BiLGiNER Sinan, Anil Barış, Koca Mehmet, Demir Yeliz, Gülçin İlhami
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Atatürk University, Erzurum Turkey.
Department of Chemistry, Faculty of Science, Atatürk University, Erzurum Turkey.
Turk J Chem. 2021 Jun 30;45(3):805-818. doi: 10.3906/kim-2101-25. eCollection 2021.
In this study, a new series of Mannich bases, 3-(aminomethyl)-6-{3-[4-(trifluoromethyl)phenyl]acryloyl}-2( )-benzoxazolones ( ), were synthesized by the Mannich reaction. Inhibitory effects of the newly synthesized compounds towards carbonic anhydrases (CAs) and acetylcholinesterase (AChE) enzymes were evaluated to find out new potential drug candidate compounds. According to the inhibitory activity results, K values of the compounds and were in the range of 12.3 ± 1.2 to 154.0 ± 9.3 nM against hCA I, and they were in the range of 8.6 ± 1.9 to 41.0 ± 5.5 nM against hCA II. Ki values of acetazolamide (AZA) that was used as a reference compound were 84.4 ± 8.4 nM towards hCA I and 59.2 ± 4.8 nM towards hCA II. K values of the compounds and were in the range of 35.2 ± 2.0 to 158.9 ± 33.5 nM towards AChE. K value of Tacrine (TAC), the reference compound, was 68.6 ± 3.8 nM towards AChE. Furthermore, docking studies were done with the most potent compounds , , and (in terms of hCA I, hCA II, and AChE inhibition effects, respectively) to determine the binding profiles of the series with these enzymes. Additionally, the prediction of ADME profiles of the compounds pointed out that the newly synthesized compounds had desirable physicochemical properties as lead compounds for further studies.
在本研究中,通过曼尼希反应合成了一系列新的曼尼希碱,即3-(氨甲基)-6-{3-[4-(三氟甲基)苯基]丙烯酰基}-2( )-苯并恶唑酮( )。评估了新合成化合物对碳酸酐酶(CAs)和乙酰胆碱酯酶(AChE)的抑制作用,以寻找新的潜在候选药物化合物。根据抑制活性结果,化合物 和 对hCA I的K值在12.3±1.2至154.0±9.3 nM范围内,对hCA II的K值在8.6±1.9至41.0±5.5 nM范围内。用作参考化合物的乙酰唑胺(AZA)对hCA I的Ki值为84.4±8.4 nM,对hCA II的Ki值为59.2±4.8 nM。化合物 和 对AChE的K值在35.2±2.0至158.9±33.5 nM范围内。参考化合物他克林(TAC)对AChE的K值为68.6±3.8 nM。此外,对最有效的化合物 、 和 (分别在hCA I、hCA II和AChE抑制作用方面)进行了对接研究,以确定该系列化合物与这些酶的结合模式。此外,对化合物ADME特性的预测指出,新合成的化合物具有作为进一步研究先导化合物的理想物理化学性质。