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Isolation Identification and Cytotoxicity of a New Noroleanane-Type Triterpene Saponin from Salicornia bigelovii Torr.

机译:拟南芥(Salicornia bigelovii Torr)中一种新的诺罗林烷型三萜皂苷的分离鉴定和细胞毒性。

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摘要

Salicornia bigelovii Torr. has been consumed not only as a popular kind of vegetable, but also as a medicinal plant to treat hypertension, cephalalgia, scurvy and cancer. The present study was designed to investigate its chemical components and cytotoxic activity. A new noroleanane-type triterpene saponin, bigelovii C (>1), was separated and purified from Salicornia bigelovii Torr., along with four known triterpene saponins >2–>5. The structure of bigelovii C was elucidated as 3-O-(6-O-butyl ester)-β-d-glucuropyranosyl-23-aldehyde-30-norolean-12, 20 (29)-dien-28-oic acid-28-O-β-d-glucopyranoside, according to various spectroscopic analysis and chemical characteristics. Besides Compounds >3 and >5, bigelovii C had potent cytotoxicity against three human cancer cell lines, MCF7 (breast cancer), Lovo (colon cancer) and LN229 (glioblastoma), especially MCF7. Bigelovii C inhibited the growth of MCF7 cells in dose- and time-dependent manners. Flow cytometry analysis revealed that the percentage of apoptotic cells significantly increased upon bigelovii C treatment. Rh123 staining assay indicated that bigelovii C reduced the mitochondrial membrane potential. The mechanism of cell death by bigelovii C may be attributed to the downregulation of Bcl-2 and upregulation of Bax, cleaved caspase-9, caspase-7 and PARP. These results suggested that bigelovii C may impart health benefits when consumed and should be regarded as a potential chemopreventative agent for cancer.
机译:Salicornia bigelovii托尔。不仅作为一种流行的蔬菜被消费,而且作为治疗高血压,头疼,坏血病和癌症的药用植物被消费。本研究旨在研究其化学成分和细胞毒性活性。从四倍体Salicornia bigelovii Torr中分离并纯化了一种新的胭脂烷型三萜皂苷bigelovii C(> 1 ),以及四种已知的三萜皂苷> 2 – > 5 。比格洛韦C的结构被阐明为3-O-(6-O-丁酯)-β-d-葡糖吡喃糖基-23-醛-30-诺罗兰12,20(29)-二烯-28-oic acid-28 -O-β-d-吡喃葡萄糖苷,根据各种光谱分析和化学特征制得。除了化合物> 3 和> 5 外,bigelovii C对三种人类癌细胞系MCF7(乳腺癌),Lovo(结肠癌)和LN229(胶质母细胞瘤)具有强的细胞毒性。 MCF7。 Bigelovii C以剂量和时间依赖性方式抑制MCF7细胞的生长。流式细胞仪分析显示,凋亡的细胞百分比在bigelovii C处理后显着增加。 Rh123染色分析表明双歧杆菌C降低了线粒体膜电位。双歧杆菌C导致细胞死亡的机制可能归因于Bcl-2的下调和Bax的上调,裂解的caspase-9,caspase-7和PARP。这些结果表明,bigelovii C食用时可能带来健康益处,应被视为潜在的癌症化学预防剂。

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