Berberine, an isoquinoline alkaloid isolated from the Chinese herb Coptis chinensis and other Berberis plants, exhibits a broad spectrum of pharmacological properties. It can inhibit the proliferation of various cancer cell types and impede invasion and metastasis. Benzenesulfonyl chloride or compounds containing the structure of benzenesulfonyl chloride have shown some potential in the development of anticancer drugs. In this study, a series of berberine benzenesulfonyl chloride couplings (compounds 4-59 ) was designed and synthesized based on berberine. Cell activity assays identified compounds 18 and 46 containing six methyl groups, as exhibiting significant anti-proliferative activity against lung cancer cell line H460 (compound 18 : 4.50 μM, compound 46 : 10.82 μM). Further assessment of the enzyme activity of these compounds against phosphoglycerate mutase 1 (PGAM1) demonstrated that compound 18 has an IC 50 of 0.081 μM, compound 22 has an IC 50 of 0.076 μM, and compound 35 has an IC 50 of 0.087 μM. The enzymatic activity of these three compounds is comparable to that of the positive control PGMI-004A, which has an IC 50 of 0.052 μM. These findings suggest that these compounds have potential as PGAM1 inhibitors. Compounds 18 and 46 were found to induce apoptosis, block the cell cycle at the G2/M stage, cause reactive oxygen species (ROS) to burst, and induce mitochondrial dysfunction. Importantly, compounds 18 and 46 down-regulated the expression of PGAM1 and up-regulated ACTA2 and P53 in the Western blot analyses. In conclusion, this study further provides a robust scientific foundation for the structural modification of berberine and the development of anti-lung cancer agents.
Zhang et al. (Thu,) studied this question.