• 제목/요약/키워드: DNA/RNA purification

검색결과 32건 처리시간 0.016초

Avian Influenza H9N2 Virus의 HA와 NA 단백질 발현, 정제 및 항혈청 생산 (Expression, Purification and Antiserum Production of the Avian Influenza H9N2 Virus HA and NA Proteins)

  • 이현지;송병학;김정민;윤상임;김진경;강영식;구용범;전익수;변승준;이윤정;권준헌;박종현;주이석;이영민
    • 미생물학회지
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    • 제44권3호
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    • pp.178-185
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    • 2008
  • 조류 독감바이러스(avian influenza virus, AIV)는 사람에게서 발생하는 인플루엔자 대유행에 중요한 역할을 한다. 특히 최근 AIV H9N2형에 의한 가금류 감염이 빈번히 나타나고 있어 인체 감염이 상당히 우려되는 실정이다. 본 연구에서는 최종적으로 AIV의 HA와 NA 단백질에 특이적으로 반응하는 항혈청을 생산하고자 하였다. 먼저 감염된 닭에서 분리된 AIV H9N2 한국분리주 A/Ck/Kr/MS96/96의 게놈RNA로부터 RT-PCR 방법으로 HA와 NA 단백질 N-말단부위에 해당하는 염기서열을 증폭하였다. 이렇게 증폭된 DNA단편은 E. coli 발현벡터 pGEX4T-1에 삽입한 후, BL21 세포에서 각각의 GST fusion protein (GST-HAln와 GST-NAn) 형태로 발현하였다. GST-HAln와 GST-NAn은 모두 glutathione sepharose column을 사용하여 분리 및 정제하였으며, 정제된 단배질을 항원으로 사용하여 토끼 항혈청을 생산하였다. 생산된 항혈청의 항원특이성은 AIV H9N2 한국분리주 A/Ck/Kr/MS96/96로 감염된 MDCK 세포의 cell extract를 사용하여 immunoblotting을 수행함으로써 확인하였다. 본 실험결과AIV H9N2의 HA와 NA단백질 N-말단부위에 해당하는 재조합GST fusion protein과, 이들 각각의 단백질에 특이적으로 반응하는 항혈청은 앞으로AIV 감염의 진단 뿐만 아니라, AIV에 대한 기초연구에 중요한 재료로 사용될 것으로 기대한다.

백서 설신경 압박손상모델에서 신경성장인자 유전자 주입이 신경재생에 미치는 영향 (EFFECT OF NERVE GROWTH FACTOR GENE INJECTION ON THE NERVE REGENERATION IN RAT LINGUAL NERVE CRUSH-INJURY MODEL)

  • 고은봉;정헌종;안강민;김성민;김윤희;장정원;이종호
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제28권5호
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    • pp.375-395
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    • 2006
  • Purpose: Lingual nerve (LN) damage may be caused by either tumor resection or injury such as wisdom tooth extraction, Although autologous nerve graft is sometimes used to repair the damaged nerve, it has the disadvantage of necessity of another operation for nerve harvesting. Moreover, the results of nerve grafting is not satisfactory. The nerve growth factor (NGF) is well-known to play a critical role in peripheral nerve regeneration and its local delivery to the injured nerve has been continuously tried to enhance nerve regeneration. However, its application has limitations like repeated administration due to short half life of 30 minutes and an in vivo delivery model must allow for direct and local delivery. The aim of this study was to construct a well-functioning $rhNGF-{\beta}$ adenovirus for the ultimate development of improved method to promote peripheral nerve regeneration with enhanced and extended secretion of hNGF from the injured nerve by injecting $rhNGF-{\beta}$ gene directly into crush-injured LN in rat model. Materials and Methods: $hNGF-{\beta}$ gene was prepared from fetal brain cDNA library and cloned into E1/E3 deleted adenoviral vector which contains green fluorescence protein (GFP) gene as a reporter. After large scale production and purification of $rhNGF-{\beta}$ adenovirus, transfection efficiency and its expression at various cells (primary cultured Schwann cells, HEK293 cells, Schwann cell lines, NIH3T3 and CRH cells) were evaluated by fluorescent microscopy, RT-PCR, ELISA, immunocytochemistry. Furthermore, the function of rhNGF-beta, which was secreted from various cells infected with $rhNGF-{\beta}$ adenovirus, was evaluated using neuritogenesis of PC-12 cells. For in vivo evaluation of efficacy of $rhNGF-{\beta}$ adenovirus, the LNs of 8-week old rats were exposed and crush-injured with a small hemostat for 10 seconds. After the injury, $rhNGF-{\beta}$ adenovirus($2{\mu}l,\;1.5{\times}10^{11}pfu$) or saline was administered into the crushed site in the experimental (n=24) and the control group (n=24), respectively. Sham operation of another group of rats (n=9) was performed without administration of either saline or adenovirus. The taste recovery and the change of fungiform papilla were studied at 1, 2, 3 and 4 weeks. Each of the 6 animals was tested with different solutions (0.1M NaCl, 0.1M sucrose, 0.01M QHCl, or 0.01M HCl) by two-bottle test paradigm and the number of papilla was counted using SEM picture of tongue dorsum. LN was explored at the same interval as taste study and evaluated electro-physiologically (peak voltage and nerve conduction velocity) and histomorphometrically (axon count, myelin thickness). Results: The recombinant adenovirus vector carrying $rhNGF-{\beta}$ was constructed and confirmed by restriction endonuclease analysis and DNA sequence analysis. GFP expression was observed in 90% of $rhNGF-{\beta}$ adenovirus infected cells compared with uninfected cells. Total mRNA isolated from $rhNGF-{\beta}$ adenovirus infected cells showed strong RT-PCR band, however uninfected or LacZ recombinant adenovirus infected cells did not. NGF quantification by ELISA showed a maximal release of $18865.4{\pm}310.9pg/ml$ NGF at the 4th day and stably continued till 14 days by $rhNGF-{\beta}$ adenovirus infected Schwann cells. PC-12 cells exposed to media with $rhNGF-{\beta}$ adenovirus infected Schwann cell revealed at the same level of neurite-extension as the commercial NGF did. $rhNGF-{\beta}$ adenovirus injected experimental groups in comparison to the control group exhibited different taste preference ratio. Salty, sweet and sour taste preference ratio were significantly different after 2 weeks from the beginning of the experiment, which were similar to the sham group, but not to the control group.