Department of Pharmacognosy, Faculty of Pharmacy, Karadeniz Technical University, 61080 Trabzon, Turkey.
Department of Pharmacognosy, Faculty of Pharmacy, Karadeniz Technical University, 61080 Trabzon, Turkey.
Bioorg Chem. 2021 Oct;115:105183. doi: 10.1016/j.bioorg.2021.105183. Epub 2021 Jul 16.
In this work, due to the biological activity evaluation, a series of hydroxy methoxy benzoins (1-8), benzils (10-16) and methoxy benzoin/benzil-O-β-d-glucosides (17-28) were synthesized. Antioxidant (FRAP, CUPRAC, DPPH), antimicrobial (16 microorganisms, and two yeast), enzyme inhibition (α-amylase, α-glucosidase, AChE, BChE, and tyrosinase) of all synthesized benzoin/benzil analogs were investigated. Benzoins (1-8) showed the most effective antioxidant properties compared to all three methods. Compound 28 against α-amylase, compound 9 against α-glucosidase, compound 11 against AChE, compound 2 against BChE, and compound 13 against tyrosinase showed the best activities with the better or similar IC values as used standards. Hydroxy methoxy benzoin compounds (1-8) among all four groups were seen as the most effective against the tested microorganism. Molecular docking analysis showed that all tested compounds 1-28 (0.01-2.22 µM) had the best binding affinity against AChE enzyme. Cytotoxic effects of the many of compounds (1-16, 21, and 24) also investigated and it was found that they caused different effects in different cells. The LDH tests of compounds 1a + b, 4, 7, 8, 9, 11, 12, 21, and 24, seemed to be effective compared to the positive control cisplatin. The cytotoxicity of compounds 6 (9.24%) for MCF7 cancer cells, 8 (5.16%) and 4 (8.26%) for HT29 cancer cells, 24 (9.84%) for Hep3B cells and 8 (8.52%), 7 (5.70%), 4 (6.94) and 9 (7.22%) for C6 cells were at normal values. And also cytotoxic activity of four compounds (5, 9, 21, and 24) among the all synthetic groups, were evaluated to the HeLa and RPE. Compound 5 showed anticancer activity on HeLa and RPE cancer cells as much as or better than cisplatin which was used as standard.
在这项工作中,由于生物活性评估,合成了一系列羟甲氧基二苯甲酮(1-8)、二苯甲酮(10-16)和甲氧基二苯甲酮/二苯甲酮-O-β-d-葡萄糖苷(17-28)。研究了所有合成的苯偶姻/二苯甲酮类似物的抗氧化(FRAP、CUPRAC、DPPH)、抗菌(16 种微生物和两种酵母)、酶抑制(α-淀粉酶、α-葡萄糖苷酶、AChE、BChE 和酪氨酸酶)活性。与三种方法相比,苯偶姻(1-8)表现出最有效的抗氧化特性。化合物 28 对α-淀粉酶、化合物 9 对α-葡萄糖苷酶、化合物 11 对 AChE、化合物 2 对 BChE、化合物 13 对酪氨酸酶的活性最好,其 IC 值与使用的标准品相当或更好。在所有四组中,羟甲氧基苯偶姻化合物(1-8)被视为对测试微生物最有效。分子对接分析表明,所有测试的化合物 1-28(0.01-2.22 μM)对 AChE 酶具有最佳的结合亲和力。还研究了许多化合物(1-16、21 和 24)的细胞毒性作用,发现它们在不同的细胞中产生不同的影响。与阳性对照顺铂相比,化合物 1a+b、4、7、8、9、11、12、21 和 24 的 LDH 试验似乎更为有效。化合物 6(9.24%)对 MCF7 癌细胞、8(5.16%)和 4(8.26%)对 HT29 癌细胞、24(9.84%)对 Hep3B 细胞和 8(8.52%)、7(5.70%)、4(6.94%)和 9(7.22%)对 C6 细胞的细胞毒性均处于正常水平。在所有合成组中,4 种化合物(5、9、21 和 24)的细胞毒性活性也被评估到了 HeLa 和 RPE。化合物 5 对 HeLa 和 RPE 癌细胞的抗癌活性与顺铂相当或优于顺铂,顺铂是作为标准药物。