Belofsky Gil, Cruz Caroline, Schultz Trevor, Zapata Maxwell, Wilcox Dominique, Wasmund Brendan, Salomon Christine E, Spiegel P Clint
Department of Chemistry, Central Washington University, Ellensburg, WA, 98926, United States.
Department of Chemistry, Central Washington University, Ellensburg, WA, 98926, United States.
Phytochemistry. 2024 Oct;226:114224. doi: 10.1016/j.phytochem.2024.114224. Epub 2024 Jul 19.
The phytochemical investigation of extracts from Dalea nana roots and aerial parts led to the isolation of thirteen phenolic compounds. Three previously undescribed isoflavans, named verdeans A-C (1, 3, and 7), were characterized. Two additional isoflavans (2 and 5) were previously undescribed enantiomers of known compounds. A previously undescribed isoflavone (verdean D, 10) was found, and the known specialized metabolites, isoflavans 4, 6, 8, and 9, isoflavone 11, flavone 12, and a 2-arylbenzofuran 13, were also isolated. All but one (7) of the isoflavans were prenylated. The structures of the previously undescribed compounds were deduced by NMR spectroscopy, supported by HRESI mass spectrometry. The absolute configurations of 1-3, 5, and 7-9 were determined by ECD. Compounds 1, 3, 4, 6, and 8 exhibited in vitro antimicrobial activities, causing complete growth inhibition (MIC) at concentrations between 6.7 and 37.0 μM against Cryptococcus neoformans and between 8.9 and 25.0 μM against methicillin resistant Staphylococcus aureus (MRSA). The most broadly active previously undescribed compound was verdean A (1), with MIC values of 6.7 and 12.9 μM toward C. neoformans and MRSA, respectively, and an MIC of 10.0 μM against the often-intractable C. albicans.
对纳纳代尔草(Dalea nana)根和地上部分提取物进行的植物化学研究,分离出了13种酚类化合物。鉴定出了三种以前未描述过的异黄酮,命名为弗德安A - C(1、3和7)。另外两种异黄酮(2和5)是已知化合物的以前未描述过的对映体。发现了一种以前未描述过的异黄酮(弗德安D,10),还分离出了已知的特殊代谢产物,异黄酮4、6、8和9、异黄酮11、黄酮12以及一种2 - 芳基苯并呋喃13。除一种异黄酮(7)外,所有异黄酮都进行了异戊烯基化。通过核磁共振光谱法推导了以前未描述过的化合物的结构,并得到了高分辨电喷雾电离质谱的支持。通过电子圆二色谱确定了1 - 3、5和7 - 9的绝对构型。化合物1、3、4、6和8表现出体外抗菌活性,在6.7至37.0 μM的浓度下对新型隐球菌产生完全生长抑制(最低抑菌浓度),在8.9至25.0 μM的浓度下对耐甲氧西林金黄色葡萄球菌(MRSA)产生完全生长抑制。活性最广泛的以前未描述过的化合物是弗德安A(1),对新型隐球菌和MRSA的最低抑菌浓度分别为6.7和12.9 μM,对通常难以对付的白色念珠菌的最低抑菌浓度为10.0 μM。