以三种固体形式存在:无定形、晶型A和晶型B。本研究调查了晶型选择的分子基础,重点关注构象偏向和溶剂介导的相变(SMPT)。使用OPLS4力场通过松弛扭转扫描构建了两种TPZ互变异构体的构象能量景观,并通过基于核Overhauser效应(NOE)的核磁共振(NMR)进行了验证。使用DFT-D分析氢键二聚体。使用甲醇、丙酮和水进行粉末X射线衍射(PXRD)、差示扫描量热法(DSC)、溶解度和浆体试验。用Kolmogorov-Johnson-Mehl-Avrami(KJMA)方程对动力学曲线进行建模。在所有分析中,晶型A在热力学上都是稳定的。无定形TPZ和晶型B均以溶剂依赖的方式转化为A。甲醇诱导直接形成A,而丙酮则显示B→A转变。结晶由溶液构象体和氢键引导。TPZ晶型选择受溶液相构象偏好、互变异构和溶剂介导的氢键控制。DFT-D和NMR分析表明,质子溶剂有利于稳定晶型A的直接结晶,而非质子溶剂促进亚稳晶型B的瞬时形成。升高温度和湿度会加速多晶型转变。这种与晶体结构预测(CSP)无关的策略为合理控制多晶型和降低互变异构药物中消失多晶型风险提供了一个实用框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/776a/12300558/eed8f8aee6b7/pharmaceutics-17-00928-g001.jpg

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