Paolino Marco, Rullo Mariagrazia, Maramai Samuele, de Candia Modesto, Pisani Leonardo, Catto Marco, Mugnaini Claudia, Brizzi Antonella, Cappelli Andrea, Olivucci Massimo, Corelli Federico, Altomare Cosimo D
Dipartimento di Biotecnologie, Chimica e Farmacia (Dipartimento di Eccellenza 2018-2022), Università degli Studi di Siena Via A. Moro 2 53100 Siena Italy
Department of Pharmacy-Pharmaceutical Sciences, University of Bari Aldo Moro Via E. Orabona 4 70125 Bari Italy.
RSC Med Chem. 2022 Jun 1;13(7):873-883. doi: 10.1039/d2md00042c. eCollection 2022 Jul 20.
Neurodegenerative diseases are multifactorial disorders characterized by protein misfolding, oxidative stress, and neuroinflammation, finally resulting in neuronal loss and cognitive dysfunctions. Nowadays, an attractive strategy to improve the classical treatments is the development of multitarget-directed molecules able to synergistically interact with different enzymes and/or receptors. In addition, an interesting tool to refine personalized therapies may arise from the use of bioactive species able to modify their activity as a result of light irradiation. To this aim, we designed and synthesized a small library of cinnamic acid-inspired isomeric compounds with light modulated activity able to inhibit acetylcholinesterase (AChE) and monoamine oxidase B (MAO-B), with remarkable selectivity over butyrylcholinesterase (BChE) and MAO-A, which have been investigated as the enzyme targets related to Alzheimer's disease (AD). The inhibitory activities were evaluated for the pure -diastereomers and the /-diastereomer mixtures, obtained upon UV irradiation. Molecular docking studies were carried out to rationalize the differences in the inhibition potency of the and diastereomers of the best performing analogue 1c. Our preliminary findings may open-up the way for developing innovative multitarget photo-switch drugs against neurodegenerative diseases.
神经退行性疾病是多因素疾病,其特征在于蛋白质错误折叠、氧化应激和神经炎症,最终导致神经元丧失和认知功能障碍。如今,改进传统治疗方法的一个有吸引力的策略是开发能够与不同酶和/或受体协同相互作用的多靶点导向分子。此外,一种改进个性化治疗的有趣工具可能来自于使用能够因光照射而改变其活性的生物活性物质。为此,我们设计并合成了一个受肉桂酸启发的具有光调制活性的异构体化合物小文库,这些化合物能够抑制乙酰胆碱酯酶(AChE)和单胺氧化酶B(MAO-B),对丁酰胆碱酯酶(BChE)和MAO-A具有显著的选择性,它们已被作为与阿尔茨海默病(AD)相关的酶靶点进行研究。对通过紫外线照射获得的纯非对映异构体和/非对映异构体混合物的抑制活性进行了评估。进行了分子对接研究,以阐明表现最佳的类似物1c的非对映异构体和非对映异构体在抑制效力上的差异。我们的初步研究结果可能为开发针对神经退行性疾病的创新多靶点光开关药物开辟道路。