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Synthesis, distribution analysis and mechanism studies of N-acyl glucosamine-bearing oleanolic saponins

Authors :
Juang, Yu-Pu
Lin, You-Yu
Chan, She-Hung
Chang, Chun-Kai
Shie, Jiun-Jie
Hsieh, Yves S. Y.
Guh, Jih-Hwa
Liang, Pi-Hui
Juang, Yu-Pu
Lin, You-Yu
Chan, She-Hung
Chang, Chun-Kai
Shie, Jiun-Jie
Hsieh, Yves S. Y.
Guh, Jih-Hwa
Liang, Pi-Hui
Publication Year :
2020

Abstract

A series of N-acyl glucosamine-bearingtriterpenoidsaponins has been synthesized with cytotoxic activities evaluated against HL-60, PC-3, HCT-116, and CT-26 tumor cells. Saponins incorporated anoleanolic acid (OA) triterpenoidal core exhibited the highest cytotoxic activity. To study the influence of the lengths of acyl-carbon chain onN-position of glucosamine, cells were treated with28-propargylamides and then reacted with an azido-fluorogenic probe under CuAACclickreactions to visualize the intact distributions of these compounds by confocal microscopy and flow cytometry; it was found that cytotoxic-active compounds (30–32) located in the cytosol and inactivecompounds bearing longer carbon chains (33–35) were impenetrable across cell membranes.Our study demonstrated the defined lipophilic acyl-carbon chain length can precisely regulate thecytotoxic activityof saponins, which is useful for the future development of cytotoxic agents.Furthermore, using quantitative proteomics and immunolabeling,the mechanism ofcytotoxicity induced by the synthetic saponin after membrane penetration could be a result of activation of death receptor pathway and inhibition of PI3K/Akt/mTOR pathway.<br />QC 20200505

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235045126
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.bioorg.2020.103835