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通过结构相似性发现未揭示的氟芬那酸共晶体以增强局部药物递送

Towards the discovery of unrevealed flufenamic acid cocrystals via structural resemblance for enhanced topical drug delivery.

作者信息

Li Si, Xuan Bianfei, Wong Si Nga, Lee Hok Wai, Low Kam-Hung, Chow Shing Fung

机构信息

Department of Pharmacology and Pharmacy, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Pokfulam, Hong Kong SAR, China; Advanced Biomedical Instrumentation Centre, Hong Kong Science Park, Shatin, New Territories, Hong Kong.

Department of Pharmacology and Pharmacy, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Pokfulam, Hong Kong SAR, China.

出版信息

Int J Pharm. 2025 Jan 5;668:124959. doi: 10.1016/j.ijpharm.2024.124959. Epub 2024 Nov 15.

Abstract

Cocrystallization has emerged as a promising formulation strategy for modulating transdermal drug absorption by enhancing solubility and permeability. However, challenges related to cocrystal dissociation in the semi-solid state need to be addressed to mitigate regulatory concerns before the widespread implementation of topical cocrystal products in clinical practice. This study aimed to develop oil-based topical formulations incorporating cocrystals with distinct thermodynamic stabilities, followed by investigating the roles of different structurally similar coformers and oily vehicles on their physicochemical properties. Three pharmaceutical cocrystals of poorly water-soluble flufenamic acid (FFA) were synthesized with isomeric pyridine carboxamides in a 1:1 stoichiometry via rapid solvent removal. These included the reported flufenamic acid-nicotinamide cocrystal (FFA-NIC), the long-elusive flufenamic acid-isonicotinamide cocrystal (FFA-IST) and flufenamic acid-picolinamide cocrystal (FFA-PIC). The resulting cocrystals, which exhibited different hydrogen bonding patterns, were characterized using powder X-ray diffraction, differential scanning calorimetry, Fourier transform infrared spectroscopy, and structural analysis through single crystal X-ray diffraction. The cocrystals were further formulated in a series of oleaginous and absorption bases, including liquid paraffin, Vaseline, lanolin, and theobroma oil, for topical delivery. The cocrystal dissociation, content uniformity, and in vitro membrane diffusion were assessed. Notably, although all FFA cocrystals exhibited thermodynamic instability in aqueous solution, a significantly reduced propensity for cocrystal dissociation was observed in the ointment bases. Integrated computational analyses of packing efficiency and interaction energy revealed that the thermodynamic stability of cocrystals followed a descending order of FFA-NIC > FFA-PIC > FFA-IST. Compared with raw FFA, FFA-IST and FFA-PIC, which had larger positive ΔV and ΔE, achieved superior cumulative diffusion of FFA from Vaseline, with a 4.3-fold (p = 0.0003) and 3.3-fold (p = 0.0029) increase at 6 h in a Franz diffusion cell model, respectively. The diffusion of all FFA cocrystals mainly followed the Higuchi kinetic model and was positively correlated with the intrinsic dissolution rate.

摘要

共结晶已成为一种很有前景的制剂策略,可通过提高溶解度和渗透性来调节经皮药物吸收。然而,在局部共晶产品在临床实践中广泛应用之前,需要解决与半固态中共晶解离相关的挑战,以减轻监管方面的担忧。本研究旨在开发含有具有不同热力学稳定性共晶的油基局部用制剂,随后研究不同结构相似的共形成剂和油性载体对其物理化学性质的作用。通过快速去除溶剂,以1:1化学计量比与异构吡啶甲酰胺合成了三种难溶性氟芬那酸(FFA)的药物共晶。这些包括已报道的氟芬那酸-烟酰胺共晶(FFA-NIC)、长期难以捉摸的氟芬那酸-异烟酰胺共晶(FFA-IST)和氟芬那酸-皮考林酰胺共晶(FFA-PIC)。使用粉末X射线衍射、差示扫描量热法、傅里叶变换红外光谱对所得共晶进行表征,这些共晶表现出不同的氢键模式,并通过单晶X射线衍射进行结构分析。将共晶进一步配制在一系列油性和吸收性基质中,包括液体石蜡、凡士林、羊毛脂和可可脂,用于局部给药。评估了共晶解离、含量均匀度和体外膜扩散。值得注意的是,尽管所有FFA共晶在水溶液中都表现出热力学不稳定性,但在软膏基质中观察到共晶解离的倾向显著降低。对堆积效率和相互作用能的综合计算分析表明,共晶的热力学稳定性遵循FFA-NIC>FFA-PIC>FFA-IST的降序排列。与原始FFA、FFA-IST和FFA-PIC相比,具有较大正ΔV和ΔE的FFA-IST和FFA-PIC在Franz扩散池模型中在6小时时实现了FFA从凡士林的优异累积扩散,分别增加了4.3倍(p = 0.0003)和3.3倍(p = 0.0029)。所有FFA共晶的扩散主要遵循Higuchi动力学模型,并且与固有溶解速率呈正相关。

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