广州化工
廣州化工
엄주화공
GUANGZHOU CHEMICAL INDUSTRY AND TECHNOLOGY
2014年
22期
14-15,46
,共3页
王宗成%姜红宇%张敏
王宗成%薑紅宇%張敏
왕종성%강홍우%장민
黄酮羧酸类化合物%合成%生物活性%进展
黃酮羧痠類化閤物%閤成%生物活性%進展
황동최산류화합물%합성%생물활성%진전
flavone carboxylic acids derivative%synthesis%physiological activity%progress
天然的黄酮类化合物一般不具有羧基,但在黄酮类化合物上引入羧基,便具有特殊的生理活性,这大大丰富了黄酮类化合物的家族,拓展了黄酮类化合物的应用范围及提高黄酮类化合物的生理活性。文章综述了黄酮羧酸类化合物的合成方法及其生理活性进展。
天然的黃酮類化閤物一般不具有羧基,但在黃酮類化閤物上引入羧基,便具有特殊的生理活性,這大大豐富瞭黃酮類化閤物的傢族,拓展瞭黃酮類化閤物的應用範圍及提高黃酮類化閤物的生理活性。文章綜述瞭黃酮羧痠類化閤物的閤成方法及其生理活性進展。
천연적황동류화합물일반불구유최기,단재황동류화합물상인입최기,편구유특수적생리활성,저대대봉부료황동류화합물적가족,탁전료황동류화합물적응용범위급제고황동류화합물적생리활성。문장종술료황동최산류화합물적합성방법급기생리활성진전。
Natural flavonoids were generally without carboxyl. Some literatures reported that derivatives introducing carboxyl on flavonoids had special physiological activity, which greatly enriched the family of flavonoids, expanded the application fields of flavonoids and improved the physiological activity of flavonoids. The physiological activities and research progress in synthesis of flavone carboxylic acids derivatives were summarized.