Kryczyk-Poprawa Agata, Kwiecień Anna, Opoka Włodzimierz
Department of Inorganic and Analytical Chemistry, Jagiellonian University Medical College, Faculty of Pharmacy, 9 Medyczna Street, 30-688 Krakow, Poland.
Pharmaceutics. 2019 Dec 20;12(1):10. doi: 10.3390/pharmaceutics12010010.
Topical treatment modalities have multiple advantages starting with the convenient application and non-invasive treatment and ending with the reduction of the risk of the systemic side effects. Active pharmaceutical substances must reach the desired concentration at the target site in order to produce a particular therapeutic effect. In contrast to other dosage forms topical agents applied to the skin may also be susceptible to photodegradation after application. That is why the knowledge of the susceptibility of these topical drugs to UV irradiation, which may contribute to their degradation or changes in chemical structure, is very important. Active pharmaceutical substances used in dermatology may differ both in chemical structure and photostability. Furthermore, various factors-such as light intensity and wavelength, pH, temperature, concentration-can influence the photodegradation process, which is reflected in particular in kinetics of photodegradation of active pharmaceutical substances as well as both the quantitative and qualitative composition of by-products. The aim of this study was to conduct a systematic review of the photostability of dermatological drugs, as well as of other substances commonly applied topically. The photostability of glucocorticosteroids, retinoids, and antifungal drugs as well as non-steroidal anti-inflammatory drugs applied topically and selected UV-filters have been discussed. Furthermore, the impact of photoinstability on the effectiveness of pharmacotherapy and some photostabilization strategies have been also included.
局部治疗方式具有多种优势,从方便应用和非侵入性治疗开始,到降低全身副作用风险结束。活性药物成分必须在靶部位达到所需浓度才能产生特定治疗效果。与其他剂型不同,应用于皮肤的局部用药在应用后也可能易受光降解影响。这就是为什么了解这些局部药物对紫外线照射的敏感性非常重要,紫外线照射可能导致其降解或化学结构变化。皮肤科使用的活性药物成分在化学结构和光稳定性方面可能存在差异。此外,各种因素,如光强度和波长、pH值、温度、浓度等,都可能影响光降解过程,这尤其体现在活性药物成分的光降解动力学以及副产物的定量和定性组成上。本研究的目的是对皮肤科药物以及其他常用局部应用物质的光稳定性进行系统综述。讨论了糖皮质激素、维甲酸、抗真菌药物以及局部应用的非甾体抗炎药物和选定的紫外线过滤剂的光稳定性。此外,还包括光不稳定对药物治疗效果的影响以及一些光稳定化策略。