Univ. Bordeaux, UMR EPOC CNRS 5805, LPTC, F-33405, Talence, France; CNRS, EPOC, UMR 5805, LPTC, F-33400, Talence, France; National Council of Scientific Research (NCSR), Lebanese Atomic Energy Commission (LAEC), Laboratory of Analysis of Organic Pollutants (LAOP), B. P. 11-8281, Riad El Solh, 1107 2260, Beirut, Lebanon.
Univ. Bordeaux, UMR EPOC CNRS 5805, LPTC, F-33405, Talence, France; CNRS, EPOC, UMR 5805, LPTC, F-33400, Talence, France.
Chemosphere. 2018 Feb;193:329-336. doi: 10.1016/j.chemosphere.2017.11.036. Epub 2017 Nov 9.
Kinetics of photodegradation of novel oral anticoagulants dabigatran, rivaroxaban, and apixaban were studied under simulated solar light irradiation in purified, mineral, and river waters. Dabigatran and rivaroxaban underwent direct photolysis with polychromatic quantum yields of 2.2 × 10 and 4.4 × 10, respectively. The direct photodegradation of apixaban was not observed after 19 h of irradiation. Kinetics of degradation of rivaroxaban was not impacted by the nature of the aqueous matrix while photosensitization from nitrate ions was observed for dabigatran and apixaban dissolved in a mineral water. The photosensitized reactions were limited in the tested river water (Isle River, Périgueux, France) certainly due to the hydroxyl radical scavenging effect of the dissolved organic matter. The study of photoproduct structures allowed to identify two compounds for dabigatran. One of them is the 4-aminobenzamidine while the second one is a cyclization product. In the case of rivaroxaban, as studied by very high field NMR, only one photoproduct was observed i.e. a photoisomer. Finally, seven photoproducts were clearly identified from the degradation of apixaban under simulated solar light.
新型口服抗凝剂达比加群、利伐沙班和阿哌沙班在模拟太阳光照射下于纯净水中、矿泉水中和河水中的光降解动力学进行了研究。达比加群和利伐沙班发生直接光解,多色量子产率分别为 2.2×10 和 4.4×10。阿哌沙班在照射 19 小时后未观察到直接光降解。利伐沙班的降解动力学不受水相基质性质的影响,而在矿泉水中溶解的硝酸根离子对达比加群和阿哌沙班发生敏化光解。敏化反应在测试的河水(法国佩里戈尔的伊勒河)中受到限制,这肯定是由于溶解有机物的羟基自由基清除作用。光产物结构的研究使得可以鉴定达比加群的两种化合物。其中一种是 4-氨基苯甲脒,另一种是环化产物。在利伐沙班的情况下,通过超高场 NMR 研究,仅观察到一种光产物,即光异构体。最后,从模拟太阳光下阿哌沙班的降解中清楚地鉴定出七种光产物。