Pereira David M, Faria Joana, Gaspar Luís, Valentão Patrícia, de Pinho Paula Guedes, Andrade Paula B
REQUIMTE/ Department of Pharmacognosy, Faculty of Pharmacy, Porto University, R. Aníbal Cunha, 164, 4050-047 Porto, Portugal.
Food Chem Toxicol. 2009 Aug;47(8):2142-9. doi: 10.1016/j.fct.2009.05.033. Epub 2009 Jun 13.
Boerhaavia diffusa is a plant which is extensively used in folk medicine. However, when it comes to its phytochemical characterization, little attention has been given to secondary metabolites other than rotenoids and alkaloids. A metabolite profiling and biological study was undertaken in this species' leaves and roots and substantial differences were found between the two parts of the plant. The volatile composition was analysed for the first time using HS-SPME-GC-MS and several compounds, including terpenes, phenylpropanoids, indol compounds, norisoprenoids, among others, were identified. Organic acid analysis was also performed, allowing their characterization in this species for the first time, and oxalic, ketoglutaric, pyruvic, quinic and fumaric acids were identified. Quantitative differences between the two vegetal materials were found. Additionally, several flavonoids and one phenolic acid were also confirmed. Concerning the biological potential, the aqueous extract of each plant part was tested against DPPH radical, one reactive oxygen species (O(2)(-)) and one reactive nitrogen species (()NO). Moreover, activity against acetylcholinesterase, an enzyme with a well-known role in several physio-pathological processes, was assayed. When possible, the relation between the chemistry and activity displayed was established. Leaves revealed stronger antioxidant activity than roots, and acetylcholinesterase inhibition was not found in neither plant part.
白花蛇舌草是一种在民间医学中广泛使用的植物。然而,在其植物化学特征方面,除了鱼藤酮类化合物和生物碱外,对其他次生代谢产物的关注较少。对该物种的叶和根进行了代谢物谱分析和生物学研究,发现植物的这两个部分之间存在显著差异。首次使用顶空固相微萃取-气相色谱-质谱联用技术分析了挥发性成分,鉴定出了几种化合物,包括萜类、苯丙素类、吲哚类化合物、去甲异戊二烯类等。还进行了有机酸分析,首次对该物种中的有机酸进行了表征,鉴定出了草酸、酮戊二酸、丙酮酸、奎尼酸和富马酸。发现两种植物材料之间存在定量差异。此外,还确认了几种黄酮类化合物和一种酚酸。关于生物活性,测试了每个植物部分的水提取物对DPPH自由基、一种活性氧(O(2)(-))和一种活性氮(()NO)的清除能力。此外,还检测了其对乙酰胆碱酯酶的活性,该酶在多种生理病理过程中具有重要作用。在可能的情况下,建立了化学组成与活性之间的关系。叶显示出比根更强的抗氧化活性,且在两个植物部分中均未发现乙酰胆碱酯酶抑制作用。