Search PubMed⌕ Search

Biomedical subjects

T C Merigan

Publications and source records attributed to T C Merigan.

At least 91 records · Page 5Linked to original sources

Detection of drug resistance mutations in the human immunodeficiency virus type 1 (HIV-1) pol gene: differences in semen and blood HIV-1 RNA and proviral DNA.

Different tissues or body fluids in which human immunodeficiency virus type 1 (HIV-1) can reside may contain viruses with distinct characteristics. Sixteen HIV-1-infected patients receiving zidovudine or didanosine were studied cross-sectionally and 1 patient who switched from zidovudine to didanosine was followed sequentially to determine if drug resistance mutations within the HIV-1 pol gene at codons 74 and 215 differed depending on the compartment from which the gene was isolated (plasma, seminal fluid, peripheral blood mononuclear cells, or seminal nonspermatozoal mononuclear cells). Cell-free virus in plasma and semen developed detectable mutations first, followed by proviral DNA in seminal nonspermatozoal and peripheral blood mononuclear cells. Study of the appearance of HIV-1 mutations in various compartments may help elucidate how the populations and dynamics of the virus differ throughout the body and determine whether seminal cell-free virus or provirus is the major sexually transmitted form.

Cross-Sectional Studies↗

HIV-1 syncytium-inducing phenotype, virus burden, codon 215 reverse transcriptase mutation and CD4 cell decline in zidovudine-treated patients.

The variable rate of disease progression in HIV-1-infected patients treated with zidovudine may be related to certain viral characteristics, such as, antiviral drug resistance, virus burden, and viral syncytium-inducing (SI) capacity. Thirty-two HIV-1-infected patients treated with zidovudine (mean of 34 months) were studied to determine the relationship of SI phenotype and the codon 215 pol gene mutation (a marker of zidovudine resistance) to virus burden and CD4 cell decline. Patients with SI strains and the codon 215 mutation in their proviral DNA had a 54% decline in CD4 cells and a virus burden of 21,480 proviral DNA copies/10(6) CD4 cells. In contrast, patients with non-SI (NSI) strains and wild-type at codon 215 had a 10% increase in CD4 cells and had a viral burden 1/46 that of patients with SI and the 215 mutation. Among patients with NSI strains, changes in CD4 cells depended on the presence of the codon 215 mutation (-160 CD4 cells/microliters), compared with those wild-type at codon 215 (+28 CD4 cells/microliters) (p < 0.01). There was a concordant rise in virus burden between proviral DNA and plasma HIV RNA depending on HIV phenotype and genotype. Using multiple linear regression, SI phenotype and the codon 215 mutation were found to independently predict CD4 cell decline and increased virus burden in zidovudine-treated patients.

CD4-Positive T-Lymphocytes↗

Relationship of HIV-1 provirus load, CD8+ CD11+ T cells and HIV-1 envelope-specific cytotoxic T lymphocytes in HIV-infected asymptomatic offients.

The course of human immunodeficiency virus (HIV) infection progresses from an acute infection, through a prolonged asymptomatic phase, to an immunocompromised state. Some of the possible mechanisms underlying immune dysfunction include decreased HIV-specific cytotoxic T lymphocyte (CTL) activity, increased suppressor T cells, and/or increased HIV load. However, no study has been carried out to correlate all these factors. In this study, 26 patients showed > 3 log DNA copy number/10(6) CD4+ T cells, and seven patients had < 3 log DNA copy/10(6) CD4+ T cells. Patients with higher virus load had greater than 15% (19-45%) CD8+ CD11+ T cells. HIV-1 envelope-specific, HLA-restricted CTL activity (> 10%) was observed in 11 of 25 asymptomatic patients, and the remaining 14 patients lacked CTL activity (< 10%) in bulk assay. Although CTL activity was undetectable in these individuals, there was no significant difference in the frequency of activated CTL and their precursors in limiting dilution analysis. The patients with undetectable CTL activity had a higher percentage of CD8+ CD11+ T cells and a higher HIV-1 DNA copy number/million CD4+ T cells. Each of these parameters were significantly correlated with CD4+ T-cell numbers. The inverse relationship of CD8+ CD11+ T cells and virus load with HIV-specific CTL activity observed in this study may be one of the underlying factors which determines the course of HIV infection.

CD11 Antigens↗

Diurnal and short-term stability of HIV virus load as measured by gene amplification.

To determine whether human immunodeficiency virus (HIV) viral load has short term stability, eight clinically stable subjects infected with HIV and having CD4 counts ranging between 10-600/mm3, had blood samples taken at 0800 and 1700 on 3 consecutive days and then weekly at 0800 for 1 month (8-10 observations/subject). Plasma HIV RNA, peripheral blood mononuclear cell (PBMC) proviral DNA, serum p24 antigen levels, and mononuclear cell subsets were measured at each time point. Mean plasma HIV RNA, PBMC HIV DNA, and p24 antigen [both regular and immune complex dissociated (ICD)] levels did not change significantly between mornings and afternoons or on successive days or weeks. CD4+, CD8+, and CD56+ number demonstrated a diurnal variation in those subjects with > 200 CD4 cells/mm3. We conclude that HIV viral load demonstrates short-term stability in clinically stable subjects. This stability has important implications for monitoring HIV disease progression or antiretroviral therapy.

Adult↗

Human immunodeficiency virus envelope glycoproteins.

Given the long-term clinical latency and high level of replication of human immunodeficiency virus (HIV), it is not surprising that HIV has developed a method of persistence involving production of novel variants in its proteins. Therapeutic vaccines attempt to harness enhanced immune mechanisms to control viral replication, and thus prevent disease progression. A major problem in the development of a vaccine is the great variety of viral quasispecies in HIV infection worldwide and within the lifetime of a given individual. Furthermore, the protective immune parameters that correlate with the ability to control disease progression remain undefined. Manufacturers have followed a number of paths to select an immunogen. At present, investigators are monitoring different immune and viral parameters to measure the effects of therapeutic vaccination. This monitoring ranges from HIV-specific cellular and humoral immunity to viral load markers and skin tests to recall antigens. Two possible major limitations to this treatment approach are the declining potency of the immune response and the ability of the virus to produce escape mutants, particularly during disease progression as viral replication increases. The latter escape mechanism could be similar to the specific pol mutations that enable the virus to escape the impact of drug therapy. Although apparent safety has been observed in phase II/III studies using several HIV envelope-based therapeutic vaccines, investigators have documented reproducible immunogenicity only in HIV-seropositive individuals with CD4+ T cells > 400/mm3. A convincing impact of vaccine therapy on viral load or the course of HIV disease has not been demonstrated.

AIDS Vaccines↗

Alternating and intermittent regimens of zidovudine and dideoxycytidine in patients with AIDS or AIDS-related complex.

OBJECTIVE: To determine whether alternating regimens consisting of zidovudine and 2',3'-dideoxycytidine (ddC) reduce the toxicity and maintain or increase the antiretroviral effect associated with each drug alone. DESIGN: An unblinded, randomized (phase II) clinical trial in which seven treatment regimens were compared. SETTING: Outpatient clinics of 12 AIDS Clinical Trials Units. PATIENTS: One hundred thirty-one patients with the acquired immunodeficiency syndrome (AIDS) or AIDS-related complex and serum p24 antigenemia (> or = 70 pg/mL). INTERVENTION: Treatments included weekly or monthly alternating zidovudine (200 mg every 4 hours) and ddC (0.01 or 0.03 mg/kg body weight every 4 hours); weekly intermittent zidovudine, 200 mg every 4 hours, or ddC, 0.03 mg/kg every 4 hours; and continuous zidovudine. MEASUREMENTS: Toxicity, CD4 cell counts, serum p24 antigen levels, and clinical end points. Data were analyzed for the first 48 weeks of therapy (median follow-up, 40 weeks). RESULTS: Hematologic toxicity was significantly less frequent in patients who received zidovudine therapy every other week (11% to 15%) or every other month (11% to 14%) than in those who received continuous zidovudine therapy (33%) (P < 0.02). Weekly alternating therapy with zidovudine and ddC, 0.03 mg/kg, or intermittent therapy with ddC, 0.03 mg/kg, produced high rates of peripheral neuropathy (41% and 50%, respectively). Neuropathy occurred in 10% to 21% of patients in the other three alternating-therapy limbs and in 17% of patients receiving zidovudine alone (intermittently or continuously). Initial increases in CD4 cell counts were sustained in three alternating-therapy limbs, but counts returned to baseline by week 28 in the remaining limbs. The median weight gain at week 48 was significantly greater in patients treated with alternating regimens (0.9 to 3.8 kg) compared with those treated with continuous zidovudine therapy (-0.7 kg) (P = 0.008). Patients treated with alternating regimens and those treated with continuous zidovudine had similarly sustained decreases in p24 antigen levels. CONCLUSIONS: These findings suggest that alternating therapy with zidovudine and ddC reduces the toxicity associated with each drug alone while maintaining strong antiretroviral activity.

AIDS-Related Complex↗

Zidovudine susceptibility testing of human immunodeficiency virus type 1 (HIV) clinical isolates.

Traditional antiviral susceptibility testing methods using cell lines can be applied to no more than about 30% of clinical HIV isolates (Larder et al., 1989a; Fenyo et al., 1989). We tested the cell-free supernatant from low passage clinical HIV isolates using donor peripheral blood mononuclear cells (PBMC). Drug susceptibility was assessed by measuring the effect of increasing zidovudine (ZDV) concentrations on HIV P24 antigen production. Susceptibility results were obtained on 24/27 consecutive clinical isolates and 6/6 laboratory isolates. The mean IC90 of isolates from untreated patients was 0.008 microM ZDV (range: 0.002-0.038). The IC90s of isolates from ZDV-treated patients ranged from 0.007 to greater than 10 microM ZDV. All isolates with an IC90 < 0.1 microM ZDV had a wild type sequence at codon 215 of the HIV pol gene; 11/12 isolates with an IC90 > 0.1 microM ZDV had a mutation at codon 215 (P < 0.001). Among 16 ZDV-treated patients, there was a modest correlation between the change in CD4 count from the start of ZDV treatment and the IC90 of the patient's isolate following treatment (r = 0.51). Susceptibility testing using donor PBMC can be a sensitive means of testing a broad range of clinical HIV isolates.

Base Sequence↗

Continuous presence of CD4-PE40 is required for antiviral activity against single-passage HIV isolates and infected peripheral blood mononuclear cells.

CD4-PE40, a recombinant protein consisting of a portion of human CD4 linked to Pseudomonas aeruginosa exotoxin, was studied in vitro to assess its ability to inhibit the replication of primary isolates of HIV. CD4-PE40 was added to cultures of phytohemagglutin (PHA)-stimulated normal peripheral blood mononuclear cells (PBMCs) infected either with the laboratory strain HIVIIIb or single-passage virus stocks derived from patient PBMCs. Results showed that the replication of HIVIIIb was inhibited by a single pulse of CD4-PE40 and, more significantly, by continuous exposure to the drug. The replication of primary virus isolates, however, was inhibited only by continuous exposure to CD4-PE40. Cultures of freshly isolated PBMCs from HIV-seropositive individuals that were directly treated with CD4-PE40 before culture also required the continuous presence of drug to demonstrate inhibition of HIV replication. These results suggest that continuous administration of CD4-PE40 may be required to produce a significant anti-HIV effect in vivo.

Antiviral Agents↗

Safety and efficacy of polyethylene glycol-modified interleukin-2 and zidovudine in human immunodeficiency virus type 1 infection: a phase I/II study.

The safety and efficacy of combined therapy with polyethylene glycolated (PEG) interleukin (IL)-2 and zidovudine was assessed in 19 human immunodeficiency virus type 1 (HIV-1)-seropositive subjects in a phase I/II open-label dose-ranging study. During courses of three weekly infusions of PEG IL-2, dose-limiting side effects were seen at 5 x 10(6) IU/m2 and reversible encephalopathy in 1 subject at 3 x 10(6) IU/m2. Significant increases were seen in CD4 cell counts (P < .01), NK cell activity (P < .05), and HIV-specific cytotoxicity (P < .01). Virologic monitoring (quantitative DNA polymerase chain reaction and p24 antigen assay) showed no evidence of increased HIV activation. Patients with CD4 cells < 200/mm3 were entered into a chronic dosing phase. PEG IL-2 was given at 14-day intervals at doses of 10(6) IU/m2 for 8 weeks and 3 x 10(6) IU/m2 for up to 16 weeks, resulting in mean CD4 cell count elevations of 16% and 33%, respectively. PEG IL-2 appears to warrant further investigation, especially in subjects with CD4 cell counts < 200/mm3, to determine whether increased lymphocyte numbers will translate into improved clinical outcome.

Adult↗

A mutation in human immunodeficiency virus reverse transcriptase and decline in CD4 lymphocyte numbers in long-term zidovudine recipients.

A nested polymerase chain reaction assay was used to define the sequence of a specific codon, amino acid 215, of the human immunodeficiency virus (HIV) pol gene in DNA from peripheral blood mononuclear cells (PBMC) and viral RNA from serum from 38 patients treated with zidovudine for > or = 2 years. After treatment for a mean of 34 months, 17 patients with sequences with a codon 215 mutation had a mean 50% decrease in CD4 cells, compared with 21 patients with sequences wild-type at codon 215, who had a mean 11% increase in CD4 cells (P < .0001). Patients with a mutation at 215 had a ninefold higher provirus burden in PBMC. Detection of the codon 215 mutation in plasma viral RNA preceded detection of the mutation in DNA from PBMC and decline in CD4 cells. The appearance of a mutation at codon 215 in the HIV reverse transcriptase gene in patients receiving zidovudine may be a marker for impending immunologic decline.

CD4-Positive T-Lymphocytes↗

Detection of human immunodeficiency virus type 1 in semen: effects of disease stage and nucleoside therapy.

The effects of clinical stage of infection and antiviral therapy on the detection of human immunodeficiency virus type 1 (HIV-1) nucleic acids in semen were investigated by the polymerase chain reaction. HIV-1 was detected in 45 (87%) of 52 semen specimens from 29 (81%) of 36 men. Seventeen (77%) of 22 stage II or III subjects and 12 (86%) of 14 stage IV subjects had positive specimens. The CD4+ lymphocyte count was not significantly different comparing subjects with positive and negative semen. Moreover, 6 (67%) of 9 untreated men had positive specimens compared with 23 (85%) of 27 men treated with zidovudine, 2',3'-dideoxyinosine, or both for a mean of 20 months. Thus, the detection of HIV-1 in semen was independent of both stage of infection and long-term treatment. In a semiquantitative analysis of 6 men followed for 8 weeks after the start of nucleoside therapy, a decrease in HIV-1 RNA in seminal plasma was demonstrated in 2.

Anti-Bacterial Agents↗

Peripheral blood mononuclear cell human immunodeficiency virus type 1 proviral DNA quantification by polymerase chain reaction: relationship to immunodeficiency and drug effect.

Human immunodeficiency virus type 1 (HIV-1) proviral DNA from peripheral blood mononuclear cells (PBMCs) was quantitated in 61 HIV-1-seropositive individuals by a nonisotopic polymerase chain reaction assay. Primers from the gag region (SK38, SK39) were used to determine the log10 HIV-1 proviral copy number per 10(6) CD4+ T lymphocytes (peripheral blood proviral load). A standard curve was generated for each assay by using ACH-2 cell DNA. The peripheral blood proviral load was followed in 15 individuals in a longitudinal study and was measured in 45 individuals in a cross-sectional analysis. Three of four untreated patients who were followed for 14 months had stable PBMC proviral loads and CD4+ T lymphocyte counts; one untreated patient had a sustained increase in PBMC proviral load followed 5 months later by a significant decline in the CD4+ T lymphocyte count. Eleven previously untreated individuals were monitored for 1 year following initiation of zidovudine and/or 2',3'-dideoxyinosine therapy. The mean log10 number of proviral HIV-1 copies per 10(6) CD4+ T cells decreased from 4.3 +/- 0.4 at the baseline to 3.5 +/- 0.6 after 2 to 4 months of therapy (P < 0.01). This initial 0.8 log10 fall in the PBMC proviral load after the initiation of therapy was followed by a rise in the PBMC proviral load by the sixth month of therapy. The PBMC proviral load in 45 subjects, both treated (n = 25) and untreated (n = 20), correlated inversely with the CD4+ T lymphocyte count (P < 0.01, R = 0.49). PBMC proviral DNA quantification by a nonisotopic polymerase chain reaction assay correlates with HIV-1 disease progression and could be used to monitor the effect of antiretroviral therapy.

Acquired Immunodeficiency Syndrome↗

Biological variation and quality control of plasma human immunodeficiency virus type 1 RNA quantitation by reverse transcriptase polymerase chain reaction.

Quantitation of human immunodeficiency virus type 1 (HIV-1) RNA in the plasma of seropositive individuals was performed by using an external control assay with techniques to standardize and control each measurement. Rigorous study of the variability of the assay showed that the median intraassay reproducibility was log10 0.15 RNA copies per ml of plasma, while the median interassay reproducibility on replicate plasma samples was log10 0.25 copies perml. Specimen stability studies showed reproducible recovery of RNA from plasma stored at -70 degrees C for up to 12 months. In clinically stable patients who were either untreated or taking zidovudine, the average week-to-week variation in plasma RNA levels, measured in real time, was log10 0.30 RNA copies per ml. In contrast, patients either initiating or changing antiretroviral therapy showed a fall of log10 0.8 to log10 2.0 copies per ml in plasma RNA levels. Overall, 105 of 110 (96%) HIV-1-seropositive individuals with CD4 counts of 36 to 868 cells per mm3 had quantifiable HIV-1 RNA over a range of log10 2.70 to log10 6.23 RNA copies per ml, including 81% (13 of 16) of the individuals with greater than 500 CD4 cells per mm3. Accurate and reproducible quantitation of plasma viremia in real time by reverse transcriptase polymerase chain reaction, particularly in asymptomatic HIV-1-infected individuals with high CD4 counts, provides a basis for the use of this virologic measure to monitor the short- and long-term effects of early intervention therapeutic strategies on viral burden.

CD4-Positive T-Lymphocytes↗

Measurement of HIV virus load and genotypic resistance by gene amplification in asymptomatic subjects treated with combination therapy.

Quantification of viral load in HIV disease has become increasingly important as a marker of antiviral efficacy. We applied gene amplification techniques in vivo to asses antiretroviral activity of combination therapy. Five HIV-infected subjects, four of whom were drug naive, were administered combination therapy with zidovudine (ZDV) and didanosine (ddI). Plasma and peripheral blood mononuclear cells (PBMC) were obtained twice at baseline and then at 1, 3, 6, 9, and 12 months after the initiation of therapy. Results show that plasma HIV RNA copy number fell from 2,170 +/- 660/ml to undetectable at 1 month, with continued suppression at 12 months. HIV proviral DNA copy number decreased from 3.9 to 3.0 log10/10(6) CD4+ T cells at 12 months. Cell dilution cultures were positive in 4 of 5 subjects at baseline and in only 1 of 5 after 12 months. CD4+ T-cell count increased from 390 +/- 30/mm3 pretherapy, to 505 +/- 66/mm3 after 6 months of therapy, but returned to baseline levels after 12 months of therapy. No mutations were detected from PBMC DNA for codon 215 and 74 in the HIV pol gene from the drug-naive subjects. These findings suggest that gene amplification techniques can be used to study changes in viral load or genotype and can be applied in real time to samples from patients involved in clinical trials.

CD4-Positive T-Lymphocytes↗

Quantification and comparison of HIV-1 proviral load in peripheral blood mononuclear cells and isolated CD4+ T cells.

HIV proviral load was determined by quantitative DNA polymerase chain reaction (PCR) in peripheral blood mononuclear cells (PBMC) and lymphocyte subsets isolated by cell sorter. Provirus measured in PBMC, when expressed as HIV copy number per million CD4+ cells, resulted in values which approximated those obtained from sorted CD4+ T lymphocytes. A cross sectional analysis of HIV proviral load in CD4+ T cells from 25 previously untreated and 30 zidovudine-treated seropositive patients with CD4+ T-cell counts between 25 and 802/mm3 demonstrated HIV copy numbers ranging from 1 copy per 10,000 cells in early disease to 1 copy per 10 cells in advanced disease. HIV proviral load can be rapidly assayed by PCR to give a reproducible value which varies over a 1,000-fold range and is positively correlated with cell infectivity as measured by a quantitative micrococulture assay. A less technically demanding assay using PBMC as substrate can give similar results to those obtained with sorted CD4+ T cells.

Cell Count↗

Enhancement of human immunodeficiency virus (HIV)-specific CD4+ and CD8+ cytotoxic T-lymphocyte activities in HIV-infected asymptomatic patients given recombinant gp160 vaccine.

Twenty-six human immunodeficiency virus (HIV)-infected asymptomatic patients with CD4+ lymphocytes > 400 per mm3 were randomly allocated to a range of doses of recombinant gp160 or a control (recombinant hepatitis B vaccine) on a double-blind basis. Each patient received an injection at 0, 4, 12, 24, 36, and 48 weeks. Treatment assignments were decoded when all patients reached 28 weeks of the study period. HIV-1-specific CD4+ and CD8+ cytotoxic T lymphocyte (CTL) activities were assessed in vitro before vaccination and 2 weeks after each injection. There were significant increases in major histocompatibility complex-restricted HIV-1 Env-specific CD4+ and CD8+ CTL activities in 18 of 21 gp160 vaccinees. No control-injected patients showed a significant change. Neither gp160 nor control recipients showed significant changes in HIV-1 Gag- and Pol-specific CTL activities. HIV-1 Env-specific CD4+ and CD8+ CTL precursor frequencies were also measured in three vaccinees before and at 24 weeks after vaccine was started. CTL precursor frequencies also increased in both CD4+ and CD8+ populations. This study shows that this gp160 vaccine is immunogenic in enhancing HIV-1 Env-specific cytotoxic T-cell-mediated immunity in HIV-seropositive individuals.

AIDS Vaccines↗

A controlled trial of ganciclovir to prevent cytomegalovirus disease after heart transplantation.

BACKGROUND: Because of the immunosuppression required, heart-transplant recipients frequently have complications caused by cytomegalovirus (CMV), including pneumonia, esophagitis, gastritis, and a syndrome of fever, hepatitis, and leukopenia. We undertook a controlled trial to evaluate the prophylactic administration of ganciclovir to prevent CMV-induced disease after heart transplantation. METHODS: This randomized, double-blind, placebo-controlled trial was conducted at four centers. Before randomization, the patients were stratified into two groups: those who were seropositive for CMV before transplantation and those who were seronegative but who received hearts from seropositive donors. Ganciclovir was given intravenously at a dose of 5 mg per kilogram of body weight every 12 hours from postoperative day 1 through day 14, then at a dose of 6 mg per kilogram each day for 5 days per week until day 28. RESULTS: Among the seropositive patients, CMV illness occurred during the first 120 days after heart transplantation in 26 of 56 patients given placebo (46 percent), as compared with 5 of 56 patients treated with ganciclovir (9 percent) (P less than 0.001). Among 37 seronegative patients, CMV illness was frequent in both groups (placebo, 29 percent; ganciclovir, 35 percent; P not significant). From day 15 through day 60, the patients who took ganciclovir had significantly fewer urine cultures positive for CMV, but by day 90 there was no difference. More of the ganciclovir-treated patients had serum creatinine concentrations greater than or equal to 221 mumol per liter (2.5 mg per deciliter) (18 percent vs. 4 percent in the placebo group), but those elevations were transient. CONCLUSIONS: The prophylactic administration of ganciclovir after heart transplantation is safe, and in CMV-seropositive patients it reduces the incidence of CMV-induced illness.

Adolescent↗