Department of Natural Products, National Institute of Pharmaceutical Education and Research (NIPER), Sector-67, S. A. S. Nagar-160 062, Punjab, India.
National Center for Natural Products Research, School of Pharmacy, The University of Mississippi, MS 38677, USA.
Med Chem. 2022;18(9):949-969. doi: 10.2174/1573406418666220303144929.
Quinoline is a well-established nucleus displaying various biological activities. Quinolin-8-ol-containing compounds are reported for antimicrobial as well as antimalarial activity. Hydrazone- and pyrazole-containing compounds are also reported for antimicrobial activity. In this work, we have synthesized hydrazonomethyl-quinolin-8-ol and pyrazol-3-yl-quinolin-8-ol derivatives retaining quinolin-8-ol along with hydrazone/pyrazole pharmacophores.
The objective of this work was to synthesise and evaluate in vitro hydrazonomethylquinolin- 8-ol and pyrazol-3-yl-quinolin-8-ol derivatives for antifungal, antibacterial and antimalarial activity.
Designed and synthesized hydrazonomethyl-quinolin-8-ol and pyrazol-3-yl-quinolin-8- ol derivatives were evaluated for antifungal (against Candida albicans, Aspergillus fumigatus and Cryptococcus neoformans), antibacterial (against methicillin resistant Staphylococcus aureus (MRSA), Escherichia Coli, Pseudomonas aeruginosa and Klebsillae pneumoniae) as well as antimalarial (against Plasmodium falciparum D6 and W2 strains) activity.
Hydrazonomethyl-quinolin-8-ol (15.1-15.28) and pyrazol-3-yl-quinolin-8-ol derivatives (16.1-16.21 and 20.1-20.18) were synthesized in good to moderate yield. One-pot synthesis of pyrazol- 3-yl-quinolin-8-ol derivatives (16.1-16.21 and 20.1-20.18) was achieved. Compounds 15.3, 15.6, 15.7, 15.9-15.14, 15.16-15.19, 15.22 and 15.24 were found more potent compared to reference standard fluconazole (IC = 3.20 μM) against C. albicans with IC value less than 3 μM. Compounds 15.1, 15.2, 15.21 and 15.23 showed almost similar activity to reference standard fluconazole against C. albicans. Compounds 15.1-15.3, 15.9-15.12, 15.14-15.17, and 15.21-15.23 also showed good activity against fluconazole-resistant strain A. fumigatus with IC50 value less than 3 μM. Compounds 15.2-15.4, 15.7, 15.9, 15.17, 15.20 showed good antimalarial activity against P. falciparum D6 as well as P. falciparum W2 with IC50 values of 1.84, 1.83, 1.56, 1.49, 1.45, 1.97, 1.68 μM and 1.86, 1.40, 1.19, 1.71, 1.16, 1.34, 1.61 μM, respectively. 5-Pyrazol-3-yl-quinolin-8-ol derivatives, such as 16.3, 16.5, 16.11, 16.13, 16.19, 16.20, also showed antimalarial activity against P. falciparum D6 and W2 strains with IC50 values of 2.23, 2.16, 2.99, 2.99, 2.73, 2.12 μM and 2.91, 3.60, 4.61, 2.71, 2.31, 2.66 μM, respectively.
Most of the 5-hydrazonomethyl-quinolin-8-ol derivatives showed good antifungal activity against C. albicans, A. fumigatus and C. neoformans. Most of the 5-hydrazonomethylquinolin- 8-ol derivatives were found more potent than reference standard fluconazole. These derivatives may be considered as leads for further development of antifungal agents.
喹啉是一种成熟的核,具有多种生物活性。含有喹啉-8-醇的化合物具有抗微生物和抗疟活性。含有腙和吡唑的化合物也具有抗微生物活性。在这项工作中,我们合成了含有喹啉-8-醇和腙/吡唑药效团的腙甲基-喹啉-8-醇和吡唑-3-基-喹啉-8-醇衍生物。
本工作的目的是合成并评价 5-腙甲基-喹啉-8-醇和 5-吡唑-3-基-喹啉-8-醇衍生物的体外抗真菌、抗菌和抗疟活性。
设计并合成了 5-腙甲基-喹啉-8-醇和 5-吡唑-3-基-喹啉-8-醇衍生物,评价了它们对白色念珠菌、烟曲霉和新型隐球菌的抗真菌活性,对耐甲氧西林金黄色葡萄球菌(MRSA)、大肠杆菌、铜绿假单胞菌和肺炎克雷伯菌的抗菌活性,以及对恶性疟原虫 D6 和 W2 株的抗疟活性。
以良好到中等的产率合成了 5-腙甲基-喹啉-8-醇(15.1-15.28)和 5-吡唑-3-基-喹啉-8-醇衍生物(16.1-16.21 和 20.1-20.18)。一锅法合成了 5-吡唑-3-基-喹啉-8-醇衍生物(16.1-16.21 和 20.1-20.18)。化合物 15.3、15.6、15.7、15.9-15.14、15.16-15.19、15.22 和 15.24 对白色念珠菌的活性比参考标准氟康唑(IC=3.20 μM)更强,IC 值小于 3 μM。化合物 15.1、15.2、15.21 和 15.23 对白色念珠菌的活性与参考标准氟康唑相似。化合物 15.1-15.3、15.9-15.12、15.14-15.17 和 15.21-15.23 对氟康唑耐药的烟曲霉也有较好的活性,IC50 值小于 3 μM。化合物 15.2-15.4、15.7、15.9、15.17、15.20 对恶性疟原虫 D6 和恶性疟原虫 W2 也有较好的抗疟活性,IC50 值分别为 1.84、1.83、1.56、1.49、1.45、1.97、1.68 μM 和 1.86、1.40、1.19、1.71、1.16、1.34、1.61 μM。5-吡唑-3-基-喹啉-8-醇衍生物,如 16.3、16.5、16.11、16.13、16.19、16.20,对恶性疟原虫 D6 和恶性疟原虫 W2 也有抗疟活性,IC50 值分别为 2.23、2.16、2.99、2.99、2.73、2.12 μM 和 2.91、3.60、4.61、2.71、2.31、2.66 μM。
大多数 5-腙甲基-喹啉-8-醇衍生物对白色念珠菌、烟曲霉和新型隐球菌具有良好的抗真菌活性。大多数 5-腙甲基喹啉-8-醇衍生物比参考标准氟康唑更有效。这些衍生物可能被认为是进一步开发抗真菌药物的先导化合物。