Statistical optimization and anticancer activity of a red pigment isolated from Streptomyces sp. PM4

被引:1
作者
Valliappan Karuppiah [1 ,2 ]
Chandramohan Aarthi [1 ]
Kannan Sivakumar [1 ]
Lakshmanan Kannan [1 ]
机构
[1] CAS in Marine Biology,Faculty of Marine Sciences,Annamalai University,Parangipettai 608502,Tamil Nadu,India
[2] Marine Biotechnology Laboratory,State Key Laboratory of Microbial Metabolism and School of Life Sciences and Biotechnology,Shanghai Jiao TongUniversity,Shanghai 200240,P.R. China
关键词
Streptomyces; Pigment; Response surface methodology; Anticancer activity;
D O I
暂无
中图分类号
Q936 [微生物生物化学];
学科分类号
071010 ;
摘要
Objective:To enhance the pigment production byStreptomycessp.PM4 for evaluating its anticancer activity.Methods:Response surface methodology was employed to enhance the production of red pigment fromStreptomycessp.PM4.Optimized pigment was purified and evaluated for the anticancer activity against HT1080,Hep2,HeLa and MCF7 cell lines by MTT assay.Results:Based on the response surface methodology,it could be concluded that maltose (4.06 g),peptone (7.34 g),yeast extract(4.34 g)and tyrosine(2.89 g)were required for the maximum production of pigment(1.68 g/L)by theStreptomycessp.PM4.Optimization of the medium with the above tested features increased the pigment yield by 4.6 fold.Pigment showed the potential anticancer activity against HT1080,HEp-2,HeLa and MCF-7cell lines with the IC50value of 18.5,15.3,9.6 and 8.5 respectively.Conclusions:The study revealed that the maximum amount of pigment could be produced to treat cancer.
引用
收藏
页码:650 / 656
页数:7
相关论文
共 9 条
  • [1] A marked enhancement in production of amylase by Bacillus amyloliquefaciens in flask fermentation using statistical methods[J]. 赵伟,郑甲,王玉光,周洪波.Journal of Central South University of Technology. 2011(04)
  • [2] Marine actinobacterial metabolites: Current status and future perspectives[J] . Panchanathan Manivasagan,Jayachandran Venkatesan,Kannan Sivakumar,Se-Kwon Kim.Microbiological Research . 2013 (6)
  • [3] Optimization of medium using response surface methodology for l -DOPA production by Pseudomonas sp. SSA[J] . Sushama A. Patil,Shripad N. Surwase,Shekhar B. Jadhav,Jyoti P. Jadhav.Biochemical Engineering Journal . 2013
  • [4] Optimization of glucoamylase production by Colletotrichum sp. KCP1 using statistical methodology[J] . Vimal S. Prajapati,Ujjval B. Trivedi,Kamlesh C. Patel.Food Science and Biotechnology . 2013 (1)
  • [5] Anticancer property of sediment actinomycetes against MCF–7 and MDA–MB–231 cell lines[J] . S Ravikumar,M Fredimoses,M Gnanadesigan.Asian Pacific Journal of Tropical Biomedicine . 2012 (2)
  • [6] Purification and characterization of protease enzyme from actinomycetes and its cytotoxic effect on cancer cell line (A549)[J] . C Balachandran,V Duraipandiyan,S Ignacimuthu.Asian Pacific Journal of Tropical Biomedicine . 2012 (2)
  • [7] Response surface methodology for the optimization of α -amylase production by Streptomyces sp. ML12 using agricultural byproducts[J] . Kannan Sivakumar,Valliappan Karuppiah,Gunasekaran Vijayabaskara Sethubathi,Thirunavukarasu Thangaradjou,Lakshmanan Kannan.Biologia . 2012 (1)
  • [8] L-asparaginase production by mangrove derived Bacillus cereus MAB5: optimization by response surface methodology[J] . C Thenmozhi,R Sankar,V Karuppiah,P Sampathkumar.Asian Pacific Journal of Tropical Medicine . 2011 (6)
  • [9] Research on marine actinobacteria in India
    Sivakumar K.
    Sahu M.K.
    Thangaradjou T.
    Kannan L.
    [J]. Indian Journal of Microbiology, 2007, 47 (3) : 186 - 196