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Efficient Production of Lumichrome by Microbacterium sp. Strain TPU 3598

机译:微生物菌高效生产荧光染料。应变TPU 3598

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Lumichrome is a photodegradation product of riboflavin and is available as a photosensitizer and fluorescent dye. To develop new efficient methods of lumichrome production, we isolated bacterial strains with high lumichrome productivity from soil. The strain with highest productivity was identified as Microbacterium sp. strain TPU 3598. Since this strain inductively produced lumichrome when cultivated with riboflavin, we developed two different methods, a cultivation method and a resting cell method, for the production of large amounts of lumichrome using the strain. In the cultivation method, 2.4 g (9.9 mmol) of lumichrome was produced from 3.8 g (10.1 mmol) of riboflavin at the 500-ml scale (98% yield). The strain also produced 4.7 g (19.4 mmol) of lumichrome from 7.6 g (20.2 mmol) of riboflavin (96% yield) by addition of riboflavin during cultivation at the 500-ml scale. In the resting cell method, 20 g of cells (wet weight) in 100 ml of potassium phosphate buffer, pH 7.0, produced 2.4 g of lumichrome from 3.8 g of riboflavin (98% yield). Since the lumichrome production by these methods was carried out in suspension, the resulting lumichrome was easily purified from the cultivation medium or reaction mixture by centrifugation and crystallization. Thus, the biochemical methods we describe here are a significant improvement in terms of simplicity and yield over the existing chemical, photolytic, and other biochemical methods of lumichrome production.
机译:Lumichrome是核黄素的光降解产物,可以用作光敏剂和荧光染料。为了开发新型有效的发光染料生产方法,我们从土壤中分离出了具有高发光效率的细菌菌株。生产率最高的菌株被鉴定为Microbacterium sp.。菌株TPU3598。由于该菌株与核黄素一起培养时会感应产生发光色素,我们开发了两种不同的方法,一种培养方法和一种静息细胞法,以使用该菌株生产大量的发光色素。在培养方法中,以500毫升的规模从3.8 g(10.1 mmol)的核黄素产生了2.4 g(9.9 mmol)的发光色素(98%产率)。通过在500 ml规模的培养过程中添加核黄素,该菌株还从7.6 g(20.2 mmol)的核黄素(96%的产率)中产生了4.7 g(19.4 mmol)的发光色素。在静息细胞法中,在100 ml pH 7.0的磷酸钾缓冲液中的20 g细胞(湿重)从3.8 g核黄素(98%产率)产生2.4 g发光色素。由于通过这些方法制备的发光色素是在悬浮液中进行的,因此容易通过离心分离和结晶从培养基或反应混合物中纯化得到的发光色素。因此,我们在此描述的生化方法相对于现有的化学,光解和其他发光化学生产方法,在简便性和产量方面都有了显着的提高。

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