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首页> 外文期刊>Quimica nova >PHYTOCHEMICAL AND BIOLOGICAL STUDIES OF CONSTITUENTS FROM ROOTS OF Salacia crassifolia (CELASTRACEAE)
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PHYTOCHEMICAL AND BIOLOGICAL STUDIES OF CONSTITUENTS FROM ROOTS OF Salacia crassifolia (CELASTRACEAE)

机译:Salacia crasifolia根系成分的植物化学和生物学研究(Celastraceae)

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Salacia crassifolia traditionally known as “Bacupari-do-Cerrado” is used to treat kidney problems, and as a healing agent for coughs and malaria. The phytochemical study of the S. crassifolia roots led to the isolation of thirteen compounds: abruslactone-A (1), urs-12-ene-3β,25,30-triol (2), carioprystimerin (3), β-sitosterol (4), pristimerin (5), dispermoquinone (6), netzahualcoyonol (7), 20-hydroxy-20-epi-tingenone (8), 6-oxo-pristimerol (9), 9β,10β-epoxi-3β-hydroxy-1βH,4βH,5βH,7βH,11αH-guaian-12,8β-olide (10), 3-O-b-D-glucosyl-b-sitosterol (11), 4`-O-methylepigalocatechin (12) and cerebroside (13). The chemical structures of 1-13 were determined by IR, 1D/2D NMR together with X-ray diffractometry. Compounds 2 and 10 are herein described for the first time. Extracts of S. crassifolia and compounds 3, 5, 8 and 9 were evaluated on acetylcholinesterase inhibition, in vitro cytotoxic activity and in vivo toxicity tests using Caenorhabditis elegans model. All tested compounds inhibited acetylcholinesterase, and compounds 3, 8 and 9 demonstrated a greater potential when compared to the standard eserine. The tested compounds showed low cytotoxicity against the THP-1, K562 and MDA-MB-231 cancer cell lines. None of the tested compounds and extracts were toxic against C. elegans since the larvae survival rate in L1 stage was higher than 90%.
机译:Salacia Crassifolia传统上称为“Bacupari-Do-Cerrado”用于治疗肾脏问题,作为咳嗽和疟疾的治疗剂。 S. Crassifolia Roots的植物化学研究导致十三个化合物的分离:abraslactone-a(1),URS-12-eNE-3β,25,30-三醇(2),Carioprystimerin(3),β-谷甾醇( 4),促购蛋白酶(5),Dispermoquinone(6),Netahahualcoyonol(7),20-羟基-20-epi-tingenone(8),6-氧代 - 前吡咯(9),9β,10β-EPOXI-3β-羟基 - 1βh,4βh,5βh,7βh,11αh-guaian-12,8β-olide(10),3-obd-glucosyl-b-谷甾醇(11),4`-methyhypigalocateChin(12)和脑筋膜(13)。通过IR,1D / 2D NMR与X射线衍射法一起测定1-13的化学结构。本文首次描述了化合物2和10。评价甲克莱基菌和化合物3,5,8和9的提取物对乙酰胆碱酯酶抑制,体外细胞毒性活性和使用Caenorhabditis elegans模型进行体内毒性试验。所有测试的化合物抑制乙酰胆碱酯酶,化合物3,8和9与标准eSerine相比,表现出更大的潜力。测试化合物对THP-1,K562和MDA-MB-231癌细胞系显示出低细胞毒性。由于L1阶段的幼虫存活率高于90%,因此没有测试的化合物和提取物对C.杆状杆菌毒性毒性。

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