Structural optimization of caffeoyl salicylate scaffold as NO production inhibitors

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Abstract

Chlorogenic acid (CGA) has been considered as one of important active components in a number of medicinal herbs. Recently our group demonstrated that caffeoyl salicylate scaffold derived from CGA can be employed for the development of novel anti-inflammatory agents. The most active compound D104 can be a very promising starting point for the further structural optimization. A series of novel caffeoyl salicylate analogs were designed, synthesized, and evaluated by preliminary biological evaluation. The obtained results showed that the two compounds B12 and B13 can not only inhibit production of nitric oxide (NO) in RAW264.7 cells induced by lipopolysaccharides (LPS) effectively, but also have high safety in in vitro cytotoxic test, which could be comparable with D104. Molecular docking study on the peroxisome proliferator-activated receptor γ (PPARγ) protein revealed that compounds B12 and B13 can follow the same binding mode with D104, and the carboxyl group of caffeoyl salicylate scaffold might play a key role in the interaction with protein target, which implied the carboxyl group should be retained in the further optimization.

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Yu, P., Xia, C. J., Li, D. D., Wang, Z., Xiao, W., & Zhao, L. G. (2019). Structural optimization of caffeoyl salicylate scaffold as NO production inhibitors. Chemical and Pharmaceutical Bulletin, 67(9), 1006–1014. https://doi.org/10.1248/cpb.c19-00366

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