首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Microelements induce changes in characterization of sulfated polysaccharides from Antrodia cinnamomea
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Microelements induce changes in characterization of sulfated polysaccharides from Antrodia cinnamomea

机译:微量元素诱导来自Antrodia Cinnamomea的硫酸化多糖表征的变化

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Microelements play pivotal roles for fungal/plant development and end-use properties. In this study, we examined the production and characterization of valuable sulfated polysaccharides (SPSs) with biological benefits from Antrodia cinnamomea and fine-tuning of mycelial culture conditions. Using various sulfated salts (e.g. CuSO4, FeSO4 and ZnSO4) to feed A. cinnamomea, we found that CuSO4 and ZnSO4 increased 25% and 20% of mycelium yields, respectively. We further isolated the SPSs from CuSO4, FeSO4 and ZnSO4-feeding of A. cinnamomea (called CuFSPS, FeFSPS and ZnFSPS, respectively) and found that CuSO4 and ZnSO4 significantly promoted SPS production. By contrast, FeSO4 did not change the yields of mycelium and SPS from A. cinnamomea. Characteristic studies have revealed that these sulfated salts did not significantly induce change in the sulfation and the sugar contents of SPS. However, the galactose and glucose contents in ZnFSPS were increased to the value of 249 and 1038 mu mol/g, respectively. In addition, in regard to area percentages, while the major SPSs species were low molecular-weight SPSs (23 kDa), the sulfated salts increased the area percentages of molecular size in the range of 200-500 kDa. Anticancer function studies showed that those SPSs inhibit the cell viability 35-45% at 800 mu g/ml of lung cancer A549 cells via downregulation of EGFR signaling. Our study is the first to identify the efficacy of microelements in the enhancement of mycelia yield and SPS, in which CuSO4 and ZnSO4 enhanced mycelia growth and increased the production of SPS. Our finding suggests that ZnSO4 may play roles in regulating the SPS assembling. Moreover, those SPSs derived from feeding A. cinnamomea with microelements may be useful as a potential agent for inhibition of lung cancer viability. (C) 2018 Elsevier B.V. All rights reserved.
机译:微量元素为真菌/植物开发和最终用途起作用的枢轴作用。在这项研究中,我们研究了具有来自Antrodia Cinnamomea的生物益处的有价值的硫酸化多糖(SPS)的生产和表征,以及菌丝培养条件的微调。使用各种硫酸盐(例如CuSO4,FesO4和ZnSO 4)来喂养A型肉桂瘤,我们发现Cuso4和ZnSO4分别增加了25%和20%的菌丝产率。我们进一步从CuSO4,Feso4和ZnSO 4喂养的SPSS分别喂养A. Cinnamomea(分别称为Cufsps,FeFSP和ZnFSPS),发现Cuso4和ZnSO4显着促进了SPS生产。相比之下,Feso4没有改变来自A肉瘤的菌丝体和SP的产量。特征研究表明,这些硫酸盐没有显着诱导硫化的变化和SPS的糖含量。然而,ZnFSP中的半乳糖和葡萄糖含量分别增加到249和1038μmmol/ g的值。另外,在面积百分比上,而主要的SPSS物种是低分子量SPSS(& 23kDa),硫酸盐盐增加了200-500kDa范围内的分子大小的面积百分比。抗癌函数研究表明,这些SPSS通过EGFR信号传导的下调抑制了800μg/ ml肺癌A549细胞的细胞活力35-45%。我们的研究是第一个识别微量元素在菌丝产量和SPS增强中的疗效,其中Cuso4和ZnSO4增强了菌丝体的增长并增加了SPS的生产。我们的发现表明,ZnSO4可能会在调节SPS组装方面发挥作用。此外,源自喂养A.肉瘤的SPSS具有微量元素的肉瘤可用作抑制肺癌活力的潜在剂。 (c)2018年elestvier b.v.保留所有权利。

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