Synthesis and biological evaluations of novel bendazac lysine analogues as potent anticataract agents
摘要:
Novel bendazac analogues and their salts have been designed and prepared. The resulting compounds (13c-d, 15c, 17c) showed very good aqueous solubility (> 100 mg/mL). An in vitro assay showed that most of the resulting compounds had potent protective activity against the oxidative damage. Particularly, compound 13d was also able to enhance the WSP and T-AOC level in the H2O2/FeCl3-induced oxidative damage model, indicating the resulting compound may protect the lens through an antioxidant pathway. (C) 2010 Elsevier Ltd. All rights reserved.
Synthesis and biological evaluations of novel bendazac lysine analogues as potent anticataract agents
摘要:
Novel bendazac analogues and their salts have been designed and prepared. The resulting compounds (13c-d, 15c, 17c) showed very good aqueous solubility (> 100 mg/mL). An in vitro assay showed that most of the resulting compounds had potent protective activity against the oxidative damage. Particularly, compound 13d was also able to enhance the WSP and T-AOC level in the H2O2/FeCl3-induced oxidative damage model, indicating the resulting compound may protect the lens through an antioxidant pathway. (C) 2010 Elsevier Ltd. All rights reserved.
ORGANIC DICARBOXYLIC ACIDS, SALTS AND PREPARATION METHOD THEREOF
申请人:Gou Shaohua
公开号:US20120226051A1
公开(公告)日:2012-09-06
Organic dicarboxylic acid compounds, salts and preparation methods thereof. The said compounds have activity of resisting oxidation damage to crystalline lens of eyes. The structures of the above organic dicarboxylic acid compounds are shown as formula (1).
Novel bendazac analogues and their salts have been designed and prepared. The resulting compounds (13c-d, 15c, 17c) showed very good aqueous solubility (> 100 mg/mL). An in vitro assay showed that most of the resulting compounds had potent protective activity against the oxidative damage. Particularly, compound 13d was also able to enhance the WSP and T-AOC level in the H2O2/FeCl3-induced oxidative damage model, indicating the resulting compound may protect the lens through an antioxidant pathway. (C) 2010 Elsevier Ltd. All rights reserved.