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CEN Yi, YANG Feng, TONG Yong. Effect of dissolved oxygen on high density fermentation of E.coli in producing rhG-CSF[J]. Journal of Pharmaceutical Practice and Service, 2011, 29(3): 197-199,231.
Citation:
CEN Yi, YANG Feng, TONG Yong. Effect of dissolved oxygen on high density fermentation of E.coli in producing rhG-CSF[J]. Journal of Pharmaceutical Practice and Service, 2011, 29(3): 197-199,231.
Effect of dissolved oxygen on high density fermentation of E.coli in producing rhG-CSF
Department of Inorganic Chemistry,School of Pharmacy, Second Military Medical University, Shanghai 200433, China
Received Date: 2011-01-22
Rev Recd Date:
2011-04-22
Abstract
Objective To study the density of the dissolved oxygen(DO) on fermentation of E.coli in producing rhG-CSF. Methods Pure oxygen was used to control DO precisely and to observe the growth of engineered bacteria, the lost of plasmids ,the accumulation of acetic acid from different DO density. The optimum density of DO for fermentation was determined. Results 25% in growth phase and 30% after induction was optimum density of DO for rhG-CSF expression and engineered bacteria growth. Under these conditions, the wet cell weight reached(79.6±2.1) g/L and the expression of rhG-CSF was(40.2±1.2)%. Conclusions The growth of engineered bacteria and the expression of rhG-CSF were influenced by the density of dissolved oxygen significantly.
Yee L, Blanch HW. Recombinant trypsin production in high cell density fed-batch cultures in Escherichia coli[J]. Biotechnol Bioeng, 1993, 41(8): 781. [6] 俞俊棠,唐孝宣.生物工艺学[M].上海:华东化工学院出版社,1994. [7] Suare DC, Kilikian BV. Acetic acid accumulation in aerobic growth of recombinant Escherichia coli[J]. Process Biochemistry, 2000, 35: 1051. [8] 常海燕,范代娣,骆艳娥. 重组大肠杆菌高密度发酵生产类人胶原蛋白Ⅱ条件优化[J].微生物学通报,2009, 36(6): 870. [9] Meyer HP, Iechter AF. Production of cloned human leukocyt interferon by Bacillus subtilis: Optimal production is connected with rest rained growth[J]. Appl Environ Mi-crobiol, 1985, 50: 503. [10] Phue J.N, Shiloach J. Impact of dissolved oxygen concentration on acetate accumulation and physiology of E. coli BL21, evaluating transcription levels of key genes at different dissolved oxygen conditions[J]. Metabolic Engi-neering, 2005, 7: 353. [11] Yee L, Blanch HW. Recombinant trypsin production in high cell density fed-batch cultures in Escherichia coli[J]. Biotechnol Bioeng, 1993, 41(8): 781.
Abstract: Objective To study the density of the dissolved oxygen(DO) on fermentation of E.coli in producing rhG-CSF. Methods Pure oxygen was used to control DO precisely and to observe the growth of engineered bacteria, the lost of plasmids ,the accumulation of acetic acid from different DO density. The optimum density of DO for fermentation was determined. Results 25% in growth phase and 30% after induction was optimum density of DO for rhG-CSF expression and engineered bacteria growth. Under these conditions, the wet cell weight reached(79.6±2.1) g/L and the expression of rhG-CSF was(40.2±1.2)%. Conclusions The growth of engineered bacteria and the expression of rhG-CSF were influenced by the density of dissolved oxygen significantly.
CEN Yi, YANG Feng, TONG Yong. Effect of dissolved oxygen on high density fermentation of E.coli in producing rhG-CSF[J]. Journal of Pharmaceutical Practice and Service, 2011, 29(3): 197-199,231.
Citation:
CEN Yi, YANG Feng, TONG Yong. Effect of dissolved oxygen on high density fermentation of E.coli in producing rhG-CSF[J]. Journal of Pharmaceutical Practice and Service, 2011, 29(3): 197-199,231.
Yee L, Blanch HW. Recombinant trypsin production in high cell density fed-batch cultures in Escherichia coli[J]. Biotechnol Bioeng, 1993, 41(8): 781. [6] 俞俊棠,唐孝宣.生物工艺学[M].上海:华东化工学院出版社,1994. [7] Suare DC, Kilikian BV. Acetic acid accumulation in aerobic growth of recombinant Escherichia coli[J]. Process Biochemistry, 2000, 35: 1051. [8] 常海燕,范代娣,骆艳娥. 重组大肠杆菌高密度发酵生产类人胶原蛋白Ⅱ条件优化[J].微生物学通报,2009, 36(6): 870. [9] Meyer HP, Iechter AF. Production of cloned human leukocyt interferon by Bacillus subtilis: Optimal production is connected with rest rained growth[J]. Appl Environ Mi-crobiol, 1985, 50: 503. [10] Phue J.N, Shiloach J. Impact of dissolved oxygen concentration on acetate accumulation and physiology of E. coli BL21, evaluating transcription levels of key genes at different dissolved oxygen conditions[J]. Metabolic Engi-neering, 2005, 7: 353. [11] Yee L, Blanch HW. Recombinant trypsin production in high cell density fed-batch cultures in Escherichia coli[J]. Biotechnol Bioeng, 1993, 41(8): 781.
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CEN Yi, YANG Feng, TONG Yong. Effect of dissolved oxygen on high density fermentation of E.coli in producing rhG-CSF[J]. Journal of Pharmaceutical Practice and Service, 2011, 29(3): 197-199,231.
CEN Yi, YANG Feng, TONG Yong. Effect of dissolved oxygen on high density fermentation of E.coli in producing rhG-CSF[J]. Journal of Pharmaceutical Practice and Service, 2011, 29(3): 197-199,231.