Elkamhawy Ahmed, Oh Jong Min, Kim Minkyoung, El-Halaby Lamiaa O, Abdellattif Magda H, Al-Karmalawy Ahmed A, Kim Hoon, Lee Kyeong
BK21 FOUR Team and Integrated Research Institute for Drug Development, College of Pharmacy, Dongguk University-Seoul, Goyang, 10326, Republic of Korea.
Department of Pharmaceutical Organic Chemistry, Faculty of Pharmacy, Mansoura University, Mansoura, 35516, Egypt.
Mol Divers. 2025 Feb;29(1):179-193. doi: 10.1007/s11030-024-10841-9. Epub 2024 May 10.
Herein, a novel series of naphthamide derivatives has been rationally developed, synthesized, and evaluated for their inhibitory activity against monoamine oxidase (MAO) and cholinesterase (ChE) enzymes. Compared to the reported naphthalene-based hit IV, the new naphthamide hybrids 2a, 2c, 2g and 2h exhibited promising MAO inhibitory activities; with an IC value of 0.294 μM, compound 2c most potently inhibited MAO-A, while compound 2g exhibited most potent MAO-B inhibitory activity with an IC value of 0.519 μM. Compounds 2c and 2g showed selectivity index (SI) values of 6.02 for MAO-A and 2.94 for MAO-B, respectively. On the other hand, most compounds showed weak inhibitory activity against ChEs except 2a and 2h over butyrylcholinesterase (BChE). The most potent compounds 2c and 2g were found to be competitive and reversible MAO inhibitors based on kinetic and reversibility studies. Plausible interpretations of the observed biological effects were provided through molecular docking simulations. The drug-likeness predicted by SwissADME and Osiris property explorer showed that the most potent compounds (2a, 2c, 2g, and 2h) obey Lipinski's rule of five. Accordingly, in the context of neurological disorders, hybrids 2c and 2g may contribute to the identification of safe and potent therapeutic approaches in the near future.
在此,我们合理开发、合成并评估了一系列新型萘酰胺衍生物对单胺氧化酶(MAO)和胆碱酯酶(ChE)的抑制活性。与报道的基于萘的活性化合物IV相比,新型萘酰胺杂化物2a、2c、2g和2h表现出有前景的MAO抑制活性;化合物2c对MAO - A的抑制作用最强,IC值为0.294 μM,而化合物2g对MAO - B的抑制活性最强,IC值为0.519 μM。化合物2c和2g对MAO - A和MAO - B的选择性指数(SI)值分别为6.02和2.94。另一方面,除2a和2h对丁酰胆碱酯酶(BChE)有较弱抑制活性外,大多数化合物对ChEs的抑制活性较弱。基于动力学和可逆性研究,发现最有效的化合物2c和2g是竞争性和可逆的MAO抑制剂。通过分子对接模拟对观察到的生物学效应进行了合理的解释。由SwissADME和Osiris性质探索器预测的药物相似性表明,最有效的化合物(2a、2c、2g和2h)符合Lipinski的五规则。因此,在神经疾病的背景下,杂化物2c和2g可能在不久的将来有助于确定安全有效的治疗方法。