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一种添加尿素的低成本肥料培养基用于[具体物种]叶黄素的生产及叶黄素保护细胞免受蓝光照射的能力

A Low-Cost Fertilizer Medium Supplemented with Urea for the Lutein Production of sp. and the Ability of the Lutein to Protect Cells against Blue Light Irradiation.

作者信息

Kuo Chiu-Mei, Yang Yi-Chun, Zhang Wen-Xin, Wu Jia-Xun, Chen Yu-Tso, Lin Cheng-Han, Lin Meng-Wei, Lin Chih-Sheng

机构信息

Department of Chemical Engineering, Chung Yuan Christian University, Taoyuan City 320314, Taiwan.

Department of Biological Science and Technology, National Chiao Tung University, Hsinchu 30068, Taiwan.

出版信息

Bioengineering (Basel). 2023 May 15;10(5):594. doi: 10.3390/bioengineering10050594.

Abstract

This study aimed to investigate the use of organic fertilizers instead of modified f/2 medium for sp. cultivation, and the extracted lutein of the microalga to protect mammal cells against blue-light irradiation. The biomass productivity and lutein content of sp. cultured in 20 g/L fertilizer medium for 6 days were 1.04 g/L/d and 4.41 mg/g, respectively. These values are approximately 1.3- and 1.4-fold higher than those achieved with the modified f/2 medium, respectively. The cost of medium per gram of microalgal biomass reduced by about 97%. The microalgal lutein content was further increased to 6.03 mg/g in 20 g/L fertilizer medium when supplemented with 20 mM urea, and the cost of medium per gram lutein reduced by about 96%. When doses of ≥1 μM microalgal lutein were used to protect mammal NIH/3T3 cells, there was a significant reduction in the levels of reactive oxygen species (ROS) produced by the cells in the following blue-light irradiation treatments. The results show that microalgal lutein produced by fertilizers with urea supplements has the potential to develop anti-blue-light oxidation products and reduce the economic challenges of microalgal biomass applied to carbon biofixation and biofuel production.

摘要

本研究旨在探究使用有机肥料而非改良的f/2培养基培养某藻种,以及该微藻提取的叶黄素对哺乳动物细胞蓝光照射的保护作用。在20 g/L肥料培养基中培养6天的某藻种,其生物量生产力和叶黄素含量分别为1.04 g/L/天和4.41 mg/g。这些值分别比使用改良f/2培养基时高出约1.3倍和1.4倍。每克微藻生物量的培养基成本降低了约97%。当在20 g/L肥料培养基中添加20 mM尿素时,微藻叶黄素含量进一步提高到6.03 mg/g,每克叶黄素的培养基成本降低了约96%。当使用≥1 μM剂量的微藻叶黄素保护哺乳动物NIH/3T3细胞时,在随后的蓝光照射处理中,细胞产生的活性氧(ROS)水平显著降低。结果表明,添加尿素的肥料所产生的微藻叶黄素具有开发抗蓝光氧化产品的潜力,并减少了微藻生物质应用于碳生物固定和生物燃料生产的经济挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1567/10215514/9c36ebda46b0/bioengineering-10-00594-g001.jpg

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