Rusu Aura, Tanase Corneliu, Pascu Georgiana-Andreea, Todoran Nicoleta
Pharmaceutical and Therapeutical Chemistry Department, Faculty of Pharmacy, George Emil Palade, University of Medicine, Pharmacy, Science and Technology of Târgu Mureş, 540139 Târgu Mureş, Romania.
Pharmaceutical Botany Department, Faculty of Pharmacy, George Emil Palade University of Medicine, Pharmacy, Science and Technology of Târgu Mureş, 540139 Târgu Mureş, Romania.
Pharmaceuticals (Basel). 2020 Aug 28;13(9):217. doi: 10.3390/ph13090217.
Adapalene (ADP) is a representative of the third retinoids generation and successfully used in first-line acne treatment. ADP binds to retinoic acid nuclear receptors. The comedolytic, anti-inflammatory, antiproliferative, and immunomodulatory are the known ADP effects. Its safety profile is an advantage over other retinoids. ADP recently was found to be effective in the treatment of several dermatological diseases and photoaging besides the utility in the treatment of acne vulgaris. New biological effects of adapalene with therapeutic potential are highlighted in this review paper. Thus, adapalene could be a valuable therapeutic drug into the treatment of several types of cancer. Additionally, some neurodegenerative diseases could be treated with a suitable formulation for intravenous administration. The antibacterial activity against methicillin-resistant of an analogue of ADP has been proven. In different therapeutic schemes, ADP is more effective in combination with other active substances. New topical combinations with adapalene include ketoconazole (antifungal), mometasone furoate (anti-inflammatory corticosteroid), nadifloxacin (fluoroquinolone), and alfa and beta hydroxy acids. Combination with oral drugs is a new trend that enhances the properties of topical formulations with adapalene. Several studies have investigated the effects of ADP in co-administration with azithromycin, doxycycline, faropenem, isotretinoin, and valganciclovir. Innovative formulations of ADP also aim to achieve a better bioavailability, increased efficacy, and reduced side effects. In this review, we have highlighted the current studies on adapalene regarding biological effects useful in various treatment types. Adapalene has not been exploited yet to its full biological potential.
阿达帕林(ADP)是第三代维甲酸类药物的代表,已成功用于一线痤疮治疗。ADP与维甲酸核受体结合。其已知作用包括溶解粉刺、抗炎、抗增殖和免疫调节。与其他维甲酸类药物相比,其安全性是一大优势。最近发现,除了治疗寻常痤疮外,ADP在治疗几种皮肤病和光老化方面也有效。本文综述了阿达帕林具有治疗潜力的新生物学效应。因此,阿达帕林可能是治疗几种癌症的有价值的治疗药物。此外,一些神经退行性疾病可以通过合适的静脉给药制剂进行治疗。已证实ADP的一种类似物对耐甲氧西林菌具有抗菌活性。在不同的治疗方案中,ADP与其他活性物质联合使用时效果更佳。与阿达帕林的新局部联合用药包括酮康唑(抗真菌药)、糠酸莫米松(抗炎皮质类固醇)、那氟沙星(氟喹诺酮)以及α和β羟基酸。与口服药物联合是增强含阿达帕林局部制剂性能的新趋势。多项研究调查了ADP与阿奇霉素、多西环素、法罗培南、异维A酸和缬更昔洛韦联合使用的效果。ADP的创新制剂还旨在实现更好的生物利用度、提高疗效并减少副作用。在本综述中,我们重点介绍了目前关于阿达帕林在各种治疗类型中有用的生物学效应的研究。阿达帕林尚未充分发挥其全部生物学潜力。