Department of Chemistry, Lomonosov Moscow State University, 119991 Moscow, Russia.
Medicinal Chemistry Center, Togliatti State University, 445020 Togliatti, Russia.
Molecules. 2023 Jan 25;28(3):1174. doi: 10.3390/molecules28031174.
The enzyme NRH:quinone oxidoreductase 2 (NQO2) plays an important role in the pathogenesis of various diseases such as neurodegenerative disorders, malaria, glaucoma, COVID-19 and cancer. NQO2 expression is known to be increased in some cancer cell lines. Since 3-arylidene-2-oxindoles are widely used in the design of new anticancer drugs, such as kinase inhibitors, it was interesting to study whether such structures have additional activity towards NQO2. Herein, we report the synthesis and study of 3-arylidene-2-oxindoles as novel NRH:quinone oxidoreductase inhibitors. It was demonstrated that oxindoles with 6-membered aryls in the arylidene moiety were obtained predominantly as -isomers while for some 5-membered aryls, the -isomers prevailed. The most active compounds inhibited NQO2 with an IC of 0.368 µM. The presence of a double bond in the oxindoles was crucial for NQO2 inhibition activity. There was no correlation between NQO2 inhibition activity of the synthesized compounds and their cytotoxic effect on the A549 cell line.
醌氧化还原酶 2(NQO2)酶在神经退行性疾病、疟疾、青光眼、COVID-19 和癌症等各种疾病的发病机制中起着重要作用。已知在一些癌细胞系中 NQO2 的表达增加。由于 3-亚烯基-2-氧吲哚广泛用于设计新型抗癌药物,如激酶抑制剂,因此研究这些结构是否对 NQO2 具有额外的活性是很有趣的。本文报道了作为新型 NRH:醌氧化还原酶抑制剂的 3-亚烯基-2-氧吲哚的合成和研究。结果表明,在芳亚甲基部分具有 6 元芳基的氧吲哚主要以 -异构体获得,而对于一些 5 元芳基,-异构体占优势。最活跃的化合物对 NQO2 的抑制作用 IC 为 0.368µM。氧吲哚中双键的存在对 NQO2 抑制活性至关重要。合成化合物对 NQO2 的抑制活性与其对 A549 细胞系的细胞毒性作用之间没有相关性。