• 제목/요약/키워드: Method of stationary phase

검색결과 183건 처리시간 0.019초

유독 와편모조류 Alexandrium catenella와 A. pacifcium의 생장과 마비성 독소 생산에 미치는 빛의 파장의 영향 (Effects of Light Wavelengths on the Growth and Paralytic Shellfish Toxin Production of Alexandrium catenella and A. pacificum)

  • 남기택;김석윤;문창호;김창훈;오석진
    • 해양환경안전학회지
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    • 제26권1호
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    • pp.84-92
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    • 2020
  • 본 연구는 마비성 독소 표준물질의 안정적인 공급을 위해 친환경적이고 경제성이 우수한 발광다이오드 광원의 파장을 이용하여, PST의 원인종 Alexandrium catenella와 A. pacificum의 독 함량을 증대시킬 수 있는 가능성을 살펴보았다. 파장별 광량과 생장속도의 관계를 보면, 반포화상수(Ks)는 두 종 모두 적색파장에서 가장 높게 나타났고, 청색파장에서 가장 낮았다. 빛 파장에 따른 독함량의 경우, 적색 파장이 A. catenalla은 최고 약 8배 그리고 A. pacificum은 약 3.4배 다른 파장보다 높았다. 그리고 광량에 대한 친화성을 나타내는 Ks와 독농도와 밀접한 관련이 있는 것으로 나타났다. 따라서 세포당 독농도 증가를 위한 배양법은 초기에 세포수량의 확보 및 빠른 생장속도를 유도하기 위해서 청색파장을, 대수생장기 후기에는 적색파장을 주사하여, 세포내 독함유량을 증가시킬 수 있는 2단계 배양법을 제시할 수 있을 것으로 생각된다.

전자선 조사에 의한 동결육에 오염된 Escherichia coli O157:H7 의 제거 (Elimination of Escherichia coli O157:H7 Contaminated in Frozen Beef by Electron Beam Irradiation)

  • 권오진;양재승;임성일;변명우
    • 한국식품과학회지
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    • 제29권4호
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    • pp.771-775
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    • 1997
  • 본 연구는 병원성 Escherichia coli O157:H7 균주에 의한 식중독을 미연에 예방하고자 우육에 본 균주를 오염, 동결시켜 전자선에 의한 살균효과를 조사하였다. $37^{\circ}C$에서는 배양 16시간째에 최대균수를 나타내었고 $4^{\circ}C$에서는 균주의 증식이 거의 없었다. E. coli O157:H7 균주는 대수기나 정지기 모두가 $0^{\circ}C$ (chilled)와 $-18^{\circ}C$ (frozen)에서 배양시 약 $10^{7}\;CFU/mL$의 균수를 나타내었고 $-18^{\circ}C$에서는 $20^{\circ}C$ 보다 균주의 사멸율이 높았다. 동결육에 오염된 E. coli O157:H7 균주의 방사선 감수성은 $D_{(10)}$ 값이 0.45 kGy, 불활성화계수가 $3{\sim}5\;kGy$에서 $6.67{\sim}11.11$로 각각 나타났다. 본 결과로서 전자선 조사는 동결육에 오염된 E. coli O157:H7 균주의 제거방법으로 매우 효과가 있었다.

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개 바베시아병에 관한 연구 I. Babesia gibsoni의 시험관내 분리와 항원성상에 관한 연구 (Studies on canine babesiosis in Korea I. In vitro isolation and antigenic properties of Babesia gibsoni)

  • 이호권;서명득
    • 대한수의학회지
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    • 제36권3호
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    • pp.681-692
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    • 1996
  • The present study was conducted to isolate Babesia gibsoni by culture method of the microaerophilous stationary phase(MASP) and analyse the antigenic properties of the parasite by SDS-PAGE and immunoblot. The results obtained were summarized as follows. The protozoan parasite Babesia gibsoni multiplied in canine erythrocytes in RPMI 1640 medium(pH7.0) containing 20 40% normal canine serum under the MASP condition of 5% CO2 and 95% air at $37^{\circ}C$ incubator. The levels of parasitaemia in the erythrocytes were shown more higher by exchanging the medium at 24 hours interval. Under the above condition of MASP, the percentage of parasitized erythrocytes(PPE) after incubation for 8 days increased about 14 times more than that in the initiation of the 1% infected canine erythrocyte culture. The parasites were purely isolated from the MASP culture of red blood cells collected from dogs infected with Babesia gibsoni naturally or artificially. Among the total of 36 canine(Pit-bullterier) blood samples the parasites were isolated from 17 cases(47.2%) in the MASP culture while the parasites were detected from 20 cases(56%) and 12 cases(33.3%), respectively, by indirect fluorescent antibody(IFA) test and direct light microscopy(DLM). On the other hand, Babesia gibsoni was isolated by MASP culture from 15 cases(75%) and 11 cases(92%) of positive cases of IFA and DLM, respectively. In the analysis of the erythrocytic merozoite(AEOM) antigen derived from infected dog approximately 11 antigenic bands in molecular weight of 130, 120, 97.4, 92, 80, 52, 50, 42, 36, 30 and 29 KDa were observed on SDS-PAGE. Antigenic bands in the endoerythrocytic merozoite(CEOM) antigen derived from infected erythrocyte (sediment) in MASP culture were much similar to those of AEOM bands. In the exoerythrocytic merozoite(CEEM) antigen derived from supernatant of the infected erythrocyte culture approximately 20 antigenic bands were observed and the molecular weight of the major bands among these were 140, 120, 114, 105, 96, 93, 92, 80, 60, 52, 50, 38, 36, 30, 24, 18.5 and 16 KDa. In the protein patterns of AEOM and CEOM antigen by immunoblot 15 bands were observed and these patterns were much similar between each other. The molecular weight of the major bands in the both antigens were 130, 120, 80, 60, 52, 50, 42, 30, 29, 18.5 and 16 KDa. Approximately 21 bands were observed in CEEM antigen and the molecular weight of the major bands were 140, 120, 96, 92, 85, 80, 76, 60, 52, 50, 37, 30, 24, 16 and 15 KDa. The specific antigenic bands in the artificially infected dogs were firstly observed at 3 weeks afrer inoculation of infected blood and these antigenic bands were maintained up to 18 months after inoculation. In the immunoblot of the sera of the splenectomized dogs the specific antigenic bands with the molecular weight of 93 KDa and 52 KDa, respectively, were observed weakly comparing to those of non-splenectomized dog. In immunoblot of the sera collected from the naturally infected dogs the antigenic bands were observed as same as those of artificially infected dogs while antigenic band of 29 KDa in some individual dog showed strongly. In comparison of immunoblot of the sera collected from dogs non-treated and treated with diminazene aceturate(7mg/kg, IM) after artificial infection no differences of antigenic bands were observed. In analysis of antigenic bands by digoxigenin glycan/protein double labeling, antigenic bands in the molecular weight of 106, 60 58, 36, 30 and 29 KDa were determined as glycoproteins.

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