Taylor & Francis Group
Browse
gnpl_a_1677649_sm6272.pdf (4.36 MB)

Design and synthesis of sinomenine isoxazole derivatives via 1,3-dipolar cycloaddition reaction

Download (4.36 MB)
journal contribution
posted on 2019-10-17, 10:42 authored by Hongmei Pan, Tong Lu, Xuedan Wu, Chengwen Gu, Naili Tao, Biao Zhang, Ao Wang, Guangmei Chen, Kehua Zhang, Jie Cheng, Jie Jin

A novel structure of sinomenine isoxazole derivatives is synthesised from sinomenine hydrochloride and aromatic aldehydes and requires six steps. 19 target compounds have been obtained in good yields. The sinomenine hydrochloride transforms to 4-alkynyl sinomenine, which is a key intermediate product to synthesise the target sinomenine isoxazole compounds, after a neutralisation reaction with ammonia and substitution reaction with 3-chloropropyne. Another key intermediate product is 1,3-dipole, which can be obtained from aromatic aldehyde. After treatment with hydroxylamine hydrochloride and then sodium carbonate solution, aromatic aldehyde is converted to aldehyde oxime, which reacts with N-chlorosuccinimide (NCS) to afford aryl hydroximino chloride. 1,3-Dipole is eventually formed in situ while triethylamine (TEA) in DMF is added dropwise. Then 4-alkynyl sinomenine is added to provide the sinomenine isoxazole derivative via 1,3-dipolar cycloaddition reaction as the key step. All the target compounds are characterised by melting point, 1H NMR, 13C NMR, HRMS and FT-IR spectroscopy.

Funding

This work is supported by the Anhui University Natural Science Research Project (KJ2019A0770, KJ2019JD19) and the Science and Technology Innovation Foundation for College Students (C19000).

History