首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Multiple regression analysis as a tool for the identification of relations between semi-quantitative LC-MS data and cytotoxicity of extracts of the fungus Fusarium avenaceum (syn. F. arthrosporioides)
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Multiple regression analysis as a tool for the identification of relations between semi-quantitative LC-MS data and cytotoxicity of extracts of the fungus Fusarium avenaceum (syn. F. arthrosporioides)

机译:多元回归分析可作为鉴定半定量LC-MS数据与真菌镰刀镰刀菌提取物(合用F. arthrosporioides)之间的细胞毒性之间关系的工具

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The cytotoxicity of methanolic extracts from rice cultures of 53 Fusarium avenaceum strains, which had been isolated from different host organisms in Northern Europe, Canada and Australia/New Zealand, was investigated in a rat hepatoma (H4IIE-W), porcine epithelial kidney (PK-15), foetal feline lung fibroblast, dog lymphoblast (D3447), and a human hepatocarcinoma (Hep G2) cell line using the Alamar Bluetrade mark assay. All extracts were screened for known fungal metabolites using high-performance liquid chromatography with photodiode array and mass spectrometric detection, and both known and unknown metabolites were semi-quantified. Known metabolites that were determined in the cultures include acuminatopyrone, 2-amino-14,16-dimethyloctadecan-3-ol (2-AOD-3-ol), antibiotic Y, aurofusarin, chlamydosporol, chlamydospordiol, enniatins, fusarin A and C, and moniliformin. Multiple regression analysis was used in order to relate fungal metabolites to the cytotoxicity of the extracts. Separate linear regression models were constructed for each cell line. Eleven different fungal metabolites were related to the cytotoxicity (P<0.05). Out of these, nine metabolites were siginificantly related to the cytotoxicity in only one of the five models, while two, namely enniatins and 2-AOD-3-ol, were significant contributors in three or four regression models, respectively. This paper describes how multiple regression analysis may be applied for the assignment of bioactivity/toxicity to the constituents of a multi-component mixture.
机译:在大鼠肝癌(H4IIE-W),猪上皮肾(PK)中研究了从北欧,加拿大和澳大利亚/新西兰的不同宿主生物中分离出来的53种镰刀菌水稻培养物中甲醇提取物的细胞毒性。 -15),胎儿猫肺成纤维细胞,狗淋巴母细胞(D3447)和人肝癌(Hep G2)细胞系,使用Alamar Bluetrade标记测定法。使用带有光电二极管阵列和质谱检测的高效液相色谱法,对所有提取物进行已知真菌代谢物的筛选,并对已知和未知代谢物进行半定量。在培养物中确定的已知代谢物包括:尖顶类吡喃酮,2-氨基-14,16-二甲基十八烷-3-醇(2-AOD-3-ol),抗生素Y,金葡菌素,衣原体孢子醇,衣原体孢子二醇,烯尿苷,富沙林A和C,和莫尼利福星。为了使真菌代谢物与提取物的细胞毒性相关,使用了多元回归分析。为每个细胞系构建了单独的线性回归模型。 11种不同的真菌代谢产物与细胞毒性有关(P <0.05)。在这五种模型中,只有九种代谢物与细胞毒性显着相关,而在三个或四个回归模型中,enenatins和2-AOD-3-ol分别是其中的两个重要组成部分。本文介绍了如何将多元回归分析应用于多组分混合物的生物活性/毒性分配。

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