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Efficient Production of Anticancer Agent Cordycepin by Repeated Batch Culture of Cordyceps militaris Mutant

机译:通过冬虫夏草的重复分批培养有效地生产抗癌剂冬虫氏素蛋白

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Cordycepin (3'-deoxyadenosine) exhibits antimicrobial, anticancer, antimetastatic, immunomodulatory and insecticidal effects, and is one of the most important bioactive anticancer agents found in Cordyceps species (summer grass-winter worm). However, due to the requirements of specific hosts and strict growth environments, Cordyceps militaris is very scarce in nature. Therefore, the production of the anticancer agent cordycepin from Cordyceps militaris in a large scale is currently an acute issue that might be solved by a repeated batch operation of surface liquid culture. In a course of searching a suitable culture technique, the repeated batch culture of control and, mutant with an optimized medium for each were used. The medium compositions were 62.6 g/l glucose, 72.5 g/l Yeast Extract (YE); and 86.2 glucose, 93.8 g/l YE for the control, and mutant, respectively. The cordycepin productivities [g/(l·d)] of batch and repeated batch were 0.16, 0.18, and 0.24, 0.44 for control, and mutant, respectively. Moreover, the productivity of the mutant in batch and repeated batch cultures were respectively increased to 0.26 g/(l·d) and 0.48 g/(l·d) by the addition of adenosine to the optimized medium. This is the highest cordycepin productivity [0.48 g/(l·d)] reported until now. In fact, the cordycepin productivities of the repeated batches were 34%, 86% and 82% higher than those of batches for control, mutant, and mutant with adenosine, respectively; whereas, those of mutant and mutant with adenosine were 113% and 131% higher than that of the control, respectively, indicating effectiveness of the repeated batch culture. The nucleic acid-related compounds analysis revealed that the major portion of cordycepin existed in the medium. Therefore, the Cordyceps militaris mutant (G81-3) obtained by a proton beam irradiation with the best additive concentration (adenosine 6 g/l) might be an effective combination for repeated batch culture in the optimized medium to achieve a further higher cordycepin productivity.
机译:虫草素(3'-脱氧腺苷)表现抗微生物,抗肿瘤,抗转移,免疫调节和杀虫效果,而且是最重要的生物活性抗癌药物之一,在虫草物种中发现(夏草冬虫)。然而,由于特定的主机和严格的生长环境的要求,虫草是自然界中非常稀少。因此,生产在大规模蛹虫草抗癌剂虫草素目前是一个尖锐的问题可能由表面液体培养的重复分批操作来解决。在搜索合适的培养技术中,控制的重复分批培养和的过程中,使用突变体对于每个优化的平台。该介质组合物是62.6克/ l葡萄糖,72.5mmol克/升酵母提取物(YE);和86.2葡萄糖,93.8用于控制克/升YE,和突变体,分别。分批和重复分批的虫草素生产率[克/(L·d)]分别为0.16,0.18,和0.24,0.44用于控制,和突变体。此外,在分批和重复分批培养所述突变体的生产率通过添加腺苷的优化培养基分别增加至0.26克/(L·d)和0.48克/(L·d)。这是最高的虫草素生产率[0.48克/(L·d)]报道直到现在。事实上,重复批次的虫草素生产率分别为34%,86%和82%,比那些批次控制,突变体的较高,且突变体腺苷,分别;而,这些突变体和突变体与腺苷分别为113%和131%,比对照的高,分别表示重复分批培养的有效性。核酸相关化合物分析表明,虫草素的主要部分在介质中存在。因此,通过质子束照射具有最佳添加剂浓度(腺苷为6g /升)中获得的蛹虫草突变体(G81-3)可能是重复的分批培养的有效组合的优化培养基,以实现进一步更高的虫草素的生产率。

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