Muszalska Izabela, Ciemniejewski Michał P, Lesniewska Monika A, Szkatuła Dominika, Malinka Wiesław
Poznan University of Medical Sciences, Faculty of Pharmacy, Department of Pharmaceutical Chemistry, 6 Grunwaldzka Str., 60-780 Poznań, Poland.
J AOAC Int. 2015 Sep-Oct;98(5):1248-59. doi: 10.5740/jaoacint.14-240.
The stress and accelerated tests as well as photostability analysis in solutions and the solid phase of three selected derivatives of pyrrolo[3,4-c]pyridine-1,3-dione were carried out according the International Conference on Harmonization guidelines. For observation of the degradation of tested compounds, the RP-HPLC method was used. The study included the effect of temperature, relative humidity, water, H+ and OH- ions, hydrogen peroxide, and light (6.0×10(6), 1.2×10(6) lux·h) on the stability of pyrrolo[3,4-c]pyridine-1,3-dione derivatives. Studies have shown that these derivatives are photolabile, extremely unstable in an alkaline medium, labile in an acidic medium, and stable in a neutral medium. Their sensitivity to oxidizing agents depends on the chemical structure. The shortening of the aliphatic chain leads to an increase in the sensitivity to hydrolytic and oxidizing factors. The presence of the 1,3,4-tetraisoquinoline group promotes an increase in the susceptibility to photodegradation. The introduction of a carbonyl group to the aliphatic chain and the tetrafluoromethyl group to the phenyl ring stabilizes the molecule in the case of hydrolysis and oxidation and also increases sensitivity to light. The analysis of observed photodegradation products using the HPLC-diode array detector, HPLC/MS, and UV and IR spectrometry techniques showed degradation targeted at the breaking of the pyrrolo[3,4-c]pyridine-1,3-dione, piperazine, and/or tetrahydroisoquinoline rings.
根据国际协调会议指南,对三种选定的吡咯并[3,4-c]吡啶-1,3-二酮衍生物在溶液和固相中的应力与加速试验以及光稳定性进行了分析。为观察受试化合物的降解情况,采用了反相高效液相色谱法。该研究考察了温度、相对湿度、水、H⁺和OH⁻离子、过氧化氢以及光(6.0×10⁶、1.2×10⁶勒克斯·小时)对吡咯并[3,4-c]吡啶-1,3-二酮衍生物稳定性的影响。研究表明,这些衍生物对光不稳定,在碱性介质中极不稳定,在酸性介质中不稳定,而在中性介质中稳定。它们对氧化剂的敏感性取决于化学结构。脂肪链的缩短会导致对水解和氧化因素的敏感性增加。1,3,4-四异喹啉基团的存在会促使光降解敏感性增加。在脂肪链中引入羰基以及在苯环中引入四氟甲基,在水解和氧化情况下会使分子稳定,但也会增加对光的敏感性。使用高效液相色谱-二极管阵列检测器、高效液相色谱/质谱以及紫外和红外光谱技术对观察到的光降解产物进行分析,结果表明降解主要针对吡咯并[3,4-c]吡啶-1,3-二酮、哌嗪和/或四氢异喹啉环的断裂。