Instituto de Ciencia Molecular (ICMol), Universitat de València, c/ Catedrático José Beltrán 2, Paterna, 46980 València, Spain.
Biosensors (Basel). 2021 Jan 11;11(1):19. doi: 10.3390/bios11010019.
Hypoxanthine (hpx) is an important molecule for both biochemistry research and biomedical applications. It is involved in several biological processes associated to energy and purine metabolism and has been proposed as a biomarker for a variety of disease states. Consequently, the discovery and development of systems suitable for the detection of hypoxanthine is pretty appealing in this research field. Thus, we have obtained a stable diruthenium (III) compound in its dehydrated and hydrated forms with formula [{Ru(µ-Cl)(µ-hpx)}Cl] () and [{Ru(µ-Cl)(µ-hpx)}Cl]·2HO (), respectively. This purine-based diruthenium(III) system was prepared from two very different starting materials, namely, inosine and azathioprine, the latter being an immunosuppressive drug. Remarkably, it was observed that an unusual azathioprine hydrolysis occurs in the presence of ruthenium, thus generating hypoxanthine instead of the expected 6-mercaptopurine antimetabolite, so that the hpx molecule is linked to two ruthenium(III) ions. and were characterized through IR, SEM, powder and single-crystal X-ray Diffraction and Cyclic Voltammetry (CV). The electrochemical studies allowed us to detect the hpx molecule when coordinated to ruthenium in the reported compound. The grade of sensitivity, repeatability and stability reached by this diruthenium system make it potentially useful and could provide a first step to develop new sensor devices suitable to detect hypoxanthine.
次黄嘌呤 (hpx) 是生物化学研究和生物医学应用的重要分子。它参与了与能量和嘌呤代谢相关的几个生物过程,并已被提议作为多种疾病状态的生物标志物。因此,在这个研究领域中,发现和开发适合检测次黄嘌呤的系统非常吸引人。因此,我们获得了一种稳定的二钌(III)化合物,其脱水和水合形式分别为 [{Ru(µ-Cl)(µ-hpx)}Cl] () 和 [{Ru(µ-Cl)(µ-hpx)}Cl]·2HO (), 。该基于嘌呤的二钌(III)系统是由两种非常不同的起始材料制备的,即肌苷和硫唑嘌呤,后者是一种免疫抑制剂药物。值得注意的是,观察到在钌存在下发生了异常的硫唑嘌呤水解,从而生成了次黄嘌呤而不是预期的 6-巯基嘌呤抗代谢物,因此 hpx 分子与两个钌(III)离子相连。 和 通过 IR、SEM、粉末和单晶 X 射线衍射和循环伏安法 (CV) 进行了表征。电化学研究允许我们检测到报告的化合物中与钌配位的 hpx 分子。该二钌系统达到的灵敏度、重复性和稳定性等级使其具有潜在的用途,并为开发适合检测次黄嘌呤的新型传感器设备提供了第一步。