Effect of Various Nutritional Supplements on Hyaluronic Acid Production
DOI:
https://doi.org/10.5195/iioablett.2012.18Keywords:
Streptococcus zooepidemicus, Hyaluronic acid, L-arginine HCl, L-glutamine, Sodium glucuronate, Shake flask fermentationAbstract
Effect of various nutritional supplementations on production of hyaluronic acid (HA) using Streptococcus equi subsp. zooepidemicus ATCC 39920 was evaluated at shake flask. Among the different carbon sources used, maltodextin showed HA of 0.9 g/L followed by 0.7 g/L for dextrose. L-arginine HCl at 2.0 g/L increased the yield of HA from 0.7 g/L to 0.85 g/L. L-arginine and L-glutamine showed the yield of HA of 0.7 g/L and 1.0 g/L, respectively at 2.0 g/L concentration. L-glutamine (2.0 g/L) and uridine (0.75 g/L) showed HA yield of 0.8 and 1.045 g/L, respectively. Addition of sodium glucuronate at 0.25 g/L concentration at 8 h, the yield of HA was increased from 0.7 g/L to 0.85 g/L. Pantothenic acid at concentration of 8.33 mg/L supplemented to the P10 medium, yield of 0.87 g/L of HA was obtained. Active dry yeast at 5.0 g/L increased yield of HA from 0.7 g/L to 0.85 g/L. Tween 80 at higher concentration reduced HA production. The addition of MgSO4.7H2O at 1.0 g/L improved the production of HA. Other metal ions like manganese, ferrous, copper, and zinc have no significant effect on HA production. Thus, it has been found that various nutritional supplements have effect on production of HA using S. equi subsp. zooepidemicus ATCC 39920
References
Akaska, H., Komasaki, H., and Avali, T. (1989). Fermentation method for producing HA . U. S. Patent No. 4,801,539.
Armstrong, D.C., and Johns, M.R. (1997). Culture conditions affect the molecular weight properties of HA produced by Streptococcus zooepidemicus. Appl. Microbiol. Biotechnol. 63(7): 2759–2764.
Bitter, T. and H. M. Muir. (1962). A modified uronic acid carbazole reaction. Anal. Biochem. 4; 330-333
Bracke, J.W., and Kipling, T. (1985). HA from bacterial culture. U. S. Patent No. 4,517,295.
Chen, S.J., Chen, J.L., Huang, W.C., and Chen, H.L. (2009). Fermentation process development for HA production by Streptococcus zooepidemicus ATCC 39920. Korean J. Chem. Eng. 26(2): 428-432.
Chong, B.F., Blank, L.M., Mclaughlin, R., and Nielsen, L.K. (2005). Microbial HA production. Appl. Microbiol. Biotechnol. 66: 341-351.
Duan, Jie, X., Yang, Li., Zhang, Xu., and Tan.W.S. (2008). Effect of oxygen and shear stress on molecular weight of HA produced by Streptococcus zooepidemicus. J. Microbiol. Biotechnol. 18(4): 718–724
Goa KL and Benfield P (1994) .Hyaluronic acid a review of its pharmacology and use as a surgical aid in ophthalmology and its theoretical potential in joint disease and wound healing.Drugs. 47(3):536-66.
Gao, H.J., Du, G.C., and Chen, J. (2006). Analysis of metabolic fluxes for HA production by Streptococcus zooepidemicus. World J. Microbiol. Biotechnol. 22(4): 396-408.
Hasegawa, S., M. Nagastsuru, M. Shibutani, S. Yamamoto, and S. Hasebe (1999). Productivity of concentrated hyaluronic acid using a maxblend fermenter. J. Biosci. Bioeng. (88) 68.
Kogan G., Soltes L., Stern R. and Gemeiner P. (2007). Hyaluronic acid: a natural biopolymer with a broad range of biomedical and industrial application. Biotechnol. Lett. 29 (1): 17-25.
Kim, S.J., Park, S.Y., and Kim, C.W. (2006). A novel approach to the production of HA by Streptococcus zooepidemicus. J. Microbiol. Biotechnol. 16(12): 1849-1855.
Kim, J.H., Yoo, S.J., Oh, D.K., Kweon, Y.G., Park, D.W., Lee, C.H., and Gil, G.H. (1996). Selection of a Streptococcus equi mutant and optimization of culture conditions for the production of high molecular weight HA . Enzyme Microb. Technol. 19: 440-445.
Liu, L., Sun, J., Zhang, D., Du, G., Chen, J., and Xu, W. (2009A). Culture conditions optimization of HA production by Streptococcus zooepidemicus based on radial basis function neural network and quantum-behaved particle swarm optimization algorithm. Enzyme Microbial Technol. 44: 24–32.
Liu, C., Sun, Z., Du, J., and Wang, J. (2008B). Response surface optimization of fermentation conditions for producing xylanase by Aspergillus niger SL-05. J. Ind.Microbiol. Biotechnol. 35(7): 703-711.
Liu, L., Sun , J., Wenbo, X., Guocheng, D., and Chen, J. (2009). Modeling and optimization of microbial HA production by Streptococcus zooepidemicus using radial basis function neural network coupling quantum-behaved particle swarm optimization algorithm. Biotechnol. Prog. 25(6): 819 – 1825.
Miyamori, T., Numazawa, R., Sakimae, A., and Onishi, H. (1989). Method of production of HA . U. S. Patent No. 4,885,244.
Morita, H., and Fujii, M. (1991). Process for preparing HA. U. S. Patent No. 50,717,551.
Nimrod, A., Greenman, B., Kanner, D., and Landsberg, M. (1986). Method of producing high molecular weight sodium hyaluronate by fermentation of Streptococcus. US Patent No.4,780,414.
Ogrodowski CS,Hokka CO,Santana MHA (2005) Production of Hyaluronic acid by Streptococcus. The effect of the addition of lysozyme and forced aeration in the formation and rheological properties of the product. Appl. Biochem. Biotechnol.(121)753-761
Park., Jang, M.G., Kang, J.D., and Whan, K. (1996). Streptococcus zooepidemicus medium and process for preparing HA . US Patent No. 5496726.
Poli, S., Bocchiola, G., Casareto, E., Leoni, M., Mazni, A., and Ronzio, E. (1996). Process for preparation of HA by fermentation with Streptococcus. European Patent No. 0694616A2.
Rangaswamy, V., and Jain, D. (2008). An efficient process for production and purification of HA from Streptococcus equi subsp. zooepidemicus. Biotechnol. Lett. 30: 493–496.
Rangaswamy, V., and Jain, D. (2008B). Optimisation of culture conditions for production and process of purification of high molecular weight HA . United States Patent Application 20080138865.
Shibata, Susumu and Kurato, Yoshiyuki. (1994) Production of HA. Japanese Patent No.06319579.
Trevelyan WE,Forrest RS and Harrison JS (1952) Determination of yeast carbohydrates with the anthrone reagent. Nature. 170:626-627.
Trinder p(1969) Determination of blood glucose using an oxidase peroxidase system with a noncarcinogenic chromogen. Ann Clin Biochem.6:24-30
Vazquez, J.A., Montemayor, M.I., Fraguas, J., Murado, M.A. (2009). High production of Hyaluronic and lactic acids by Streptococcus zooepidemicus in fed-batch culture using commercial and marine peptones from fishing by-products. Biochem. Engg. J. 24(2-3): 125-130.
Zhang, J., Ding, X., Yang, L., and Kong, Z. (2006). A serum-free medium for colony growth and HA production by Streptococcus zooepidemicus NJUST01. Appl. Microbiol. Biotechnol. 72: 168–172.
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