McCoy Colin P, Rooney Clare, Jones David S, Gorman Sean P, Nieuwenhuyzen Mark
School of Pharmacy, Queen's University Belfast, Belfast, BT9 7BL, UK.
Pharm Res. 2007 Jan;24(1):194-200. doi: 10.1007/s11095-006-9145-8. Epub 2006 Nov 16.
The purpose of this study is to demonstrate the rational design and behaviour of the first dual-mode optical and chemical prodrug, exemplified by an acetyl salicylic acid-based system.
A cyclic 1,4-benzodioxinone prodrug was synthesised by reaction of 3,5-dimethoxybenzoin and acetyl salicoyl chloride with pyridine. After purification by column chromatography and recrystallization, characterization was achieved using infrared and NMR spectroscopies, mass spectrometry, elemental analysis and single crystal X-ray diffraction. Light-triggered drug liberation was characterised via UV-visible spectroscopy following low-power 365 nm irradiation for controlled times. Chemical drug liberation was characterised via UV-visible spectroscopy in pH 5.5 solution.
The synthetic method yielded pure prodrug, with full supporting characterisation. Light-triggered drug liberation proceeded at a rate of 8.30x10(-2) s-1, while chemical, hydrolytic liberation proceeded independently at 1.89x10(-3) s-1. The photochemical and hydrolytic reactions were both quantitative.
This study demonstrates the first rational dual-mode optical and chemical prodrug, using acetyl salicylic acid as a model, acting as a paradigm for future dual-mode systems. Photochemical drug liberation proceeds 44 times faster than chemical liberation, suggesting potential use in drug-eluting medical devices where an additional burst of drug is required at the onset of infection.
本研究旨在展示首个双模式光学和化学前药的合理设计与行为,以基于乙酰水杨酸的系统为例。
通过3,5 - 二甲氧基苯偶姻与乙酰水杨酰氯在吡啶存在下反应合成了一种环状1,4 - 苯并二恶烷酮前药。经柱色谱纯化和重结晶后,使用红外光谱、核磁共振光谱、质谱、元素分析和单晶X射线衍射进行表征。在低功率365 nm光照特定时间后,通过紫外可见光谱对光触发药物释放进行表征。在pH 5.5溶液中通过紫外可见光谱对化学药物释放进行表征。
合成方法得到了纯前药,并获得了全面的表征支持。光触发药物释放速率为8.30×10⁻² s⁻¹,而化学水解释放速率为1.89×10⁻³ s⁻¹,二者相互独立。光化学反应和水解反应均为定量反应。
本研究展示了首个以乙酰水杨酸为模型的合理双模式光学和化学前药,为未来的双模式系统树立了典范。光化学药物释放比化学释放快44倍,表明其在感染开始时需要额外药物爆发的药物洗脱医疗设备中具有潜在应用价值。