Enhanced replicative capacity and pathogenicity of HIV-1 isolated from individuals infected with drug-resistant virus and declining CD4+ T-cell counts. 2005

Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
Infectious Diseases Unit, Alfred Hospital, Melbourne, Victoria, Australia.

Virologic failure on continuous antiretroviral therapy (ART) is associated with variable changes in CD4 T-cell counts: peripheral CD4 T-cell counts decrease in conjunction with a resurgence of plasma virus (nonresponders) or remain stable or continue to increase despite ongoing virus replication (discordant responders). This study found that HIV-1 isolated from nonresponders had significantly greater replicative capacity in activated peripheral blood mononuclear cells (PBMCs) as well as an enhanced ability to induce apoptosis in both HIV-1-infected and HIV-1-uninfected CD4 T cells compared with virus isolated from discordant responders. Enhanced replicative capacity in PBMCs of virus isolated from nonresponders was inhibited by AMD3100, a CXCR4 antagonist. Virus quasispecies isolated from PBMCs from nonresponders used both CC chemokine receptor 5 (CCR5) and CX chemokine receptor 4 (CXCR4) for entry, in contrast to virus isolated from PBMCs from discordant responders, which predominantly used CCR5. In contrast, virus isolated from plasma from both groups predominantly used CCR5. In summary, although drug resistance may lead to impaired viral fitness, the capacity of virus quasispecies from PBMCs to use CXCR4 may have significant consequences on viral replicative capacity and potentially on clinical outcome.

UI MeSH Term Description Entries
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D013950 Thymus Gland A single, unpaired primary lymphoid organ situated in the MEDIASTINUM, extending superiorly into the neck to the lower edge of the THYROID GLAND and inferiorly to the fourth costal cartilage. It is necessary for normal development of immunologic function early in life. By puberty, it begins to involute and much of the tissue is replaced by fat. Thymus,Gland, Thymus,Glands, Thymus,Thymus Glands
D014779 Virus Replication The process of intracellular viral multiplication, consisting of the synthesis of PROTEINS; NUCLEIC ACIDS; and sometimes LIPIDS, and their assembly into a new infectious particle. Viral Replication,Replication, Viral,Replication, Virus,Replications, Viral,Replications, Virus,Viral Replications,Virus Replications
D015497 HIV-1 The type species of LENTIVIRUS and the etiologic agent of AIDS. It is characterized by its cytopathic effect and affinity for the T4-lymphocyte. Human immunodeficiency virus 1,HIV-I,Human Immunodeficiency Virus Type 1,Immunodeficiency Virus Type 1, Human
D015658 HIV Infections Includes the spectrum of human immunodeficiency virus infections that range from asymptomatic seropositivity, thru AIDS-related complex (ARC), to acquired immunodeficiency syndrome (AIDS). HTLV-III Infections,HTLV-III-LAV Infections,T-Lymphotropic Virus Type III Infections, Human,HIV Coinfection,Coinfection, HIV,Coinfections, HIV,HIV Coinfections,HIV Infection,HTLV III Infections,HTLV III LAV Infections,HTLV-III Infection,HTLV-III-LAV Infection,Infection, HIV,Infection, HTLV-III,Infection, HTLV-III-LAV,Infections, HIV,Infections, HTLV-III,Infections, HTLV-III-LAV,T Lymphotropic Virus Type III Infections, Human
D018791 CD4 Lymphocyte Count The number of CD4-POSITIVE T-LYMPHOCYTES per unit volume of BLOOD. Determination requires the use of a fluorescence-activated flow cytometer. Lymphocyte Count, CD4,T4 Lymphocyte Count,CD4 Cell Counts,CD4 Counts,CD4+ Cell Counts,CD4+ Counts,CD4 Cell Count,CD4 Count,CD4 Lymphocyte Counts,CD4+ Cell Count,CD4+ Count,Count, T4 Lymphocyte,Counts, T4 Lymphocyte,Lymphocyte Count, T4,Lymphocyte Counts, CD4,Lymphocyte Counts, T4,T4 Lymphocyte Counts
D024882 Drug Resistance, Viral The ability of viruses to resist or to become tolerant to chemotherapeutic agents or antiviral agents. This resistance is acquired through gene mutation. Antiviral Drug Resistance,Antiviral Drug Resistances,Drug Resistances, Viral
D066298 In Vitro Techniques Methods to study reactions or processes taking place in an artificial environment outside the living organism. In Vitro Test,In Vitro Testing,In Vitro Tests,In Vitro as Topic,In Vitro,In Vitro Technique,In Vitro Testings,Technique, In Vitro,Techniques, In Vitro,Test, In Vitro,Testing, In Vitro,Testings, In Vitro,Tests, In Vitro,Vitro Testing, In

Related Publications

Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
January 1999, The New England journal of medicine,
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
September 2013, AIDS (London, England),
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
April 2005, AIDS research and human retroviruses,
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
January 1990, Journal of acquired immune deficiency syndromes,
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
May 2008, Journal of immunology (Baltimore, Md. : 1950),
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
December 1992, Journal of acquired immune deficiency syndromes,
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
January 2001, AIDS (London, England),
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
October 2004, Journal of virology,
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
May 2005, The Journal of infectious diseases,
Ajantha Solomon, and Natalie Lane, and Fiona Wightman, and Paul R Gorry, and Sharon R Lewin
December 2000, Journal of immunology (Baltimore, Md. : 1950),
Copied contents to your clipboard!