Kinetics of p24 antigenemia, IgM, IgG antibodies to p24 and p41 and Ig virus isolation in rabbits experimentally infected with HIV-1. 1990

G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
Department of Infectious Diseases, University of Pavia, Italy.

In rabbits experimentally infected with 1.10(5) u.i./ml HIV, IgM antibodies were detected 10-15 days after infection, reaching peak value two weeks later and remaining stable for two weeks long. Then a the IgM serotiters progressively decreased and were negative at ten weeks. HIV p24 antigen was detected ten-fifteen days after infection, reaching peak value five-six weeks later. Antigenemia subsequently decreased and reached a second peak after nine weeks. In our experimental conditions, the antigenemia persisted throughout the observation period. The IgG antibody titer reached a maximum two weeks after infection; the time course showed a decrease after ten weeks, followed by progressively decreasing fluctuating course. After twenty four weeks of infection the serotiter values though lower were always positive. Three-four weeks after infection we detected IgG antibodies to the major core protein p24. Reactivity of IgG antibodies to gp41 was observed earlier than reactivity to p24; these antibodies were detected over six months after infection. Viruses indistinguishable from HIV were isolated from the peripheral blood mononuclear cells of infected rabbits 30, 60 and 180 days after infection. These data further confirm that the rabbit may serve as an economical and reproducible model for HIV infection in which vaccines and antiviral agents could be tested.

UI MeSH Term Description Entries
D007074 Immunoglobulin G The major immunoglobulin isotype class in normal human serum. There are several isotype subclasses of IgG, for example, IgG1, IgG2A, and IgG2B. Gamma Globulin, 7S,IgG,IgG Antibody,Allerglobuline,IgG(T),IgG1,IgG2,IgG2A,IgG2B,IgG3,IgG4,Immunoglobulin GT,Polyglobin,7S Gamma Globulin,Antibody, IgG,GT, Immunoglobulin
D007075 Immunoglobulin M A class of immunoglobulin bearing mu chains (IMMUNOGLOBULIN MU-CHAINS). IgM can fix COMPLEMENT. The name comes from its high molecular weight and originally was called a macroglobulin. Gamma Globulin, 19S,IgM,IgM Antibody,IgM1,IgM2,19S Gamma Globulin,Antibody, IgM
D007700 Kinetics The rate dynamics in chemical or physical systems.
D008854 Microscopy, Electron Microscopy using an electron beam, instead of light, to visualize the sample, thereby allowing much greater magnification. The interactions of ELECTRONS with specimens are used to provide information about the fine structure of that specimen. In TRANSMISSION ELECTRON MICROSCOPY the reactions of the electrons that are transmitted through the specimen are imaged. In SCANNING ELECTRON MICROSCOPY an electron beam falls at a non-normal angle on the specimen and the image is derived from the reactions occurring above the plane of the specimen. Electron Microscopy
D011817 Rabbits A burrowing plant-eating mammal with hind limbs that are longer than its fore limbs. It belongs to the family Leporidae of the order Lagomorpha, and in contrast to hares, possesses 22 instead of 24 pairs of chromosomes. Belgian Hare,New Zealand Rabbit,New Zealand Rabbits,New Zealand White Rabbit,Rabbit,Rabbit, Domestic,Chinchilla Rabbits,NZW Rabbits,New Zealand White Rabbits,Oryctolagus cuniculus,Chinchilla Rabbit,Domestic Rabbit,Domestic Rabbits,Hare, Belgian,NZW Rabbit,Rabbit, Chinchilla,Rabbit, NZW,Rabbit, New Zealand,Rabbits, Chinchilla,Rabbits, Domestic,Rabbits, NZW,Rabbits, New Zealand,Zealand Rabbit, New,Zealand Rabbits, New,cuniculus, Oryctolagus
D004195 Disease Models, Animal Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases. Animal Disease Model,Animal Disease Models,Disease Model, Animal
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014758 Viral Core Proteins Proteins found mainly in icosahedral DNA and RNA viruses. They consist of proteins directly associated with the nucleic acid inside the NUCLEOCAPSID. Core Proteins, Viral,Major Core Protein,Major Core Proteins, Viral,Adenovirus Core Protein VII,Core Protein V,Core Protein lambda 2,Influenza Virus Core Proteins,Major Core Protein lambda 1,Major Core Protein lambda-1,Major Core Protein sigma 2,Major Core Protein sigma-2,OVP 19,Oncornaviral Protein P19,P30 Core Proteins,Viral Protein P19,Virus Core Proteins,Core Protein, Major,Core Proteins, P30,Core Proteins, Virus,Protein P19, Oncornaviral,Protein P19, Viral,Protein, Major Core,Proteins, P30 Core,Proteins, Viral Core,Proteins, Virus Core
D014771 Virion The infective system of a virus, composed of the viral genome, a protein core, and a protein coat called a capsid, which may be naked or enclosed in a lipoprotein envelope called the peplos. Virus Particle,Viral Particle,Viral Particles,Particle, Viral,Particle, Virus,Particles, Viral,Particles, Virus,Virions,Virus Particles
D015483 HIV Antibodies Antibodies reactive with HIV ANTIGENS. AIDS Antibodies,HIV-Associated Antibodies,HTLV-III Antibodies,HTLV-III-LAV Antibodies,LAV Antibodies,Lymphadenopathy-Associated Antibodies,T-Lymphotropic Virus Type III Antibodies, Human,HIV Associated Antibodies,HTLV III Antibodies,HTLV III LAV Antibodies,Lymphadenopathy Associated Antibodies,T Lymphotropic Virus Type III Antibodies, Human,Antibodies, AIDS,Antibodies, HIV,Antibodies, HIV Associated,Antibodies, HIV-Associated,Antibodies, HTLV III,Antibodies, HTLV-III,Antibodies, HTLV-III-LAV,Antibodies, LAV,Antibodies, Lymphadenopathy Associated,Antibodies, Lymphadenopathy-Associated

Related Publications

G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
January 1980, Bollettino dell'Istituto sieroterapico milanese,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
December 2009, The Korean journal of parasitology,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
January 2016, Revista brasileira de parasitologia veterinaria = Brazilian journal of veterinary parasitology : Orgao Oficial do Colegio Brasileiro de Parasitologia Veterinaria,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
December 1993, AIDS research and human retroviruses,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
February 1995, Clinical and experimental immunology,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
March 1979, The Journal of infectious diseases,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
March 1990, Ceskoslovenska epidemiologie, mikrobiologie, imunologie,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
May 1996, AIDS research and human retroviruses,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
August 1974, The British journal of venereal diseases,
G Filice, and P M Cereda, and P Orsolini, and L Soldini, and E Romero, and E G Rondanelli
March 1982, Research in veterinary science,
Copied contents to your clipboard!