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형질전환된 식물세포에서 Sucrose 농도가 hGM-CSF 생산에 및 미치는 영향
이진옥,심두희,주치언,김동일,이동근,이재화,Lee, Jin-Ok,Shim, Doo-Hee,Joo, Chi-Un,Kim, Dong-Il,Lee, Dong-Geun,Lee, Jae-Hwa 한국식물생명공학회 2004 식물생명공학회지 Vol.31 No.2
본 연구에서는 hGM-CSF 유전자가 도입된 형질전환 담배세포에서 sucrose의 농도가 배양 배지내 분비된 hGM-CSF, 총분비 단백질, 그리고 단백질 분해효소에 미치는 효과를 보았다. 10, 30, 60, 90, 120, 150 g/L의 sucrose 농도로 배양한 결과 sucrose농도가 30g/L일 때 건조중량은 11.22g/L, 분비된 hGM-CSF의 양은 181.53 $\mu\textrm{g}$/L, 그리고 총단백질은 66.8 mg/L.로 시료채취 5일 때 가장 높은 값을 나타내었고, 단백질 분해효소는 sucrose농도가 120 g/L일때 2660 U/L.의 값을 나타내었다. 그러나 배양 10일째 sucrose농도 60 g/L에서 건조중량이 28.36g/L로 가장 높은 값을 나타낸 반면 분비된 hGM-CSF의 최대 값은 95 $\mu\textrm{g}$/L.로 sucrose농도가 150 g/L일 때 가장 높은 값을 나타내었다. The effects of sucrose concentration on the secretion of hGM-CSF, total protein and protease into the medium were investigated in transgenic tobacco cells. The dry cell weight (11.22 g/L), hGM-CSF (181.53 $\mu\textrm{g}$/L) and total protein (66.8 mg/L) were detected as highest at 30 g/L sucrose and protease activity (2660 U/L) was highest at 120 g/L sucrose after 5-day culture. However after 10-day culture, the maximum dry cell weight (28.36 g/L) was found at 60 g/L sucrose while the maximum hGM-CSF (95 $\mu\textrm{g}$/L) was appeared at 150 g/L sucrose. The total protein and protease activity was secreted as 52.28mg/L and 3430 U/L, respectively in the same culture.
김진욱(Jin Wook Kim),주치언(Chi Un Joo),박진용(Jin Yong Park),이송애(Ae Song Lee),김인혜(In Hae Kim),이재화(Jae Hwa Lee) 한국환경성돌연변이발암원학회 2005 한국환경성돌연변이·발암원학회지 Vol.25 No.4
Antibiotic resistance of bacteria in the biofilm mode of growth contributes to the chronicity of infection and disease. The penetration of antibiotic, through biofilm developed in an in vitro model system was investigated. Antibiotic resistant bacteria (E. coli) were obtained from Culture Collection of Antibiotic Resistant Microbes. Ca-alginate bead used as simulated biofilm and a cell entrapment test using compressed air were experiment for the improvement cell viability. Antibiotic susceptibilities though biofilms was measured by assaying the concentration of antibiotic that diffused through the biofilm to minimal inhibition concentration (MIC). Survival of immobilized cells were reduced as compared to free cells. In case of antibiotic susceptible E. coli reduced continuously, but antibiotic resistant E. coli kept up survival rate constantly. Survival was showed after exposed to the antibiotics that the more treated antibiotic resistant E. coli and low concentration of antibiotics, the more survived.