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1.
David D. McPherson Chun-Tao Che Geoffrey A. Cordell D. Doel Soejarto John M. Pezzuto Harry H.S. Fong 《Phytochemistry》1985,25(1):167-170
Three new furanoditerpenoids of the caesalpin-type have been isolated from the roots of Caesalpinia pulcherrima. The structures of these compounds, vouacapen-5α-ol, 6β-cinnamoyl-7β-hydroxy-vouacapen-5α-ol and 8,9,11,14-didehydrovouacapen-5α-ol, were elucidated through interpretation of their spectral data. Sitosterol was also obtained. 相似文献
2.
常绿杜鹃亚属Subgenus Hymenanthes是由K.Koch(1872)根据Blume(1826)建立的Genus Hymenanthes改级组合而成。但长期以来人们一直沿用了Maximowicz(1870)所建立的、后由Koehne(1893)修订过的Subgenus Eurhododendron这一亚属名称,直到最近D.F.Chamberlain(1978,1979,1982)对该亚属的名称才作了正式订正。 相似文献
3.
From the aerial part of Teucrium chamaedrys a new neo-clerodane diterpenoid, dihydroteugin, has been isolated, besides the previously known diterpenoids teucrin A and teugin. The structure of dihydroteugin, (12S)-15,16-epoxy-2β,6β-dihydroxy-neo-cleroda-13(16), 14-diene-18,19:20,12-diolide, was established by chemical and spectroscopic means and by partial synthesis from teugin. 相似文献
4.
The tuber of Humirianthera rupestris (Icacinaceae) contains the degraded diterpenoids 3β,20-epoxy-30α- hydroxy- 14-oxo-9β-podocarpan-19,6β-olide (humirianthenolide A), 3β,20-epoxy-3α,14α-dihydroxy-9β-podocarpan-19,6β- olide (humirianthenolide B), 3β,20; 16,14-diepoxy-3α-hydroxy-17-nor-15-oxo-9β-abiet-13-en-19,6β-olide (humirianthenolide C), 3β,20-epoxy-3α,14-dihydroxy-13-oxo-9β-podocarp-8(14)-en-19,6β-olide (humirianthenolide D), 3β,20-epoxy-3α-hidroxy-14-oxo-8α,9β-podocarpan-19,6β-olide (humirianthenolide E) and 3β,20-epoxy-3α,14β- dihydroxy-8α,9β-podocarpan-19,6β-olide (humirianthenolide F). 1H NMR and 13C NMR spectroscopy were efrective for the determination of the humirianthenolide structures. 相似文献
5.
From the whole plant of Ajuga chamaepitys two new neo-clerodane diterpenoids, ajugapitin and its dihydro derivative, have been isolated. Their 相似文献
6.
7.
采用硅胶柱色谱、凝胶柱色谱及其他分离手段从甘西鼠尾草中分离得到12个化合物,根据化合物理化性质和波谱数据分别鉴定为:丹参酮ⅡA(1)、丹参酮Ⅰ(2)、丹参内酯(3)、隐丹参酮(4)、丹参酸甲酯(5)、间羟基苯甲醛(6)、迷迭香酚(7)、异迷迭香酚(8)、紫丹参甲素(9)、紫丹参乙素(10)、二氢丹参酮Ⅰ(11)、丹参新醌甲(12)。其中化合物7、8为首次从该植物中分离得到,化合物6为首次从该属植物分离得到。 相似文献
8.
Two new cembranoids, together with fifteen known ones, were isolated from the flowers of Nicotiana tabacum L. The structures of the new compounds were established as (1βH,2E,4αOH,6αOH,7E,10αH,11αH,12βOH)-10,11-epoxy-2,7-cembradiene-4,6,12-triol (1) and (1βH,2E,4αOH,6αOH,7E,10βH,11βH,12αOH)-10,11-epoxy-2,7-cembradiene-4,6, 12-triol (2) by using spectroscopic analysis, including HRESIMS, IR, one- and two-dimensional NMR. A plausible biogenetic relationship of the isolated cembranoids was proposed. The antitumor activities of selected compounds against a panel of three human cancer HepG2, A549 and HCT-116 cell lines were evaluated by the MTT assay. Compound 5 exhibited moderate activity against Hep-G2 cell lines with an IC50 value of 14.38 μM. 相似文献
9.
Jianbin Wang Menghua Wu Chun Gao Hongzheng Fu 《Bioorganic & medicinal chemistry》2019,27(7):1320-1326
Kirenol is one of the biologically active diterpenoids from Siegesbeckia pubescens. In terms of the high content and typical structure, many ent-diterpenoids separated from S. pubescens were presumed to be biologically related to kirenol. Among them, epoxy-pimarane diterpenoids are belonging to a special family of naturally occurring compounds that attracted our attentions on their putative biosynthesis pathway and biological activities. Here, we designed and synthesized two known 14,16-epoxy-pimarane diterpenoids (2 and 3) and five 8,15-epoxy-pimarane diterpenoids (4–8) from kirenol. Their absolute structures were determined by 1D and 2D NMR data and the absolute configurations of 4 were confirmed by X-ray crystallographic data. Their inhibition effects on factor Xa (FXa) were evaluated to assess the potentiality of epoxy-pimarane diterpenoids as FXa inhibitor agents. 相似文献
10.
The clerodane diterpenoid salvinorin A (1), the main active component of the psychotropic herb Salvia divinorum, has been reported to be a potent agonist at the kappa-opioid receptor. Computer modeling suggested that splendidin (2) from S. splendens, as well as related compounds, might possess similar activities. In the present study, this hypothesis was tested by determination of the binding properties of a series of structural congeners, compounds 2-8, at the mu-, delta-, and kappa-opioid receptors. However, none of these compounds showed significant binding to any of the opioid-receptor subtypes, thus disproving the above hypothesis. The novel compounds 7 and 8 were obtained semi-synthetically by selective modification of salvifarin (5), isolated from Salvia farinacea, upon epoxide-ring opening with AcOH in the presence of indium(III) triflate. Also, the X-ray crystal structure of salvifaricin (6; Fig.), obtained from S. farinacea, was determined for the first time and used, in combination with in-depth NMR experiments, to elucidate the absolute configurations of the new products. Our experiments demonstrate that the relatively well-accessible diterpenoid 6 could be used as starting material for future studies into the structure-activity relationship at the kappa-opioid receptor. 相似文献