Almeida Luisa Souza, Carneiro Jaqueline, Colnago Luiz Alberto
São Carlos Institute of Chemistry, University of São Paulo, Avenida Trabalhador São Carlense, 400, 13566-590 São Carlos, SP, Brazil.
Pharmacy Department, Parana Federal University. Avenida Prefeito Lothário Meissner, 632, 80210-170, Curitiba, PR, Brazil.
Int J Pharm. 2025 Jan 25;669:125027. doi: 10.1016/j.ijpharm.2024.125027. Epub 2024 Dec 6.
Polymorphism is the ability of a compound to exist in multiple crystal forms while maintaining the same chemical composition. This phenomenon is reflected in different solid-state physicochemical properties due to variations in structural energy and the degree of lattice disorder. The pharmaceutical industry places significant emphasis on thoroughly characterizing polymorphism in Active Pharmaceutical Ingredients (APIs) because of its impact on the pharmacokinetic properties on the final medicine product. Standard characterization techniques are well documented in pharmacopeias and by international agencies. These techniques, whether applied individually or in combination, include crystallography (X-Ray Diffraction), thermal analysis (Differential Scanning Calorimetry), and various forms of spectroscopy, such as Near-Infrared, Raman, and solid-state Nuclear Magnetic Resonance (NMR). Analyzing NMR applications for solid-state characterization over the past five years, there has been a growing number of reports on the use of Time Domain NMR (TD-NMR) to evaluate polymorphism on APIs. Due to the increasing interest in this compelling technique, this study provides an overview of the current advancements in TD-NMR for polymorphism assessment in pharmaceutical products. Compared to high-field devices, TD-NMR has proven to be more convenient to industrial applications due to its smaller equipment size and shorter measurement times. This mini-review compares various applications of TD-NMR for API solid-state characterization and offer guidance for future research in this area.
多晶型现象是指一种化合物在保持相同化学组成的情况下能够以多种晶体形式存在的能力。由于结构能量和晶格无序程度的变化,这种现象反映在不同的固态物理化学性质上。制药行业高度重视对活性药物成分(API)中的多晶型现象进行全面表征,因为它会对最终药品的药代动力学性质产生影响。标准的表征技术在药典和国际机构的文献中有详细记载。这些技术,无论是单独应用还是联合应用,包括晶体学(X射线衍射)、热分析(差示扫描量热法)以及各种形式的光谱学,如近红外、拉曼和固态核磁共振(NMR)。分析过去五年用于固态表征的NMR应用,关于使用时域NMR(TD-NMR)评估API多晶型现象的报道越来越多。由于对这种引人注目的技术的兴趣日益增加,本研究概述了TD-NMR在药品多晶型评估方面的当前进展。与高场设备相比,TD-NMR因其设备尺寸较小和测量时间较短,已被证明在工业应用中更方便。这篇小型综述比较了TD-NMR在API固态表征中的各种应用,并为该领域的未来研究提供指导。