Enhanced production of cordycepin under solid-state fermentation of Cordyceps militaris by using combinations of grains/substrates

被引:0
作者
Mahesh Borde
Sanjay K. Singh
机构
[1] Savitribai Phule Pune University,Department of Botany
[2] MACS-Agharkar Research Institute,National Fungal Culture Collection of India, Biodiversity and Palaeobiology Group
来源
Brazilian Journal of Microbiology | 2023年 / 54卷
关键词
Adenine; Adenosine; Cordycepin; Solid-state fermentation;
D O I
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中图分类号
学科分类号
摘要
This manuscript deals with cordycepin, an interesting secondary compound produced from entomopathogenic fungus, Cordyceps. It has attracted commercial interest due to its immense pharmacological importance beneficial to human health. In this study, the contents of cordycepin and its derivatives, like adenine and adenosine, were evaluated through solid-state fermentation using combinations of various grains as substrate. Treatment with grain combination numbers 2, 7, 8, and 9 exhibited higher cordycepin content (1.621, 1.929, 1.895, and 1.996 mg/g cordycepin, respectively) than control (rice). The grain combination number 7 exhibited significantly higher adenine content (700 mg/g) than the control and all other combinations. Treatments with grain combination numbers 2, 5, and 7 exhibited higher adenosine content (2.719, 2.938, and 3.392 mg/g, respectively); however, no significant increase in adenosine content was noted in any treatments. The biomass including fresh mycelium and fruit body was found higher in grain combination numbers 7 and 9, leading to enhanced cordycepin content. Overall, the increase in the fresh biomass significantly enhanced cordycepin accumulation. The level of cordycepin was recorded as higher than that of its derivatives, adenosine and adenine. The grain combination of rice, wheat, jowar, bajra, and sugarcane bagasse added to basal medium exhibited the highest cordycepin content and was found suitable for solid-state fermentation of Cordyceps militaris. To our understanding, the present study is the first to use combinations of cereals for the production of cordycepin from C. militaris.
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页码:2765 / 2772
页数:7
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共 192 条
  • [1] Ma L(2015)Cordycepin from Cordyceps militaris prevents hyperglycemia in alloxan-induced diabetic mice Nutr Res 35 431-439
  • [2] Song Z(2018)The genus Cordyceps: an extensive review of its traditional uses, phytochemistry and pharmacology Fitoter 129 293-316
  • [3] Mei D(2012)Cordyceps militaris polysaccharides can enhance the immunity and antioxidation activity in immunosuppressed mice Carbohyd Polym 89 461-466
  • [4] Olatunji OJ(2014)Cordycepin production by Acta Biol Slov 57 45-52
  • [5] Tang J(2015). Oncol Lett 10 595-599
  • [6] Tola A(2006) cultivation on spent brewery grains J Pharm Pharmacol 58 1677-1682
  • [7] Auberon F(2010)Apoptosis and inhibition of proliferation of cancer cells induced by cordycepin J Pharmacol Sci 113 395-403
  • [8] Oluwaniyi O(1998)Cordycepin (3′-deoxyadenosine) inhibits human platelet aggregation induced by U46619, a TXA2 analogue Antimicrob agents chemother 42 61424-61427
  • [9] Ouyang Z(2019)Cordycepin prevents hyperlipidemia in hamsters fed a high-fat diet via activation of AMP-activated protein kinase Int Urol Nephrol 51 1883-1892
  • [10] Wang M(2015)Antifungal activity of 3'-deoxyadenosine (cordycepin)” Nutr Res 35 431-439