Department of Toxicology, Wroclaw Medical University, 50-556 Wroclaw, Poland.
Institute of Low Temperature and Structure Research, Polish Academy of Sciences, 50-422 Wroclaw, Poland.
Int J Mol Sci. 2021 Dec 28;23(1):286. doi: 10.3390/ijms23010286.
Type 2 diabetes management usually requires polytherapy, which increases the risk of drug-to-drug interactions. Among the multiple diabetes comorbidities, hypertension is the most prevalent. This study aimed to investigate the binding interactions between the model protein, bovine albumin, and the hypoglycemic agent gliclazide (GLICL) in the presence of typical hypotensive drugs: quinapril hydrochloride (QUI), valsartan (VAL), furosemide (FUR), amlodipine besylate (AML), and atenolol (ATN). Spectroscopic techniques (fluorescence quenching, circular dichroism) and thermodynamic experiments were employed. The binding of the gliclazide to the albumin molecule was affected by the presence of an additional drug ligand, which was reflected by the reduced binding constant of the BSA-DRUG-GLICL system. This may indicate a possible GLICL displacement and its enhanced pharmacological effect, as manifested in clinical practice. The analysis of the thermodynamic parameters indicated the spontaneity of the reaction and emphasized the role of hydrogen bonding and van der Waals forces in these interactions. The secondary structure of the BSA remained almost unaffected.
2 型糖尿病的管理通常需要采用多种疗法,这会增加药物相互作用的风险。在多种糖尿病合并症中,高血压最为常见。本研究旨在研究模型蛋白牛血清白蛋白(BSA)与降血糖药格列齐特(GLICL)在典型降压药物盐酸喹那普利(QUI)、缬沙坦(VAL)、呋塞米(FUR)、苯磺酸氨氯地平(AML)和阿替洛尔(ATN)存在下的结合相互作用。采用荧光猝灭、圆二色性等光谱技术和热力学实验进行研究。格列齐特与白蛋白分子的结合受到其他药物配体的影响,这反映在 BSA-DRUG-GLICL 体系的结合常数降低上。这可能表明 GLICL 发生了置换,其药理作用增强,这在临床实践中有所体现。热力学参数分析表明反应具有自发性,并强调氢键和范德华力在这些相互作用中的作用。BSA 的二级结构几乎没有受到影响。