Zidovudine: five years later. 1992

G X McLeod, and S M Hammer
New England Deaconess Hospital, Boston, Massachusetts.

Zidovudine, a nucleoside analog, was the first agent proved to be effective in the management of human immunodeficiency virus type 1 (HIV-1) infection. After demonstration of zidovudine's in-vitro activity against HIV-1 in 1985, the drug was rapidly evaluated in phase I and phase II clinical trials and was found to be effective in decreasing both mortality and the incidence of opportunistic infections in patients with the acquired immunodeficiency syndrome (AIDS) and advanced AIDS-related complex; the drug was also found to have a substantial but tolerable toxicity profile. Since the licensure of zidovudine in 1987, an intensive clinical research effort has established the drug's efficacy in the prevention of disease progression in asymptomatic and mildly symptomatic HIV-infected persons and has established the success of lower-dose therapy in patients at all stages of disease. The current recommendation is to use zidovudine at a dose of 500 to 600 mg/d in both symptomatic and asymptomatic persons with CD4 counts of less than 500/mm3. The major toxicities of anemia and neutropenia are less frequent at the lower doses presently used and can be managed by dose reduction or by use of hematopoietic growth factors. The inexorable disease progression seen despite zidovudine therapy and the isolation of clinical strains of HIV-1 resistant to zidovudine in vitro highlight the limitations of prolonged monotherapy with this agent. Although alternative dideoxynucleoside agents (for example, didanosine [dideoxyinosine and zalcitabine dideoxycytidine]) are available for the management of HIV-infected persons, zidovudine remains the cornerstone of antiretroviral therapy. Current research efforts are directed at elucidating the clinical relevance of zidovudine resistance and studying regimens in which zidovudine is used in combination with other agents. This latter approach holds great promise for improving efficacy, limiting toxicity, and perhaps preventing the emergence of viral resistance. For the forseeable future, zidovudine will continue to play a role in the development and in our understanding of antiretroviral therapy.

UI MeSH Term Description Entries
D002986 Clinical Trials as Topic Works about pre-planned studies of the safety, efficacy, or optimum dosage schedule (if appropriate) of one or more diagnostic, therapeutic, or prophylactic drugs, devices, or techniques selected according to predetermined criteria of eligibility and observed for predefined evidence of favorable and unfavorable effects. This concept includes clinical trials conducted both in the U.S. and in other countries. Clinical Trial as Topic
D004352 Drug Resistance, Microbial The ability of microorganisms, especially bacteria, to resist or to become tolerant to chemotherapeutic agents, antimicrobial agents, or antibiotics. This resistance may be acquired through gene mutation or foreign DNA in transmissible plasmids (R FACTORS). Antibiotic Resistance,Antibiotic Resistance, Microbial,Antimicrobial Resistance, Drug,Antimicrobial Drug Resistance,Antimicrobial Drug Resistances,Antimicrobial Resistances, Drug,Drug Antimicrobial Resistance,Drug Antimicrobial Resistances,Drug Resistances, Microbial,Resistance, Antibiotic,Resistance, Drug Antimicrobial,Resistances, Drug Antimicrobial
D004359 Drug Therapy, Combination Therapy with two or more separate preparations given for a combined effect. Combination Chemotherapy,Polychemotherapy,Chemotherapy, Combination,Combination Drug Therapy,Drug Polytherapy,Therapy, Combination Drug,Chemotherapies, Combination,Combination Chemotherapies,Combination Drug Therapies,Drug Polytherapies,Drug Therapies, Combination,Polychemotherapies,Polytherapies, Drug,Polytherapy, Drug,Therapies, Combination Drug
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D015215 Zidovudine A dideoxynucleoside compound in which the 3'-hydroxy group on the sugar moiety has been replaced by an azido group. This modification prevents the formation of phosphodiester linkages which are needed for the completion of nucleic acid chains. The compound is a potent inhibitor of HIV replication, acting as a chain-terminator of viral DNA during reverse transcription. It improves immunologic function, partially reverses the HIV-induced neurological dysfunction, and improves certain other clinical abnormalities associated with AIDS. Its principal toxic effect is dose-dependent suppression of bone marrow, resulting in anemia and leukopenia. AZT (Antiviral),Azidothymidine,3'-Azido-2',3'-Dideoxythymidine,3'-Azido-3'-deoxythymidine,AZT Antiviral,AZT, Antiviral,BW A509U,BWA-509U,Retrovir,3' Azido 2',3' Dideoxythymidine,3' Azido 3' deoxythymidine,Antiviral AZT,BWA 509U,BWA509U
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

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