Ledeţi Adriana, Baul Bianca, Ridichie Amalia, Ivan Denisa, Vlase Titus, Tomoroga Carmen, Dragomirescu Anca, Vlase Gabriela, Bertici Răzvan Adrian, Man Dana Emilia, Ledeţi Ionuţ
Advanced Instrumental Screening Center, Faculty of Pharmacy, Victor Babeş University of Medicine and Pharmacy, 2 Eftimie Murgu Square, 300041 Timisoara, Romania.
Faculty of Industrial Chemistry and Environmental Engineering, University Politehnica Timisoara, 2 Victoriei Square, 300006 Timisoara, Romania.
Molecules. 2024 Nov 22;29(23):5527. doi: 10.3390/molecules29235527.
Angiotensin II receptor antagonists are tetrazole derivatives used in the treatment of high blood pressure, and are also indicated for the treatment of heart failure (NYHA class II-IV). They are used alone or in combination with other classes of antihypertensives or diuretics for the effective management of high blood pressure. In this study, we aim to evaluate the thermal stability and degradation kinetics for the principal compounds used in therapy from this class, namely telmisartan, valsartan, olmesartan medoxomil, and losartan potassium. To obtain the thermoanalytical data for the kinetic investigations, the TG and DTG curves were registered at five different heating rates (β = 2, 4, 6, 8, and 10 °C min). The kinetic methods used were a preliminary ASTM E698 method and two isoconversional methods: Flynn-Wall-Ozawa and Friedman. For each molecule, the results showed complex decomposition processes consisting of complex reaction sequences.
血管紧张素 II 受体拮抗剂是用于治疗高血压的四氮唑衍生物,也适用于治疗心力衰竭(纽约心脏协会 II-IV 级)。它们可单独使用,或与其他类别的抗高血压药物或利尿剂联合使用,以有效控制高血压。在本研究中,我们旨在评估该类治疗中使用的主要化合物,即替米沙坦、缬沙坦、奥美沙坦酯和氯沙坦钾的热稳定性和降解动力学。为了获得用于动力学研究的热分析数据,在五个不同的加热速率(β = 2、4、6、8 和 10 °C/min)下记录了 TG 和 DTG 曲线。使用的动力学方法是初步的 ASTM E698 方法和两种等转化率方法:Flynn-Wall-Ozawa 法和 Friedman 法。对于每个分子,结果显示出由复杂反应序列组成的复杂分解过程。