Guangdong Provincial Keylaboratory of Chiral Molecule and Drug Discovery, School of Pharmaceutical Sciences, Sun Yat-Sen University, Guangzhou, 510006, China.
Mol Divers. 2023 Oct;27(5):1971-1978. doi: 10.1007/s11030-022-10530-5. Epub 2022 Sep 23.
A gold-catalyzed carbocyclization/imidization cascade reaction has been developed,leading a facile access to the synthesis of functionalized nitrones in moderate to good yields under mild conditions. The reaction initiated by a catalytic 6-endo-dig diazo-yne carbocyclization to form the key endocyclic vinyl carbene from alkyne-tethered diazo compounds, followed by addition with nitrosoarenes that features an imidization process. Notably, these resulting nitrone products could be smoothly converted into different substituted naphthalenol analogues, such as 4-aminonaphthalen-1-ol, naphthalene-1,4-dione, and naphthalene-1,4-diol derivatives, in high yields. Moreover, the generated products exhibited potential tumor suppression activity in tested cancer celllines; compound 3c (HCT116 cells, IC = 7.41 μM; MCF-7 cells, IC = 14.28 μM) exhibits higher anticancer potency than other tested compounds.
一种金催化的碳环化/亚胺化级联反应已经被开发出来,在温和条件下,通过该反应可以从炔烃键合的重氮化合物中以中等至良好的收率轻松合成功能化的硝酮。反应由催化的 6-endo-dig 叠氮炔烃碳环化引发,形成关键的内环乙烯碳烯,然后与亚硝基芳烃加成,具有亚胺化过程。值得注意的是,这些得到的硝酮产物可以在高产率下顺利转化为不同取代的萘酚类似物,如 4-氨基-1-萘酚、1,4-萘二酮和 1,4-萘二醇衍生物。此外,生成的产物在测试的癌细胞系中表现出潜在的肿瘤抑制活性;化合物 3c(HCT116 细胞,IC=7.41 μM;MCF-7 细胞,IC=14.28 μM)比其他测试化合物具有更高的抗癌效力。