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Enhancement of BDNF Production by Co-cultivation of Human Neuroblastoma and Fibroblast Cells
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  • Enhancement of BDNF Production by Co-cultivation of Human Neuroblastoma and Fibroblast Cells
  • Enhancement of BDNF Production by Co-cultivation of Human Neuroblastoma and Fibroblast Cells
저자명
Hong. Jong-Soo,Oh. Se-Jong,Kim. Sun-Hee,Park. Kwon-Tae,Cho. Jin-Sang,Park. Kyung-You,Lee. Jin-Ha,Lee. Hyeon-Yong
간행물명
Biotechnology and bioprocess engineering
권/호정보
1998년|3권 2호|pp.51-54 (4 pages)
발행정보
한국생물공학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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It has been proved that co-cultivation of human neroblastoma cells and human fibroblast cells can enhance nerve cell growth and the production of BDNF in perfusion cultivation. In batch co-cultivation, maximum cell density was increased up to 1.76${ imes}$106 viable cells/mL from 9${ imes}$105 viable cells/mL of only neuroblastoma cell culture. The growth of neuroblastoma cells was greatly improved by culturing both nerve and fibroblast cells in a perfusion process, maintaining 1.5${ imes}$106 viable cells/mL, which was much higher than that form fed-batch cultivation. The nerve cell growth was greatly enhance in both fed-batch and perfusion cultivations while the growth of fibroblast cells was not. It strongly implies that the factors secreted from human fibrobast cells and/or the environments of co-culture system can enhance both cell growth and BDNF secretion. Specific BDNF production rate was not enhanced in co-cultures; however, the production period was increased as the cell growth was lengthened in the co-culture case. Competitive growth between nerve cells and fibroblast cells was not observed in all cases, showing no changes of fibroblast cell growth and only enhancement of the neuroblastoma cell growth and overall BDNF production. It was also found that the perfusion cultivation was the most appropriate process for cultivating two cell lines simultaneously in a bioreactor.