共晶
类黄酮
化学
生物利用度
活性成分
查尔酮
溶解度
组合化学
氢键
纳米技术
抗氧化剂
有机化学
材料科学
药理学
分子
生物
作者
Jia Xu,Qin Shi,Yanan Wang,Yong Wang,Junbo Xin,Jin Cheng,Fang Li
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2023-01-06
卷期号:28 (2): 613-613
被引量:15
标识
DOI:10.3390/molecules28020613
摘要
Cocrystallization is currently an attractive technique for tailoring the physicochemical properties of active pharmaceutical ingredients (APIs). Flavonoids are a large class of natural products with a wide range of beneficial properties, including anticancer, anti-inflammatory, antiviral and antioxidant properties, which makes them extensively studied. In order to improve the properties of flavonoids, such as solubility and bioavailability, the formation of cocrystals may be a feasible strategy. This review discusses in detail the possible hydrogen bond sites in the structure of APIs and the hydrogen bonding networks in the cocrystal structures, which will be beneficial for the targeted synthesis of flavonoid cocrystals. In addition, some successful studies that favorably alter the physicochemical properties of APIs through cocrystallization with coformers are also highlighted here. In addition to improving the solubility and bioavailability of flavonoids in most cases, flavonoid cocrystals may also alter their other properties, such as anti-inflammatory activity and photoluminescence properties.
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