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Design, Synthesis, and Examination of Neuron Protective Properties of Alkenylated and Amidated Dehydro-Silybin Derivatives

Lei YangCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaKe HuangKey Laboratory of Southern Zhejiang TCM R&D, Pharmacy School of Wenzhou Medical College, Wenzhou 325035, ChinaHai Bo LiCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaJing GongShanghai Institute of Materia Medica, Chinese Academy of Sciences, Zu Chong Zhi Road 555, Shanghai 201203, ChinaFeng WangCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaYu Bing FengCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaQiao TaoCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaYi Hang WuCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaXiao Kun LiKey Laboratory of Southern Zhejiang TCM R&D, Pharmacy School of Wenzhou Medical College, Wenzhou 325035, ChinaXiu Mei WuKey Laboratory of Southern Zhejiang TCM R&D, Pharmacy School of Wenzhou Medical College, Wenzhou 325035, ChinaSu ZengCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaShawn D. SpencerCollege of Pharmacy and Pharmaceutical Sciences, Florida A&M University, Tallahassee, Florida 32307Yu ZhaoCollege of Pharmaceutical Sciences, Zhejiang University, Yu Hang Tang Road 388, Hangzhou 310058, ChinaJia QuKey Laboratory of Southern Zhejiang TCM R&D, Pharmacy School of Wenzhou Medical College, Wenzhou 325035, China
2009en
ABI

Аннотация

A series of C7-O- and C20-O-amidated 2,3-dehydrosilybin (DHS) derivatives ((±)-1a−f and (±)-2), as well as a set of alkenylated DHS analogues ((±)-4a−f), were designed and de novo synthesized. A diesteric derivative of DHS ((±)-3) and two C23 esterified DHS analogues ((±)-5a and (±)-5b) were also prepared for comparison. The cell viability of PC12 cells, Fe2+ chelation, lipid peroxidation (LPO), free radical scavenging, and xanthine oxidase inhibition models were utilized to evaluate their antioxidative and neuron protective properties. The study revealed that the diether at C7−OH and C20−OH as well as the monoether at C7−OH, which possess aliphatic substituted acetamides, demonstrated more potent LPO inhibition and Fe2+ chelation compared to DHS and quercetin. Conversely, the diallyl ether at C7−OH and C20−OH was more potent in protection of PC12 cells against H2O2-induced injury than DHS and quercetin. Overall, the more lipophilic alkenylated DHS analogues were better performing neuroprotective agents than the acetamidated derivatives. The results in this study would be beneficial for optimizing the therapeutic potential of lignoflavonoids, especially in neurodegenerative disorders such as Alzheimer’s and Parkinson’s disease.

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