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首页> 外文期刊>World Journal of Microbiology and Biotechnology >Nutrient regulation of bacterial growth and production of anti-tumor metabolites in Stigmatella WXNXJ-B fermentation
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Nutrient regulation of bacterial growth and production of anti-tumor metabolites in Stigmatella WXNXJ-B fermentation

机译:耻垢杆菌WXNXJ-B发酵过程中细菌生长的营养调控和抗肿瘤代谢物的产生

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摘要

The metabolites produced by Stigmatella WXNXJ-B inhibited the growth of tumor cells. The aims of this research were to evaluate the inhibition potency to different tumor cell lines and to study the effects of ammonium, phosphate and iron salts on bacterial growth and production of bioactive metabolites in Stigmatella WXNXJ-B fermentation. The results showed that the chloroform extract (CE-ME) showed the strongest growth inhibition bioactivity on mouse melanoma cell line (B16), murine colon carcinoma cell line (CT-26), human liver carcinoma cell line (HepG2) and human breast cancer cell line (MDA-MB231) in vitro and the IC50 values were 9.94, 7.33, 11.34 and 11.66 μg ml−1 respectively. The IC50 value was above 700 μg ml−1 on normal mouse spleen cells. Morphology happened changes in B16 cells treated with CE-ME. The anti-tumor metabolites were mainly produced during the stationary phase of the bacterial growth. Cell growth was stimulated at the phosphate concentration below 5 mM, but it was inhibited partly with 10 mM phosphate. The production of bioactive substances was inhibited by the phosphate. Ammonium increased the cell growth by 250% at 5 mM addition. The inhibition rate to B16 cells was increased to 89% at the concentration of 40 mM ammonium. The bacteria showed the best growth with 4 mM iron. Iron had little effect on the production at 2 mM, but bigger inhibition effect at higher iron concentration.
机译:Stigmatella WXNXJ-B产生的代谢产物抑制肿瘤细胞的生长。这项研究的目的是评估对不同肿瘤细胞系的抑制能力,并研究铵盐,磷酸盐和铁盐对耻垢杆菌WXNXJ-B发酵过程中细菌生长和生物活性代谢产物产生的影响。结果表明,氯仿提取物(CE-ME)对小鼠黑素瘤细胞系(B16),鼠结肠癌细胞系(CT-26),人肝癌细胞系(HepG2)和人乳腺癌具有最强的生长抑制生物活性。细胞的IC 50 值分别为9.94、7.33、11.34和11.66μgml -1 。正常小鼠脾细胞的IC 50 值高于700μgml -1 。 CE-ME处理的B16细胞的形态发生了变化。抗肿瘤代谢物主要在细菌生长的稳定期产生。磷酸盐浓度低于5 mM时会刺激细胞生长,但10 mM磷酸盐会部分抑制它的生长。磷酸盐抑制了生物活性物质的产生。添加5 mM时,铵可使细胞生长增加250%。在40 mM铵浓度下,对B16细胞的抑制率增加到89%。细菌在4 mM铁中表现出最佳生长。铁在2 mM时对产量几乎没有影响,但是在较高的铁浓度下抑制作用更大。

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