Libánská Alena, Špringer Tomáš, Peštová Lucie, Kotalík Kevin, Konefał Rafał, Šimonová Alice, Křížek Tomáš, Homola Jiří, Randárová Eva, Etrych Tomáš
Institute of Macromolecular Chemistry, Czech Academy of Sciences, Prague, Czech Republic.
Institute of Photonics and Electronics, Czech Academy of Sciences, Prague, Czech Republic.
Commun Chem. 2023 Aug 31;6(1):180. doi: 10.1038/s42004-023-00992-5.
Nanomedicines, including polymer nanocarriers with controlled drug release, are considered next-generation therapeutics with advanced therapeutic properties and reduced side effects. To develop safe and efficient nanomedicines, it is crucial to precisely determine the drug release kinetics. Herein, we present application of analytical methods, i.e., surface plasmon resonance biosensor technology (SPR), capillary electrophoresis, and H diffusion-ordered nuclear magnetic resonance spectroscopy, which were innovatively applied for drug release determination. The methods were optimised to quantify the pH-triggered release of three structurally different drugs from a polymer carrier. The suitability of these methods for drug release characterisation was evaluated and compared using several parameters including applicability for diverse samples, the biological relevance of the experimental setup, method complexity, and the analysis outcome. The SPR method was the most universal method for the evaluation of diverse drug molecule release allowing continuous observation in the flow-through setting and requiring a small amount of sample.
纳米药物,包括具有可控药物释放功能的聚合物纳米载体,被认为是具有先进治疗特性和减少副作用的下一代治疗药物。为了开发安全有效的纳米药物,精确确定药物释放动力学至关重要。在此,我们展示了分析方法的应用,即表面等离子体共振生物传感器技术(SPR)、毛细管电泳和H扩散排序核磁共振波谱,这些方法被创新性地应用于药物释放测定。这些方法经过优化,以量化三种结构不同的药物从聚合物载体中的pH触发释放。使用包括对不同样品的适用性、实验设置的生物学相关性、方法复杂性和分析结果在内的几个参数,评估并比较了这些方法对药物释放表征的适用性。SPR方法是评估多种药物分子释放的最通用方法,允许在流通设置中进行连续观察,并且需要少量样品。