Sensitive Detection of Viral Antigens with a New Method, "Laser Magnet Immunoassay"
A new method, “laser magnet immunoassay”(LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made to react with antibodies labeled with magnetite particles. In a magnetic field, magnetically labeled antigens dispersed in water were attracte...
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Published in | MICROBIOLOGY and IMMUNOLOGY Vol. 35; no. 9; pp. 717 - 727 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Tokyo
Blackwell Publishing Ltd
01.01.1991
Center For Academic Publications Japan Center for Academic Publications Japan |
Subjects | |
Online Access | Get full text |
ISSN | 0385-5600 1348-0421 |
DOI | 10.1111/j.1348-0421.1991.tb01605.x |
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Abstract | A new method, “laser magnet immunoassay”(LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made to react with antibodies labeled with magnetite particles. In a magnetic field, magnetically labeled antigens dispersed in water were attracted to and concentrated at one point on the surface, resulting in the lifting up of a small surface area. A laser beam which was incident on the point reflected, making an interference fringe. The intensity of the fringe indicates the amount of the magnetite conjugated with antigen. A very low concentration of antigens, such as 5 particles of influenza virus and 0.1pg/ml of human immunodeficiency virus (HIV) p24 antigen in human serum, could be detected by this method. Application of this method to diagnoses of viral diseases in early stages is discussed. |
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AbstractList | A new method, "laser magnet immunoassay" (LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made to react with antibodies labeled with magnetite particles. In a magnetic field, magnetically labeled antigens dispersed in water were attracted to and concentrated at one point on the surface, resulting in the lifting up of a small surface area. A laser beam which was incident on the point reflected, making an interference fringe. The intensity of the fringe indicates the amount of the magnetite conjugated with antigen. A very low concentration of antigens, such as 5 particles of influenza virus and 0.1 pg/ml of human immunodeficiency virus (HIV) p24 antigen in human serum, could be detected by this method. Application of this method to diagnoses of viral diseases in early stages is discussed.A new method, "laser magnet immunoassay" (LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made to react with antibodies labeled with magnetite particles. In a magnetic field, magnetically labeled antigens dispersed in water were attracted to and concentrated at one point on the surface, resulting in the lifting up of a small surface area. A laser beam which was incident on the point reflected, making an interference fringe. The intensity of the fringe indicates the amount of the magnetite conjugated with antigen. A very low concentration of antigens, such as 5 particles of influenza virus and 0.1 pg/ml of human immunodeficiency virus (HIV) p24 antigen in human serum, could be detected by this method. Application of this method to diagnoses of viral diseases in early stages is discussed. A new method, "laser magnet immunoassay" (LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made to react with antibodies labeled with magnetite particles. In a magnetic field, magnetically labeled antigens dispersed in water were attracted to and concentrated at one point on the surface, resulting in the lifting up of a small surface area. A laser beam which was incident on the point reflected, making an interference fringe. The intensity of the fringe indicates the amount of the magnetite conjugated with antigen. A very low concentration of antigens, such as 5 particles of influenza virus and 0.1 pg/ml of human immunodeficiency virus (HIV) p24 antigen in human serum, could be detected by this method. A new method, "laser magnet immunoassay" (LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made to react with antibodies labeled with magnetite particles. In a magnetic field, magnetically labeled antigens dispersed in water were attracted to and concentrated at one point on the surface, resulting in the lifting up of a small surface area. A laser beam which was incident on the point reflected, making an interference fringe. The intensity of the fringe indicates the amount of the magnetite conjugated with antigen. A very low concentration of antigens, such as 5 particles of influenza virus and 0.1 pg/ml of human immunodeficiency virus (HIV) p24 antigen in human serum, could be detected by this method. Application of this method to diagnoses of viral diseases in early stages is discussed. A new method, "laser magnet immunoassay"(LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made to react with antibodies labeled with magnetite particles. In a magnetic field, magnetically labeled antigens dispersed in water were attracted to and concentrated at one point on the surface, resulting in the lifting up of a small surface area. A laser beam which was incident on the point reflected, making an interference fringe. The intensity of the fringe indicates the amount of the magnetite conjugated with antigen. A very low concentration of antigens, such as 5 particles of influenza virus and 0.1pg/ml of human immunodeficiency virus (HIV) p24 antigen in human serum, could be detected by this method. Application of this method to diagnoses of viral diseases in early stages is discussed. |
Author | Arishima, Koichi Hoshino, Mitsutoshi Kitamura, Takashi Suzuki, Miwako Fujiwara, Koichi Ushijima, Hiroshi Mizutani, Hiroko Mizutani, Hiromichi Shibata, Shuichi Honma, Hitoshi |
Author_xml | – sequence: 1 givenname: Hiroko surname: Mizutani fullname: Mizutani, Hiroko organization: Department of Virology, Kanto-Teishin Hospital, Shinagawa-ku, 141, Tokyo, Japan – sequence: 2 givenname: Miwako surname: Suzuki fullname: Suzuki, Miwako organization: Department of Virology, Kanto-Teishin Hospital, Shinagawa-ku, 141, Tokyo, Japan – sequence: 3 givenname: Hiromichi surname: Mizutani fullname: Mizutani, Hiromichi organization: Department of Virology, Kanto-Teishin Hospital, Shinagawa-ku, 141, Tokyo, Japan – sequence: 4 givenname: Koichi surname: Fujiwara fullname: Fujiwara, Koichi organization: NTT Opto-Electronics Laboratories, Tokaimura, 319-11, Ibaraki, Japan – sequence: 5 givenname: Shuichi surname: Shibata fullname: Shibata, Shuichi organization: NTT Opto-Electronics Laboratories, Tokaimura, 319-11, Ibaraki, Japan – sequence: 6 givenname: Koichi surname: Arishima fullname: Arishima, Koichi organization: NTT Opto-Electronics Laboratories, Tokaimura, 319-11, Ibaraki, Japan – sequence: 7 givenname: Mitsutoshi surname: Hoshino fullname: Hoshino, Mitsutoshi organization: NTT Opto-Electronics Laboratories, Tokaimura, 319-11, Ibaraki, Japan – sequence: 8 givenname: Hiroshi surname: Ushijima fullname: Ushijima, Hiroshi organization: Division of AIDS Virus, AIDS Research Center, National Institute of Health, Tokyo, 190-12, Musashi-Murayama, Japan – sequence: 9 givenname: Hitoshi surname: Honma fullname: Honma, Hitoshi organization: Division of AIDS Virus, AIDS Research Center, National Institute of Health, Tokyo, 190-12, Musashi-Murayama, Japan – sequence: 10 givenname: Takashi surname: Kitamura fullname: Kitamura, Takashi organization: Division of AIDS Virus, AIDS Research Center, National Institute of Health, Tokyo, 190-12, Musashi-Murayama, Japan |
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Cites_doi | 10.7883/yoken1952.44.41 10.1099/0022-1317-64-12-2611 10.1016/0022-1759(82)90007-2 10.1111/j.1348-0421.1989.tb02009.x 10.1016/0165-2478(86)90064-7 |
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Keywords | Scanning electron microscopy Interference fringe Microsphere Retroviridae Hybridoma Monoclonal antibody Immunological method Virus Antigen Magnetite High sensitivity Laser Lentivirinae Human immunodeficiency virus Detection Magnetic field Entrapped microorganism Method study |
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References | Hnatowich, D.J., Virzi, F., and Rusckowski, M. 1987. Investigation of avidin and biotin for imaging applications. J. Nucl. Med. 28: 1294-1302. Nerome, K., Sakamoto, S., Yano, N., Yamamoto, T., Kobayashi, S., Webster, R.G., and Oya, A. 1983. Antigenic characteristics and genome composition of a naturally occurring recombinant virus isolated from a pig in Japan. J. gen. Virol. 64: 2611-2620. Asano, M., Morikawa, S., Tatsumi, M., Shimizu, H., Ushijima, H., and Kitamura, T. 1991. Common epitope analysis on gag proteins of HIV-1, HIV-2 and SIV (AGM) using monoclonal antibodies against HIV-1. J. J. Med. Sci. Biol. 44: 41-49. Mizutani, H., Mizutani, H., Nozaki, K., and Fujiwara, K. 1989. Electron microscopic studies of viruses labeled with magnetite. Microbiol. Immunol. 33: 593-599. Molday, R., and Donald, M. 1982. Immunospecific ferromagnetic iron-dextran reagents for the labeling and magnetic separation of cells. J. Immunol. Methods 52: 353-367. Suter, M., and Butler, J.E. 1986. The immunochemistry of sandwich ELISAs. II. A novel system prevents the denaturalization of capture antibodies. Immunol. Lett. 13: 313-316. 6) Nerome, K., Sakamoto, S., Yano, N., Yamamoto, T., Kobayashi, S., Webster, R.G., and Oya, A. 1983. Antigenic characteristics and genome composition of a naturally occurring recombinant virus isolated from a pig in Japan. J. gen. Virol. 64: 2611-2620. 7) Suter, M., and Butler, J.E. 1986. The immunochemistry of sandwich ELISAs. II. A novel system prevents the denaturalization of capture antibodies. Immunol. Lett. 13: 313-316. 2) Fujiwara, K., Mizutani, H., and Mizutani, H. 1989. New method for detection of viral antigens using magnetic particles. The Paper of Technical Meeting on Magnetics, IEE JAPAN MAG-89-2: 11-19. 1) Asano, M., Morikawa, S., Tatsumi, M., Shimizu, H., Ushijima, H., and Kitamura, T. 1991. Common epitope analysis on gag proteins of HIV-1, HIV-2 and SIV (AGM) using monoclonal antibodies against HIV-1. J.J. Med. Sci. Biol. 44: 41-49. 5) Molday, R., and Donald, M. 1982. Immunospecific ferromagnetic iron-dextran reagents for the labeling and magnetic separation of cells. J. Immunol. Methods 52: 353-367. 3) Hnatowich, D.J., Virzi, F., and Rusckowski, M. 1987. Investigation of avidin and biotin for imaging applications. J. Nucl. Med. 28: 1294-1302. 4) Mizutani, H., Mizutani, H., Nozaki, K., and Fujiwara, K. 1989. Electron microscopic studies of viruses labeled with magnetite. Microbiol. Immunol. 33: 593-599. 1983; 64 1989; 33 1991; 44 1987; 28 1982; 52 1986; 13 1989 e_1_2_1_7_1 e_1_2_1_8_1 e_1_2_1_5_1 e_1_2_1_6_1 e_1_2_1_3_1 e_1_2_1_2_1 Hnatowich D.J. (e_1_2_1_4_1) 1987; 28 |
References_xml | – reference: Nerome, K., Sakamoto, S., Yano, N., Yamamoto, T., Kobayashi, S., Webster, R.G., and Oya, A. 1983. Antigenic characteristics and genome composition of a naturally occurring recombinant virus isolated from a pig in Japan. J. gen. Virol. 64: 2611-2620. – reference: Molday, R., and Donald, M. 1982. Immunospecific ferromagnetic iron-dextran reagents for the labeling and magnetic separation of cells. J. Immunol. Methods 52: 353-367. – reference: Mizutani, H., Mizutani, H., Nozaki, K., and Fujiwara, K. 1989. Electron microscopic studies of viruses labeled with magnetite. Microbiol. Immunol. 33: 593-599. – reference: Asano, M., Morikawa, S., Tatsumi, M., Shimizu, H., Ushijima, H., and Kitamura, T. 1991. Common epitope analysis on gag proteins of HIV-1, HIV-2 and SIV (AGM) using monoclonal antibodies against HIV-1. J. J. Med. Sci. Biol. 44: 41-49. – reference: Suter, M., and Butler, J.E. 1986. The immunochemistry of sandwich ELISAs. II. A novel system prevents the denaturalization of capture antibodies. Immunol. Lett. 13: 313-316. – reference: Hnatowich, D.J., Virzi, F., and Rusckowski, M. 1987. Investigation of avidin and biotin for imaging applications. J. Nucl. Med. 28: 1294-1302. – reference: 1) Asano, M., Morikawa, S., Tatsumi, M., Shimizu, H., Ushijima, H., and Kitamura, T. 1991. Common epitope analysis on gag proteins of HIV-1, HIV-2 and SIV (AGM) using monoclonal antibodies against HIV-1. J.J. Med. Sci. Biol. 44: 41-49. – reference: 6) Nerome, K., Sakamoto, S., Yano, N., Yamamoto, T., Kobayashi, S., Webster, R.G., and Oya, A. 1983. Antigenic characteristics and genome composition of a naturally occurring recombinant virus isolated from a pig in Japan. J. gen. Virol. 64: 2611-2620. – reference: 3) Hnatowich, D.J., Virzi, F., and Rusckowski, M. 1987. Investigation of avidin and biotin for imaging applications. J. Nucl. Med. 28: 1294-1302. – reference: 5) Molday, R., and Donald, M. 1982. Immunospecific ferromagnetic iron-dextran reagents for the labeling and magnetic separation of cells. J. Immunol. Methods 52: 353-367. – reference: 7) Suter, M., and Butler, J.E. 1986. The immunochemistry of sandwich ELISAs. II. A novel system prevents the denaturalization of capture antibodies. Immunol. Lett. 13: 313-316. – reference: 2) Fujiwara, K., Mizutani, H., and Mizutani, H. 1989. New method for detection of viral antigens using magnetic particles. The Paper of Technical Meeting on Magnetics, IEE JAPAN MAG-89-2: 11-19. – reference: 4) Mizutani, H., Mizutani, H., Nozaki, K., and Fujiwara, K. 1989. Electron microscopic studies of viruses labeled with magnetite. Microbiol. Immunol. 33: 593-599. – volume: 44 start-page: 41 year: 1991 end-page: 49 article-title: Common epitope analysis on gag proteins of HIV‐1, HIV‐2 and SIV (AGM) using monoclonal antibodies against HIV‐1 publication-title: J. J. Med. Sci. Biol. – volume: 64 start-page: 2611 year: 1983 end-page: 2620 article-title: Antigenic characteristics and genome composition of a naturally occurring recombinant virus isolated from a pig in Japan publication-title: J. gen. Virol. – start-page: 11 year: 1989 end-page: 19 – volume: 52 start-page: 353 year: 1982 end-page: 367 article-title: Immunospecific ferromagnetic iron‐dextran reagents for the labeling and magnetic separation of cells publication-title: J. Immunol. Methods – volume: 33 start-page: 593 year: 1989 end-page: 599 article-title: Electron microscopic studies of viruses labeled with magnetite publication-title: Microbiol. Immunol. – volume: 13 start-page: 313 year: 1986 end-page: 316 article-title: The immunochemistry of sandwich ELISAs. II. A novel system prevents the denaturalization of capture antibodies publication-title: Immunol. Lett. – volume: 28 start-page: 1294 year: 1987 end-page: 1302 article-title: Investigation of avidin and biotin for imaging applications publication-title: J. Nucl. Med. – volume: 28 start-page: 1294 year: 1987 ident: e_1_2_1_4_1 article-title: Investigation of avidin and biotin for imaging applications publication-title: J. Nucl. Med. – ident: e_1_2_1_2_1 doi: 10.7883/yoken1952.44.41 – ident: e_1_2_1_7_1 doi: 10.1099/0022-1317-64-12-2611 – ident: e_1_2_1_6_1 doi: 10.1016/0022-1759(82)90007-2 – ident: e_1_2_1_5_1 doi: 10.1111/j.1348-0421.1989.tb02009.x – ident: e_1_2_1_3_1 – ident: e_1_2_1_8_1 doi: 10.1016/0165-2478(86)90064-7 |
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Snippet | A new method, “laser magnet immunoassay”(LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made... A new method, "laser magnet immunoassay"(LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made... A new method, “laser magnet immunoassay” (LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made... A new method, "laser magnet immunoassay" (LMIA), has been developed for sensitive detection of viral antigens. Target viruses captured on microbeads were made... |
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SubjectTerms | Antibodies Antigens, Viral - analysis Biological and medical sciences Evaluation Studies as Topic Ferrosoferric Oxide Fundamental and applied biological sciences. Psychology HIV - immunology Human immunodeficiency virus Immunoassay - methods Iron Lasers Latex Magnetics Microbiology Microspheres Orthomyxoviridae - immunology Oxides Sensitivity and Specificity Techniques used in virology Virology |
Title | Sensitive Detection of Viral Antigens with a New Method, "Laser Magnet Immunoassay" |
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