• Title/Summary/Keyword: 항원

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Molecular Cloning of H-Y Antigen Gene I. Purification of H-Y Antigen by Immunoaffinity Chromatography and Chemiluminescence Immunoassay for the Assay of H-Y Antigen (H-Y 항원 유전자의 cloning에 관한 연구 I. 친화성 크로마토그래피에 의한 H-Y 항원의 분리 정제 및 H-Y 항원 정량을 위한 화학발광 면역 분석법)

  • 김종배;김재홍;백정미;김창규;정길생
    • Korean Journal of Animal Reproduction
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    • v.15 no.2
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    • pp.149-155
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    • 1991
  • 본 실험은 H-Y 항원 유전자 크로닝을 위한 기초연구로서 H-Y 항원의 특성을 규명하기 위하여 친화성 크로마토그래피에 의하여 H-Y 항원을 분리·정제하였다. 정소 추출액을 항체가 결합된 column에 결합시킨 뒤 10% acetic acid로 용출시켰다. 용출된 분획을 모아 농축한 후 HPLC와 SDS-PAGE를 실시하여 H-Y 항원의 분자량은 약 6,7000달톤 임을 알 수 있었으며 isoelectric focusing에 의하여 등전점(pI)은 5.0인 것으로 측정되었다. H-Y 항원에 대한 단일클론항체와 표지항원으로는 H-Y 항원-ABEI(aminobutylethyl isoluminol)를 사용하여 H-Y 항원 정량을 위한 화학발광면역분석법을 개발하였다. 항원항체 반응후 빛의 측정은 NaOH 존재하에서 microperoxidase/H2O2를 이용한 산화반응으로 실시하여 10초간 측정한 빛의 양을 적분하였다. H-Y 항원의 농도와 빛의 양과는 역비례하였으며 감도는 11.8ng/tube 정도이었다.

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Expression and Secretion of Hepatitis B Viral Mutant Core Antigen (B형 간염 바이러스의 돌연변이 내면항원의 발현 및 분비)

  • 김용석;김성기;노현모
    • Korean Journal of Microbiology
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    • v.27 no.3
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    • pp.169-175
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    • 1989
  • To study the role of mutant precore region in expression and secretion of hapatitis B viral core antigen, we have cloned core antigen gene(HBc) with or without precore region in geterologous expression vectors containing SV40 promoter, yeast promoter, and lambda $P_{L}$ promoter. In COS cells transfected with plasmid containing C-gene with precore region, antigens were detected in both cell extract and cultured medium. However, in the cells transfected with plasmids containing C-gene without precore or with mutated precore region by one nucleotide (T) addition at the nucleotide 1,821, HBcAg was detected only in cell extracts. These results support that the mutation by one nucleotide addition shifted the initiation codon of precore region to 53 nucleotides upward and the elongated precore region also played a major role in the secretion of HBcAg in mammalian cells. In the case of yeast and E. coli, HBcAg was detected only in cell extracts in spite of the presence of precore region, which suggest that precore region could not affect HBcAg secretion in these system.

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면역형광염색법에 의한 불활화된 미립자 포자의 항원성에 관한연구

  • 임종성;김근영
    • Journal of Sericultural and Entomological Science
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    • v.15 no.2
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    • pp.69.2-69
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    • 1973
  • 미립자병을 진단하기 위한 방법으로 1972년에 면역형광염색법을 적용한바 있으나 항원취급의 위험성 때문에 병원체를 -5$^{\circ}C$, -4$0^{\circ}C$ 및 -8$0^{\circ}C$에 불화화 시킨후 항원으로 사용할 경우 그 항원 설을 검토한바 저온처리 되지 않은 항원과 동일한 항원성을 나타내어 발표코저 한다.

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Purification of cystic fluid antigen of Taenia solium metacestodes by affinity chromatography using monoclonal antibody and its antigenic characterization (단세포군항체에 의한 유구낭미충 낭액 특이항원의 순수분리 및 항원특성 관찰)

  • Kim, Suk-Il;Kang, Shin-Yong;Cho, Seung-Yull;Hwang, Eung-Soo;Cha, Chang-Yong
    • Parasites, Hosts and Diseases
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    • v.24 no.2
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    • pp.145-158
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    • 1986
  • This study was undertaken to purify cystic fluid (CF) antigen of Taenia solium metacestodes by affinity chromatogaphy using specific monoclonal antibody(McAb) and to characterize the antigenicity of the purified antigen. The hybridoma cell lines, prepared by fusion between mouse plasmacytoma and spleen cells from BALB/c mice immunized with CF, secreted antibodies reacting to various helminthic antigens. Majority of cell lines reacted to CF only but some also reacted to parenchymal antigen of T. solium metacestodes, adult T. saginata, sparganum, hydatid cystic fluid, Paragonimus westermani and Clonorchis sinensis, either in combination with CF, other antigens or independently. Cloned cells derived from monoclonal lines also produced antibodies reacting either to CF only or to other helminthes in combination or independently. These results indicated that CF of T. solium metacestodes contained proteins which possessed antigenic determinants not only specific to CF but also cross reactive with the afore-mentioned helminthes. CF of T. solium metacestodes was purified by affinity chromatography using the McAb which reacted to CF and parenchymal antigens. The affinity-purified antigen (A-Ag) and unbound pool CF (U-Ag) were separated. A-Ag showed 2 protein bands by disc-PAGE whereas CF exhibited 6 bands and U-Ag consisted of all bands CF had. The diagnostic significance of A-Ag was evaluated by ELISA in human neurocysticercosis and other helminthic and neurologic diseases. By A-Ag, the levels of the specific IgG antibody, as shown by absorbance in sera and CSF, were lower than those of CF and U-Ag. Accordingly, the sensitivity was about 70% of CF and U-Ag. However, the nonspecific positive reactions to CF and U-Ag, observed in sparganosis, T. saginata infection and paragonimiasis did not occur when A-Ag was used. These results indicated that the affinity-purified A-Ag had the higher specificity but the lower sensitivity as a diagnostic antigen in cysticercosis, probably because it only detected a single or limited numbers of monospecific antibodies among the diverse polyclonal antibodies produced in the patients with neurocysticercosis.

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Role of pre-C Region in the Expression and Secretion of Hepatitis B Viral Core Antigen in Yeast (효모에서 B형 간염바이러스의 내면항원의 발현과 분비에 미치는 전위내면항원의 역할)

  • 신상훈;김성기;노현모
    • Korean Journal of Microbiology
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    • v.28 no.1
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    • pp.1-5
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    • 1990
  • The coding sequence of hepatitis B viral core antigen (HBcAg) (subtype adr) contains two in-phase initiation codons, one for precore and the other for core antigen gene. To study the expression of core antigen and the role of precore region, the coding sequence of HBcAg with or without precore (pre-C) region were subcloned into yeast expression vector containing phosphoglycerate kinase (PGK) promoter. To study the role of upstream region in the expression of the core antigen, a series of 5' deletion mutants were also subcloned into the vector. After transformation into various host strains, the expression of HBcAg were analysed by radio-immunoassat. Under optimal condition of core antigen gene expression in yeast, the highest amount of antigen was detected in the cell line SHY4 containing pGKHBc plasmid composed of the yeast PGK gene promoter, terminator and C-gene. Regardless of the presence of precore region, core antigen was not detected in the medium but in cell extract. These results suggest that precore region cannot affect the secretion of core antigen in Saccharomyces cerevisiae.

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Variation of antigenic proteins of eggs and developmental stages of Paragonimus westermani (폐흡충 발육 단계에 따른 항원 단백질의 변화)

  • Yoon KONG;Joon-Yong CHUNG;Doo-Hee YUN;Lee-Su KIM;Shin-Yong KANG;Akira ITO;Liang MA;Seung-Yull CHO
    • Parasites, Hosts and Diseases
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    • v.35 no.3
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    • pp.197-202
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    • 1997
  • Diagnosis of early paragonimiasis is difficult because parasitological evidence is not easily obtained. Antibody tests have been proposed as a good substitute for classical diagnostic techniques. Using the crude extracts of Parnsonimus westermnni eggs, metacercariae. 4- and 7-week Juveniles, and 16-week adults as antigens, we observed the early antibody responses. Sera were obtained from 4 experimental cats, fed 50 metacercariae each, at intervals until 13 weeks post-infection. Antibody (IgG) responses were identified by ELISA using extracts of 4-week juveniles, followed by those of 7- and 16-week worms. Antibody responses were minimal against the metacercarial extracts. Antibodies to p. westemoni egg extracts were elevated after 10 weeks post-infection. In immunoblot analysis, more than nine protein bands in 4-week juveniles reacted with the early infection sera. Antigenic proteins in adult worms were different from those of juveniles. After four weeks of infection, 32 and 35 kDa bands in the adult extracts were increasingly reactive. Egg specific proteins at 28, 46 and 94 kDa were reactive only after 10 weeks. Antigenic components reactin료 to the early infection sera changed during the maturation stages of P. westermani; almost all juvenile antigens were replaced by adult antigen components.

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Analysis of Culture Filtrate Antigens of Aspergillus fumigatus Strains and of Antibody Responce in Patients with Aspergillosis by Immunoblotting (Immunoblotting 에 의한 Aspergillus fumigatus 균주(菌株)의 항원분석(抗原分析)과 이 균(菌)에 감염(感染)된 환자의 항체반응(抗體反應)에 관한 연구)

  • Kim, Sang-Jae;Kim, Sin-Ok;Hong, Young-Pyo
    • The Korean Journal of Mycology
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    • v.17 no.2
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    • pp.66-75
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    • 1989
  • Heterogeneity in antigenic composition of Aspergillus fumigatus isolates from clinical specimens and in antibody response of patients infected with this fungus was investigated by immunoblotting. A considerable quantitative and qualitative difference was found in composition of the culture filtrate antigens derived from a reference strain (ATCC 13073) and 8 clinical isolates of A. fumigatus on SDS-PAGE and immunoblots. The crude CF antigen of a strain AFG7 was selected to identify the serologically reactive and specific components by immunoblotting. Out of more than 36 components separated by electrophoresis, transblotted to nitrocellulose sheet, and reacted with sera that showed a positive reaction to A. fumigatus or other fungal antigens on immunodiffusion tests, merely four or so were found useful to serodiagnosis of aspergillosis. An antigen of 82KD was found most reactive and specific component so as to be contained in the standard preparation. Several other components, for example 11KD, 26KD, 30KD and 31KD, also possessed relatively high reactivity and specificity and seemed to be worth while purifying and characterizing. Antibody binding activity (reactivity) of the antigenic components was clearly shown on immunoblots because some were faintly stained with Coomassie blue but darkly stained on immunoblots, while some others behaved contrary to them. A number of components seemed to carry not only species specific but cross reactive antigenic determinants. Immunoblotting proved very useful to identify serologically reactive and specific components that should be present in the antigen to be employed to the serodiagnosis of aspergillosis.

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Demonstration of species-specific and cross reactive components of Paragonimus tvestermani crude worm antigen by EITB (Immunoblot를 이용한 폐흡충 비항원의 특이 항원대의 증명)

  • Joo, Kyoung-Hwan;Ahn, Hyuck;Chung, Myung-Sook;Lim, Han-Jong
    • Parasites, Hosts and Diseases
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    • v.27 no.1
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    • pp.9-14
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    • 1989
  • Enzyme-linked immunoelectrotransfer blot (EITB) using crude worm antigen of adult Paragonimus westermani was performed for human patients sera to identify the species-specific components. Crude antigen was obtained by homogenizing and centrifuging 24-week old adult worms at 10,000 rpm for 60 minutes in phosphate buffered saline (PBS, PH 7.2) containing: Phenyl methyl sulfonyl auoride (PMSF). Gradient sodium dodecyl sulfate polyacrylamide gel electrophoresis(SDS-PAGE) was performed and blotted electrophoretically onto a sheet of nitrocellulose paper. The sheet was cut into strips and exposed to sera diluted 1 : 200 with PBS. SDS-PAGE showed 26 protein bands ranging 229 to 10 kDa. Of them 229, 91, 60, 50, 35∼31, 27, 25, 21, 17, 11 and 10 kDa components showed positive reaction with serum antibody of patients with p. westermani. Sera of patients infected with Clcnorchis sinensis reacted with 35∼31, 19, and 11 kDa bands. Human sera from cysticercosis and diphyllobothriasis cases showed non-specific cross reactions with 229, 35∼31, 27, 25 and 17kDa bands. Protein bands of 91, 60, 21 and 10kDa showed strong positive reaction without cross reactions with sera from other helminthic infections.

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AIDS 검사법

  • Kim, So-Yeon
    • RED RIBBON
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    • s.71
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    • pp.14-15
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    • 2006
  • 에이즈 검사는 크게 항원 검사와 항체 검사로 나눌 수 있다. 에이즈 바이러스(HIV)가 항원이며 이것이 우리 몸에 침입하였을 때 이 항원의 모양에 맞게 항체가 형성된다. 항원검사는 보조검사이고 항체검사가 확진검사로 사용되고 있으나 이번 호에서는 에이즈의 전반적인 검사를 모두 실어 이해를 돕고자 한다.

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Degradation and Conversion of Blood Group Antigens in Saliva (혈액형 항원의 분해와 변환에 관한 연구)

  • Lim, Sang-Wook;Park, Hee-Kyung;Jung, Seung-Eun;Kho, Hong-Seop;Kim, Young-Ku
    • Journal of Oral Medicine and Pain
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    • v.30 no.1
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    • pp.15-23
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    • 2005
  • Mucin glycoproteins are the primary carriers of the oligosaccharide moieties that constitute the blood group substances in human saliva. The aim of this study was to determine whether or not the conversion of either the A or B blood group antigens to the H antigen can occur during the degradation process of stored saliva samples. Forty subjects (20 subjects in each A and B blood group) identified as secretors were enrolled in this study. Fresh whole saliva samples and their clarified supernatants were stored at room temperature for 1 week. The conversion of the blood group antigens was detected by SDS-PAGE and immunoblotting. Among the subjects showing the conversion in whole saliva, glandular saliva samples were obtained from 8 subjects (4 subjects in each A and B blood group). Submandibular-sublingual saliva (SMSL) and a mixture of SMSL and parotid saliva (PS) were stored at room temperature for 1 week. The conversion of the blood group antigens was detected by the same method. The obtained results were as follows: 1. In the clarified samples of whole saliva, the A antigen was detected as being either intact (5%) or degraded molecules (95%) after the 1 week period. Conversion of the A antigen to the H antigen was detected in 5 subjects (25%). In the unclarified samples, the A antigen was either detected as degraded molecules (90%) or was not detected (10%). Conversion of the antigen had occurred in 4 subjects (20%). 2. In the clarified samples of whole saliva, the B antigen was detected as intact (20%) or as degraded molecules (65%) or was not detected (15%) after the 1 week period. Conversion of the B antigen to the H antigen was detected in 7 subjects (35%). In the unclarified samples, the B antigen was detected as intact (5%) or as degraded molecules (65%), or was not detected (30%). Conversion of the antigen was observed in 2 subjects (10%). 3. In the glandular saliva samples, only one of the four subjects displayed an antigenic conversion from the A to H antigen or from the B to H antigen. The conversion had occurred in both the SMSL samples and the SMSL and PS mixture. No degradation of the antigens was detected in the other three samples of the A or B blood groups, nor was there any conversion. The results demonstrated that conversion of the blood group antigens could occur in saliva, and suggested that the enzymes responsible for the conversion are present in saliva. Further studies on the origin and activity of the specific glycosidases in saliva as well as quantitative measurements of the antigenic conversion will be needed.