Department of Chemical Engineering, Aristotle University of Thessaloniki, University Campus, 54124 Thessaloniki, Greece.
Molecules. 2022 Oct 6;27(19):6630. doi: 10.3390/molecules27196630.
The thermodynamic properties of pharmaceuticals are of major importance since they are involved in drug design, processing, optimization and modelling. In this study, a long-standing confusion regarding the thermodynamic properties of flavonoids and similar pharmaceuticals is recognized and clarified. As a case study, the thermal behavior of quercetin is examined with various techniques. It is shown that quercetin does not exhibit glass transition nor a melting point, but on the contrary, it does exhibit various thermochemical transitions (structural relaxation occurring simultaneously with decomposition). Inevitably, the physical meaning of the reported experimental values of the thermodynamic properties, such as the heat of fusion and heat capacity, are questioned. The discussion for this behavior is focused on the weakening of the chemical bonds. The interpretations along with the literature data suggest that the thermochemical transition might be exhibited by various flavonoids and other similar pharmaceuticals, and is related to the difficulty in the prediction/modelling of their melting point.
药物的热力学性质非常重要,因为它们涉及药物设计、加工、优化和建模。在这项研究中,我们认识到并澄清了长期以来关于类黄酮和类似药物热力学性质的一个混淆点。作为一个案例研究,我们用各种技术研究了槲皮素的热行为。结果表明,槲皮素没有玻璃化转变也没有熔点,而是表现出各种热化学转变(结构松弛与分解同时发生)。不可避免地,报告的热力学性质的实验值(如熔融热和热容)的物理意义受到质疑。对此行为的讨论集中在化学键的弱化上。通过解释和文献数据,我们认为这种热化学转变可能由各种类黄酮和其他类似药物表现出来,并且与它们熔点的预测/建模困难有关。