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Production Of Lovastatin And Sulochrin By Aspergillus Terreus Using Solid State Fermentation

机译:曲霉曲霉固态发酵法生产洛伐他汀和磺胺菊酯

摘要

Lovastatin is an anti-cholesterol agent that was produced by Aspergillus terreus using solid state fermentation (SSF). During this fermentation process, sulochrin is also produced as an unwanted co-metabolite. However, our previous result showed that sulochrin had potential as antidiabetes because it is an inhibitor agent of α-glucosidase. In this paper, we reported our observation on lovastatin and sulochrin production pattern in relation with inhibitor α-glucosidase activity during eleven days fermentation of A. terreus koji (SSF) ethyl acetate extract. Koji obtained from solid state fermentation with rice as the substrate and incubated at room temperature, sample is taken daily for eleven day (D-1 to D-11). Lovastatin and sulochrin production was measured by Liquid Chromatography- Mass Spectrometer based on their molecular weight m/z 404.5 and 332.3 respectively. The inibitory activity is measured by inhibition model of koji extract against α-glucosidase (EC 3.2.1.20) from Saccharomyces cereviceae. The results show that lovastatin production was started on the day 2 (0.04 mg/g) and achieving the optimal production on day 7 (11.46 mg/g), while sulochrin production was started on day 4 (0.60 mg/g) and keep produced until the end of fermentation period at Day 11 (3.11 mg/g). Koji extract was started to show inhibitory to α-glucosidase activity on Day 5 (IC50= 23.34 μg/mL) and keep showed activity until Day 11 (IC50=3.33 μg/mL). These results suggest that inhibitory activity of koji extract to α- glucosidase activity have relation with sulochrin biosynthesis production.
机译:洛伐他汀是一种抗胆固醇药,由曲霉属曲霉使用固态发酵(SSF)生产。在该发酵过程中,磺基舒林也作为不需要的共代谢物产生。但是,我们先前的结果表明,磺胺菊酯具有抗糖尿病的潜力,因为它是α-葡萄糖苷酶的抑制剂。在本文中,我们报道了在土曲曲霉(SSF)乙酸乙酯提取物发酵11天期间洛伐他汀和硫磺菊酯生产模式与抑制剂α-葡萄糖苷酶活性相关的观察结果。从以米为底物的固态发酵中获得的酒曲,在室温下孵育,每天取样十一天(D-1至D-11)。通过液相色谱-质谱仪分别基于它们的分子量m / z 404.5和332.3测量洛伐他汀和磺胺丁香酸的产生。通过曲霉提取物对酿酒酵母(Saccharomyces cereviceae)的α-葡萄糖苷酶(EC 3.2.1.20)的抑制模型来测定其活性。结果表明,洛伐他汀的生产从第2天开始(0.04 mg / g),并在第7天达到最佳产量(11.46 mg / g),而磺草胺的生产从第4天开始(0.60 mg / g)并保持生产状态直到第11天发酵期结束(3.11 mg / g)。曲提取物在第5天开始显示出对α-葡糖苷酶活性的抑制作用(IC50 = 23.34μg/ mL),并保持活性直至第11天(IC50 = 3.33μg/ mL)。这些结果表明,曲提取物对α-葡糖苷酶活性的抑制活性与硫磺素的生物合成产生有关。

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