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Cytotoxicity Fractionation and Dereplication of Extracts of the Dinoflagellate Vulcanodinium rugosum a Producer of Pinnatoxin G

机译:品纳毒素G的生产者盾鞭藻(Dinoflagellate Vulcanodinium rugosum)提取物的细胞毒性分馏和去复制

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摘要

Pinnatoxin G (PnTX-G) is a marine toxin belonging to the class of cyclic imines and produced by the dinoflagellate Vulcanodinium rugosum. In spite of its strong toxicity to mice, leading to the classification of pinnatoxins into the class of “fast-acting toxins”, its hazard for human health has never been demonstrated. In this study, crude extracts of V. rugosum exhibited significant cytotoxicity against Neuro2A and KB cells. IC50 values of 0.38 µg mL−1 and 0.19 µg mL−1 were estimated on Neuro2A cells after only 24 h of incubation and on KB cells after 72 h of incubation, respectively. In the case of Caco-2 cells 48 h after exposure, the crude extract of V. rugosum induced cell cycle arrest accompanied by a dramatic increase in double strand DNA breaks, although only 40% cytotoxicity was observed at the highest concentration tested (5 µg mL−1). However, PnTX-G was not a potent cytotoxic compound as no reduction of the cell viability was observed on the different cell lines. Moreover, no effects on the cell cycle or DNA damage were observed following treatment of undifferentiated Caco-2 cells with PnTX-G. The crude extract of V. rugosum was thus partially purified using liquid-liquid partitioning and SPE clean-up. In vitro assays revealed strong activity of some fractions containing no PnTX-G. The crude extract and the most potent fraction were evaluated using full scan and tandem high resolution mass spectrometry. The dereplication revealed the presence of a major compound that could be putatively annotated as nakijiquinone A, N-carboxy-methyl-smenospongine or stachybotrin A, using the MarinLit™ database. Further investigations will be necessary to confirm the identity of the compounds responsible for the cytotoxicity and genotoxicity of the extracts of V. rugosum.
机译:品纳毒素G(PnTX-G)是海洋毒素,属于环状亚胺类,由鞭毛二鞭毛藻(Vulcanodinium rugosum)生产。尽管其对小鼠具有强烈的毒性,导致品纳毒素被归类为“速效毒素”,但从未证明其对人体健康的危害。在这项研究中,皱叶病毒的粗提物对Neuro2A和KB细胞表现出明显的细胞毒性。仅孵育24小时后,对Neuro2A细胞的IC50值估计为0.38 µg mL -1 ,对孵育72小时后,IC50值估计为KB细胞,IC50值分别为KB 。在暴露后48小时的Caco-2细胞中,葡萄粗提取物可诱导细胞周期停滞,并伴有双链DNA断裂的急剧增加,尽管在最高测试浓度(5 µg)下仅观察到40%的细胞毒性。 mL -1 )。但是,PnTX-G不是有效的细胞毒性化合物,因为在不同细胞系上均未观察到细胞活力的降低。而且,用PnTX-G处理未分化的Caco-2细胞后,未观察到对细胞周期或DNA损伤的影响。因此,使用液-液分配和SPE净化技术将豆粗提取物部分纯化。体外测定显示某些不含PnTX-G的组分具有很强的活性。使用全扫描和串联高分辨率质谱法评估粗提物和最有效的馏分。重复删除显示使用MarinLit™数据库可以推定为主要成分的主要化合物,即nakijiquinone A,N-羧甲基-smenospongine或stachybotrinA。有必要进行进一步的研究以确认负责皱叶葡萄提取物的细胞毒性和遗传毒性的化合物的身份。

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