• 제목/요약/키워드: EMCV

검색결과 28건 처리시간 0.027초

바이러스 불활화 공정에 대한 Hepatitis A Virus와 Murine Encephalomyocarditis Virus의 민감도 비교 (Comparative Inactivation of Hepatitis A Virus and Murine Encephalomyocarditis Virus to Various Inactivation Processes)

  • 김인섭
    • 미생물학회지
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    • 제39권4호
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    • pp.242-247
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    • 2003
  • Murine encephalomyocarditis virus (EMCV)는 혈장유래의약품의 바이러스 안전성 검증을 위해 hepatitis A virus (HAV)의 모델 바이러스로 사용되어왔다. 근래에 혈액응고인자제제에 의한 HAV 감염사례가 보고되면서 혈장유래의약품의 HAV 안전성 검증에 대한 국제적인 규제가 강화되어가고 있다. 본 연구에서는 HAV와 EMCV의 바이러스 불활화 공정에 대한 민감도를 평가하여, 혈장유래의약품 제조공정에서 HAV 불활화 공정의 검증법을 표준화하고자 하였다. HAV와 EMCV의 바이러스 불활화 공정에 대한 민감도를 평가한 결과 HAV가 60$^{\circ}C$ 열처리, low pH 처리(pH 3.9), 0.1 M NaOH 처리, 동결건조 공정 모두에서 EMCV보다 더 저항성이 큰 것을 확인할 수 있었다. EMCV는 특히 열처리와 0.1 NaOH 처리에 민감하게 불활화 되었지만, HAV는 큰 저항성을 나타내었다. 열처리의 경우 2시간 안에 EMCV는 검출한계 이하로 감소하였지만, HAV는 5시간 후에 검출한계 이하로 감소하였다. 0.1 M NaOH 처리시 EMCV는 15분 안에 검출한계 이하로 감소하였지만, HAV는 120분 정도의 처리에도 감염성 바이러스가 검출되었다. pH 3.9에서 25$^{\circ}C$로 14일 동안 항온하였을 때 HAV와 EMCV의 log 감소인수는 각각 1.63, 3.84이었다. 또한 혈액응고 8인자 제조공정의 동결건조 과정에서 HAV와 EMCV의 log 감소인수는 각각 1.21, 4.57이었다. 이와 같은 결과는 혈장유래의약품 제조공정의 HAV 불활화 또는 제거 검증시 모델 바이러스로 사용된 EMCV의 검증 결과를 해석함에 있어 보다 신중함을 가져야 한다는 것을 보여준다. 또한 보다 정확한 HAV검증 결과를 얻고자 한다면 모델 바이러스인 EMCV 보다 HAV를 사용하는 것이 보다 더 타당하다고 사료된다.

Genetic Characterization of Encephalomyocarditis Virus Isolated from Aborted Swine Fetus in Korea

  • Song, Min-Suk;Joo, Young-Ho;Lee, Eun-Ho;Shin, Jin-Young;Kim, Chul-Jung;Shin, Kwang-Soon;Sung, Moon-Hee;Choi, Young-Ki
    • Journal of Microbiology and Biotechnology
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    • 제16권10호
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    • pp.1570-1576
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    • 2006
  • An encephalomyocarditis virus (EMCV-CBNU) was isolated from an aborted swine fetus in October 2005. To investigate the genetic origin and virulence of the EMCV-CBNU strain, we determined the complete sequence of the virus and tested its virulence in mice. Genetic characterization revealed that the RNA genome was composed of 7,713 nucleotides with a single open reading frame (2,292 amino acids), coding 12 proteins. The EMCV-CBNU had the shortest poly(C) tract, consisting of 10 C's ($C_{10}$), compared with all the other EMCV strains reported in GenBank. Amino acid and phylogenetic analyses showed that EMCV-CBNU had the highest genetic identity with strain 2887A (99.7%), which was originally isolated from a fetus in a pig breeding farm that had a history of reproductive failure. Because rodents are the natural host of EMCV, we investigated the virulence of EMCV-CBNU in mice. Surprisingly, all mice inoculated with more than $1{\times}10^2\;TCID_{50}/0.1ml$ of EMCV-CBNU showed symptoms of hind limb paralysis and eventually died during 3 and 8 days postinoculation (DPI). Furthermore, when we inoculated the virus into pregnant mice, all dams and their fetuses died in 6 DPI. This is the first report on a full genomic analysis of swine EMCV in Korea, which exhibits high virulence in mice.

국내분리 돼지 뇌심근염바이러스의 poly(C)-tract의 다형태성 (Polymorphisms of the poly(C)-tract of porcine encephalomyocarditis virus (EMCV) isolated in Korea)

  • 현방훈;김효진;김인중;표현미;김선미;김성희;김재조;임성인;송재영
    • 대한수의학회지
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    • 제50권3호
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    • pp.221-229
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    • 2010
  • Encephalomyocarditis virus (EMCV) belongs to the genus Cardiovirus within the family Picornaviridae. EMCV has been recognized either as a cause of mortality in young pigs, due to acute myocarditis, or of reproductive failure in sows. An EMCV K3 strain was isolated from the heart and brain in a mummified and aborted swine fetus in 1989. For the molecular characterization of the poly(C)-tract of EMCV Korean isolates, K3 strain, viral RNA was extracted and digested with RNase T1, and analyzed the length of the poly(C)-tract by polyacrylamide gel electrophoresis. The poly(C) regions also were amplified by RT-PCR and sequenced. The present study shows that K3 strain of EMCV had a short polymorphic poly(C) tracts (5 to 30 C's) with sequences consisting of $C_9$, $C_{10}$, $C_{13}$, $C_{14}$, $C_{16}$, $C_{20}$, $CUC_{11}$, $C_8UCUC_3UC_{10}$, $C_9UCUC_3UC_{10}$, $C_{10}UCUC_3UC_{10}$, etc. These polymorphism of poly(C)-tracts of EMCV K3 strain implies the historical information of in vivo and/or in vitro passage.

In situ hybridization에 의한 돼지 뇌심근염 바이러스의 검출 (Detection of porcine encephalomyocarditis virus by in situ hybridization)

  • 오상현;박남용;정치영;조경오;이봉주;박영석;박형선
    • 대한수의학회지
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    • 제39권1호
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    • pp.148-158
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    • 1999
  • The purpose of this study was to establish a rapid, reliable diagnostic method detecting Encephalomyocarditis virus(EMCV) RNA in formalin-fixed, paraffin-embedded tissues of EMCV naturally infected pigs by cDNA probe of EMC $K_3$, the EMCV strain isolated from Korea. Using a biotin-labelled nick translated probe for the cDNA marker. We made up for some defects of radiolabeled method. In sits hybridization(ISH) technique, differently from the other nucleic acid hybridization methods, is able to detect the virus genome specifically in the state of the intact shapes of cells and/or tissues. We succeeded in performing the experiment to detect the EMCV within 1~2 hours using the $MicroProbe^{TM}$ capaillary action system. In this study, we observed highly specific positive signals of red color by staining the paraffin-embedded tissue sections of naturally EMCV-infected pig organs or tissues, including brain, heart, kidney and lacrimal gland with the Fast Red TR salt/Naphtol phosphate chromogen. The results suggested that this ISH method is considered as a highly sensitive and reliable tool for molecular biologic diagnosis of the EMC viral disease.

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Antiviral Effects of Sulfated Exopolysaccharide from the Marine Microalge Gyrodinium impudicum strain KG03

  • 임정한;김성진;박규진;안세훈;이현상;이홍금
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2003년도 생물공학의 동향(XII)
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    • pp.615-620
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    • 2003
  • Gyrodinium impudicum strain KG03의 세포외 다당류인 p-KG03은 황함유 다당류로 항바이러스 검색 결과, 조사대상 바이러스 중 특히 뇌심근 경색바이러스 (encephalomyocarditis virus; EMCV)에 항바이러스 활성을 가지는 것으로 조사되었다.

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Removal and inactivation of bovine herpes virus and murine encephalomycarditis virus by a chromatography, pasteurization, and lyophilization during the manufacture of urokinase from human urine

  • 최용운;이성래;박대한;이경명;구본목;김인섭;우한상;이성민
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 추계학술발표대회 및 bio-venture fair
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    • pp.615-618
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    • 2000
  • The purpose of present study was to examine the efficacy of PAB (para-amino benzamidine) affinity column chromatography, pasteurization ($60^{\circ}C$ heat treatment for 10 h), and lyophilization steps, employed in the manufacture of urokinase from human urine, in the removal and/or inactivation of urine-born viruses. Bovine herpes virus (BHV) and Murine encephalomyocarditis virus (EMCV) were selected for this study. Samples from the relevant stages of the production process were spiked with the viruses and the amount of virus in each fraction was quantified by 50% tissue culture infectious dose ($TCID_{50}$). BHV and EMCV were effectively partitioned from urokinase during PAB chromatography with the log reduction factors of 6.71 and 5.27, respectively. Pasteurization was a robust and effective step in inactivating BHV and EMCV, of which titers were reduced from initial titers of $8.65\;log_{10}\;TCID_{50}$ and $7.81\;log_{10}\;TCID_{50}$, respectively, to undetectable levels within 1 hour of treatment. The log reduction factors achieved during lyophilization were 2.06 for BHV and 4.54 for EMCV. These results indicate that the production process for urokinase has sufficient virus reducing capacity to achieve a high margin of virus safety.

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Development of an RNA Expression Platform Controlled by Viral Internal Ribosome Entry Sites

  • Ko, Hae Li;Park, Hyo-Jung;Kim, Jihye;Kim, Ha;Youn, Hyewon;Nam, Jae-Hwan
    • Journal of Microbiology and Biotechnology
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    • 제29권1호
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    • pp.127-140
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    • 2019
  • Since 1990, many nucleic acid expression platforms consisting of DNA or RNA have been developed. However, although RNA expression platforms have been relatively neglected, several such platforms capped at the 5' end of RNA by an anti-reverse cap analog have now been developed. At the same time, the capping reaction is a bottleneck in the production of such platforms, with high cost and low efficiency. Here, we investigated several viral and eukaryotic internal ribosome entry sites (IRESs) to develop an optimal RNA expression platform, because IRES-dependent translation does not require a capping step. RNA expression platforms constructed with IRESs from the 5' untranslated regions of the encephalomyocarditis virus (EMCV) and the intergenic region of the cricket paralysis virus (CrPV) showed sufficient expression efficiency compared with cap-dependent RNA expression platforms. However, eukaryotic IRESs exhibited a lower viral IRES expression efficiency. Interestingly, the addition of a poly(A) sequence to the 5' end of the coxsackievirus B3 (CVB3) IRES (pMA-CVB3) increased the expression level compared with the CVB3 IRES without poly(A) (pCVB3). Therefore, we developed two multiexpression platforms (termed pMA-CVB3-EMCV and pCrPV-EMCV) by combining the IRESs of CVB3, CrPV, and EMCV in a single-RNA backbone. The pMA-CVB3-EMCV-derived RNA platform showed the highest expression level. Moreover, it clearly exhibited expression in mouse muscles in vivo. These RNA expression platforms prepared using viral IRESs will be useful in developing potential RNA-based prophylactic or therapeutic vaccines, because they have better expression efficiency and do not need a capping step.

Improvement of Virus Safety of a Human Intravenous Immunoglobulin by Low pH Incubation

  • Kim, In-Seop;Choi, Yong-Woon;Lee, Sung-Rae;Cho, Hang-Bok;Eo, Ho-Gueon;Han, Sang-Woo;Chang, Chong-Eun;Lee, Soung-Min
    • Journal of Microbiology and Biotechnology
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    • 제11권4호
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    • pp.619-627
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    • 2001
  • n order to increase the virus safety of a human intravenous immunoglobulin (IVIg) that was manufactured by a successive process of cold ethanol fractionation, polyethylene glycol precipitation, and pasteurization ($60^{\circ}C$ heat treatment for 10h), a low pH incubation process (pH 3.9 at $25{\circ}C$ for 14 days) was employed as the final step. The efficacy and mechanism of the fraction III cold ethanol fractionation, pasteurization, and low pH treatment steps in the removal and/or inactivation of blood-borne viruses were closely examined. A variety of experimental model viruses for human pathogenic viruses, including the Bovine herpes virus (BHV), Bovine viral diarrhoea virus (BVDV), Murine encephalomyocarditis virus (EMCV), and Porcine parvovirus (PPV), were selected for this study. The mechanism of reduction for the enveloped viruses (BHV and BVDV) during fraction III fractionation was both inactivation and partitioning, however, it was partitioning in the case of the nonenveloped viruses (EMCV and PPV). The log reduction factors achieved during fraction III fractionation were ${\geqq}$6.7 for BHV, ${\geqq}4.7$ for BVDV, 4.5 for EMCV, and 4.4 for PPV. Pasteurization was found to be a robust and effective step in inactivating all the viruses tested. The log reduction factors achieved during the pasteurization process were ${\geqq}7.5$ for BHV, ${\geqq}4.8$ for BVDV, 3.0 for EMCV, and 3.3 for PPV. A low pH incubation was very effective in inactivating the enveloped viruses as well as EMCV. The log reduction factors achieved during low pH incubation were ${\geqq}7.4$ for BHV, ${\geqq}3.9$ for BVDV, 5.2 for EMCV, and 2.0 for PPV. These results indicate that the low pH treatment successfully improved the viral safety of the final products.

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Partitioning and Inactivation of Viruses by Cold Ethanol Fractionation and Pasteurization during Manufacture of Albumin from Human Plasma

  • Kim, In-Seop;Eo, Ho-Gueon;Chang, Chon-Geun;Lee, Soung-Min
    • Journal of Microbiology and Biotechnology
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    • 제10권6호
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    • pp.858-864
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    • 2000
  • The purpose of the present study was to examine the efficacy and mechanism of the fraction IV cold ethanol fractionation and pasteurization ($60^{\circ}C$ heat treatment for 10h) steps, involved in the manufacture of albumin from human plasma, in the removal and/or inactivation of blood-born viruses. A variety of experimental model viruses for human pathogenic viruses, including the Bovine viral diarrhoea virus (BVDV), Bovine herpes virus (BHV), Murine encephalomyocarditis virus (EMCV), and Porcine parvovirus (PPV), were selected for this study. Samples from the relevant stages of the production process were spiked with the viruses, and the amount of virus in each fraction was then quantified using a 50% tissue culture infectious dose ($TCID_{50}$). The mechanism of reduction for the enveloped viruses (BHV and BVDV) during fraction IV fractionation was inactivation rather than partitioning, however, it was partitioning in the case of the non-enveloped viruses (EMCV and PPV). The log reduction factors achieved during fraction IV fractionation were ${\geq}6.9$ BHV, $\geq5.2$ for BBDV, 4.9 for EMC, and 4.0 for PPV. Pasteurization was found to be a robust and effective step in inactivating the enveloped viruses as well as EMCV. The log reduction factors achieved during pasteurization were $\geq7.0$ for BHV, $\geq6.1$ for BVDV, $\geq6.3$ for EMCV, and 1.7 for PPV. These results indicate that the production process for albumin has sufficient virus-reducing capacity to achieve a high margin for virus safety.

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Removal and Inactivation of Viruses during Manufacture of a High Purity Antihemophilic Factor VII Concentration from Human Plasma

  • Kim, In-Seop;Choi, Yong-Woon;Lee, Sung-Rae;Woo, Hang-Sang;Lee, Soung-Min
    • Journal of Microbiology and Biotechnology
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    • 제11권3호
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    • pp.497-503
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    • 2001
  • The purpose of this study was to examine the efficacy and mechanism of the cryo-precipitation, solvent/detergent (S/D) treatment, monoclonal anti-FVIIIc antibody (mAb) column chromatography, Q-Sepharose column chromatography, and lyophilization involved in the manufacture of antithemophilic factor VII(GreenMono) from human plasma, in the removal and/or inactivation of blood-borne viruses. A variety of experimental model viruses for human pathogenic viruses, including the bovine viral diarrhoea virus (BVDV), bovine herpes virus (BHV), murine encephalomyocarditis virus (EMCV), and porcine parvovirus (PPV), were all selected for this study. BHV and EMCV were effectively partitioned from a factor VII during the cryo-precipitation with a log reduction factor of 2.83 and 3.24, respectively. S/D treatment using the organic solvent, tri(n-butyl) phosphate (TNBP), and the detergent, Triton X-100, was a robust and effective step in inactivating enveloped viruses. The titers of BHV and BVDV were reduced from the initial titer of 8.85 and $7.89{log_10} {TCID_50}$, respectively, reaching undetectable levels within 1 min of the S/D treatment. The mAb chromatography was the most effective step for removing nonenveloped viruses, EMCV and PPV, with the log reduction factors of 4.86 and 3.72, respectively. Q-Sepharose chromatography showed a significant efficacy for partitioning BHV, BVDV, EMCV, and PPV with the log reduction the log reduction factors of 2.32, 2.49, 2.60, and 1.33 respectively. Lyophilization was an effective step in inactivating g nonenveloped viruses rather than enveloped viruses, where the log reduction factors of BHV, BVDV, DMCV, and PPV were 1.41, 1.79, 4.76, and 2.05, respectively. The cumulative log reduction factors of BHV, BVDV, EMCV, and PPV were ${\geqq}$11.12, ${\geqq}$7.88, 15.46, and 7.10, respectively. These results indicate that the production process for GreenMono has a sufficient virus-reducing capacity to achieve a high margin of the virus safety.

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