Enoki, Winter Mushroom · 2002 · Journal Article
Medium relevanceOptimization of submerged culture conditions for the production of angiotensin converting enzyme inhibitor from Flammulina velutipes.
Flammulina velutipes
Key points
- The angiotensin-converting enzyme (ACE) inhibitory effect was tested in the culture broth from submerged mycelial cultures of 20 basidiomycetes
- The ACE inhibitory effect of culture broth from Flammulina velutipes strain 414 was the highest (52.8%), followed by Lentinus edodes strains 2 (44.4%) and 16 (41.3%)
- Nutritional requirements for the production of ACE inhibitory substance from F. velutipes were studied
- Sucrose, ammonium acetate, and glutamic acid were chosen for the maximum production of ACE inhibitory substance
- The optimal medium composition was (g/l): sucrose 20, ammonium acetate 5, glutamic acid 2, KH(2)PO(4) 3, MgSO(4).7H(2)O 0.8, and yeast extract 0.5
- Under optimal culture conditions, the ACE inhibitory effect was more than 80%
Metadata-grounded summary
Citation abstract
The angiotensin-converting enzyme (ACE) inhibitory effect was tested in the culture broth from submerged mycelial cultures of 20 basidiomycetes. The ACE inhibitory effect of culture broth from Flammulina velutipes strain 414 was the highest (52.8%), followed by Lentinus edodes strains 2 (44.4%) and 16 (41.3%). Nutritional requirements for the production of ACE inhibitory substance from F. velutipes were studied. Sucrose, ammonium acetate, and glutamic acid were chosen for the maximum production of ACE inhibitory substance. The optimal medium composition was (g/l): sucrose 20, ammonium acetate 5, glutamic acid 2, KH(2)PO(4) 3, MgSO(4).7H(2)O 0.8, and yeast extract 0.5. Under optimal culture conditions, the ACE inhibitory effect was more than 80%.
Citation
Kim JM, Ra KS, Noh DO, Suh HJ (2002). Optimization of submerged culture conditions for the production of angiotensin converting enzyme inhibitor from Flammulina velutipes. Journal of industrial microbiology & biotechnology https://doi.org/10.1038/sj.jim.7000306 PMID: 12407466
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