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Optimization of lovastatin production from Aspergillus fumigatus

机译:烟曲霉生产洛伐他汀的工艺优化

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摘要

The present investigation, focused on screening of various fungal species for Lovastatin production using different agro-based wastes, also, for maximizing lovastatin productivity by isolated Aspergillus fumigatus using response surface methodology (RSM). The following substrates (Olive cake; Pea pods; sugarcane bagasse; wheat bran; rice hulls; beet peel; Potato peel and groundnut shells) were screened to evaluate their effectiveness for lovastatin production, using different fungal species, (Aspergillus niger; Rhizopus oligosporus; Penicillium citrinum and isolated Aspergillus fumigatus) under solid state fermentation (SSF). Wheat bran was the most suitable substrate for lovastatin production with all fungal species. Optimum conditions of lovastatin production by wheat bran have been attained efficiently by response surface methodology (RSM) using isolated Aspergillus fumigatus under solid state fermentation (SSF). The lovastatin yield of (3.353 mg/g DFM) was obtained at an optimum temperature of 28 °C; pH of 5.00; initial moisture content of 70% and incubation period of 12 days. This Lovastatin has the possibility to use in different therapeutic applications.
机译:本研究侧重于筛选使用不同农业废料生产洛伐他汀的各种真菌种类,以及通过使用响应面方法(RSM)分离的烟曲霉来使洛伐他汀的生产率最大化。筛选了以下底物(橄榄饼;豌豆荚;甘蔗渣;麦麸;稻壳;甜菜皮;马铃薯皮和花生壳),以使用不同的真菌种类(黑曲霉;黑寡糖;根瘤菌;大麦;大麦;大麦和大麦;花生壳)进行了筛选。固态发酵(SSF)下的柠檬青霉和分离的烟曲霉(Aspergillus fumigatus)。麦麸是所有真菌物种中洛伐他汀生产的最合适底物。通过使用固态发酵(SSF)分离的烟曲霉,通过响应面法(RSM)有效地获得了麦麸生产洛伐他汀的最佳条件。在28°C的最佳温度下,洛伐他汀的产量为(3.353 mg / g DFM); pH值为5.00;初始水分含量为70%,潜伏期为12天。该洛伐他汀有可能用于不同的治疗应用。

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