Lead Discovery and Rapid Structure Elucidation Group, Sequoia Sciences, Inc., St. Louis, Missouri, USA.
Planta Med. 2012 Jan;78(2):160-5. doi: 10.1055/s-0031-1280293. Epub 2011 Oct 14.
High-throughput natural product research produced a suite of anticancer hits among several species of the Orchidaceae family (Oncidium microchilum, O. isthmi, and Myrmecophila humboldtii). A commercial Oncidium sp. was also examined as a convenient source of additional material. Isolation and structure elucidation led to the identification of fifteen stilbenoids including a new phenanthraquinone and two new dihydrostilbenes. NMR data for structure elucidation and dereplication were acquired utilizing a Bruker BioSpin TCI 1.7-mm MicroCryoProbe or a 5-μL CapNMR capillary microcoil. Several compounds inhibited proliferation of NCI-H460 and M14 cancer cell lines. All compounds were also examined for their ability to induce apoptosis. Apoptosis induction was determined by measuring caspase 3/7 activation and LDH release in a NCI-H460 cell line. Based on these results, a portion of the extract from a commercially available Oncidium sp. was chemically modified in an attempt to obtain additional phenanthraquinones.
高通量天然产物研究在几个兰科(Oncidium microchilum、O. isthmi 和 Myrmecophila humboldtii)物种中产生了一系列抗癌化合物。还研究了一种商业上可用的 Oncidium sp.,作为额外材料的方便来源。分离和结构阐明导致鉴定了十五个芪类化合物,包括一个新的菲醌和两个新的二氢芪。利用 Bruker BioSpin TCI 1.7-mm MicroCryoProbe 或 5-μL CapNMR 毛细管微线圈获得了用于结构阐明和去重的 NMR 数据。几种化合物抑制了 NCI-H460 和 M14 癌细胞系的增殖。所有化合物还检查了它们诱导细胞凋亡的能力。通过测量 NCI-H460 细胞系中 caspase 3/7 的激活和 LDH 的释放来确定细胞凋亡的诱导。基于这些结果,对商业上可用的 Oncidium sp. 的一部分提取物进行了化学修饰,试图获得额外的菲醌。