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Algae biocers: astaxanthin formation in sol-gel immobilised living microalgae

机译:藻类生物药剂:溶胶-凝胶固定的活微藻中虾青素的形成

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摘要

New biocer materials consisting of the living microalgae cells Haematococcus pluvialis immobilised within modified sol - gel silica layers can produce the metabolic carotinoid dye astaxanthin after being coated on glass then cultivated. The layer stability and viability of the embedded microalgae depends on the preparation, storage, cultivation, stressing and extraction conditions. For example the use of a new optimised culture medium ensures the viability of the immobilised microalgae cells for more than 40 days. The combined application of Fe2+ compounds with NaCl or hydrogen peroxide as stress factors causes a strong increase in astaxanthin formation within the biocer coatings during cultivation. The dye can then be extracted with various organic solvents. When combined with cell-protective additives there is only a moderate decrease in viability after solvent extraction, allowing the immobilised microalgae to be recultivated. In this way the continuous biotechnological production of astaxanthin seems possible in principle.
机译:由固定在改良的溶胶-凝胶硅胶层中的活的微藻细胞的生血微球藻组成的新型生物化学物质材料,可将其涂覆在玻璃上然后培养后,产生代谢类胡萝卜素染料虾青素。包埋的微藻的层稳定性和生存能力取决于制备,储存,培养,胁迫和提取条件。例如,使用新的优化培养基可确保固定化微藻细胞存活40天以上。 Fe2 +化合物与NaCl或过氧化氢作为胁迫因素的组合施用会导致在培养过程中生物杀菌剂涂层中虾青素的形成大量增加。然后可以用各种有机溶剂提取染料。当与细胞保护性添加剂混合使用时,溶剂萃取后活力仅会适度降低,从而使固定的微藻可以重新培养。这样,虾青素的连续生物技术生产原则上似乎是可能的。

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