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Impact of magnetic immobilization on the cell physiology of green unicellular algae Chlorella vulgaris

机译:磁固定化对绿色单细胞藻类小黄藻类细胞生理的影响

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Cell immobilization on the magnetic nanoparticles (MNPs) and magnetic harvesting is a novel approach for microalgal cells separation. To date, the effect of these nanoparticles on microalgal cells was only studied over a short period of time. More studies are hence needed for a better understanding of the magnetic harvesting proposes or environmental concerns relating to long-term exposure to nanoparticles. In this study, the impact of various concentrations of MNPs on the microalgal cells growth and their metabolic status was investigated over 12 days. More than 60% reduction in mitochondrial activity and pigments (chlorophyll a, chlorophyll b, and carotenoids) content occurred during the first 6 days of exposure to ≥50 μg/mL nanoparticles. However, more than 50% growth inhibitory effect was seen at concentrations higher than 400 μg/mL. Exposure to MNPs gradually induced cellular adaptation and after about 6 days of exposure to stress generating concentrations (?400 μg/mL) of IONs, microalgae could overcome the imposed damages. This work provides a better understanding regarding the environmental impact of MNPs and appropriate concentrations of these particles for future algal cells magnetic immobilization and harvesting.
机译:对磁性纳米颗粒(MNP)和磁收获的细胞固定化是微藻细胞分离的新方法。迄今为止,仅在短时间内研究了这些纳米颗粒对微藻细胞的影响。因此,需要更好地理解磁性收获或与长期暴露于纳米颗粒的环境问题所需的研究。在这项研究中,在12天内研究了各种浓度MnP对微藻细胞生长的影响及其代谢状态。在暴露于≥50μg/ mL纳米颗粒的前6天期间,线粒体活性和色素活性和颜料(叶绿素A,叶绿素B和类胡萝卜素)含量超过60%以上。然而,在高于400μg/ ml的浓度下观察到超过50%的生长抑制作用。暴露于MNP逐渐诱导细胞适应性,并且在暴露于应力产生浓度(α400μg/ ml)离子的约6天后,微藻可以克服施加的损伤。这项工作提供了更好的了解MNP的环境影响以及对未来藻类细胞磁性固定和收获的适当浓度的这些颗粒。

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