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Biomedical subjects

T C Merigan

Publications and source records attributed to T C Merigan.

At least 73 records · Page 4Linked to original sources

Prophylactic ganciclovir treatment reduces fungal as well as cytomegalovirus infections after heart transplantation.

Cytomegalovirus (CMV) infection is associated with an increased incidence of other opportunistic infections in organ transplant recipients. Whether this is related to immunomodulating effects of CMV or independent of CMV but associated with a host risk factor common to both infections is unclear. The purpose of this study was to determine whether the reduction in CMV infections seen with prophylactic ganciclovir treatment after heart transplantation is associated with a reduced incidence of other opportunistic infections. Of 149 patients prospectively enrolled in a multicenter, randomized, double-blind, placebo-controlled trial of ganciclovir to prevent CMV disease, 74 patients enrolled at this center (33 control and 41 ganciclovir-treated) were retrospectively identified. All received prophylactic OKT-3 and standard 3 drug maintenance immunosuppressive therapy. Actuarial survival and rejection rates and incidence of opportunistic infections (bacterial, fungal, and protozoal) for the 2 treatment groups were determined and compared using Cox-Mantel analysis. CMV disease occurred 2.5 times more frequently in the control group. There were no significant differences in survival or rejection rates nor in bacterial or protozoal infection incidence between the 2 groups. Bacterial infections occurred in 54% of control and 39% of ganciclovir-treated patients (P = 0.18). There were significantly fewer fungal infections in the ganciclovir-treated group (7% vs. 27%, P = 0.0071). CMV and fungal infections were both significantly reduced in patients who received ganciclovir prophylaxis. This suggests that active CMV disease may be causally associated with the development of opportunistic fungal infections.

Adult↗

Characterization of HLA-A 0201-restricted cytotoxic T cell epitopes in conserved regions of the HIV type 1 gp160 protein.

CTL activity is a major component of the host immune response associated with control of HIV replication in the course of infection. Emerging populations of HIV overcome the protective effector mechanisms with variant sequences unrecognized by CTL. Therefore, a critical element for containment of virus spread might be the establishment of an immune response against highly conserved epitopes. In this study, we selected a panel of nonamer or decamer peptides, with demonstrated binding affinity for HLA-A 0201, to define novel highly conserved envelope-derived epitopes of HIV-1. CTL activities were characterized from PBMC of five HLA-A2+, HIV-1-infected individuals given recombinant gp160. CTL activity derived from patient PBMC stimulated in vitro with peptide was demonstrated against at least two novel minimal env-encoded conserved epitopes. One epitope, KLTPLCVTL (aa 120-128), is highly conserved among HIV-1 strains of the B subtype. Analysis of a CTL clone reactivity to a distinct epitope (aa 814-823) demonstrated fluctuations in the recognition of peptides corresponding to natural virus variants found in vivo.

Amino Acid Sequence↗

Quantitation of human cytomegalovirus DNA from peripheral blood cells of human immunodeficiency virus-infected patients could predict cytomegalovirus retinitis.

Human cytomegalovirus (CMV) DNA copy number in white blood cells from both human immunodeficiency virus (HIV)-seronegative and HIV-seropositive patients was amplified from the immediate-early region of CMV DNA and quantified by colorimetric detection of the hybridization of the amplification product to a detector oligonucleotide probe in microtiter wells. By Mann-Whitney U test, significantly higher (P < .05, two-tailed) copy numbers of CMV DNA were detected in HIV-seropositive patients with retinitis than in either patients with < 100 CD4 cells/mm3 and no symptomatic CMV disease or HIV-seropositive patients with > 100 CD4 cells/mm3. By prospective monitoring for increases in CMV DNA copy number, it may be possible to identify HIV-seropositive patients who are at imminent risk for development of symptomatic CMV retinitis.

AIDS-Related Opportunistic Infections↗

Human cytomegalovirus DNA is present in CD45+ cells in semen from human immunodeficiency virus-infected patients.

Human cytomegalovirus (CMV) DNA was detected and quantitated in both blood and semen cells from human immunodeficiency virus (HIV)-infected men with 100-800 CD4 cell counts/mm3. None of the 35 patients studied had demonstrable CMV DNA in mononuclear cells isolated from blood. Blood samples from 8 of these patients were cultured for CMV and found to be negative. About 30% of HIV-seropositive patients in the study group had > 100 copies of CMV in semen (range, > 100 to >10(6); mean, approximately 100,000). Persistent CMV infection was detected for > 8 months in some patients with no obvious signs or symptoms of CMV disease. The CMV-infected cell in semen CD45+ and probably had Fc receptors. Mature spermatozoa were not a major reservoir of CMV infection.

CD4 Lymphocyte Count↗

New virologic tools for the design and analysis of clinical trials.

While a large number of candidate drugs and drug combinations are being evaluated for treating human immunodeficiency virus (HIV) infection, clinicians are confronted by the problem of how to optimally use those antiretroviral drugs already approved for clinical use. While new techniques are being developed for studying HIV pathogenesis, clinicians are asking whether these new techniques can be used to develop improved strategies for treating the HIV-infected individual. In the current issue of the Journal, Kojima et al. from the National Cancer Institute (NCI) used two research techniques to analyze the results of a phase I/II study comparing alternating versus simultaneous therapy with zidovudine and didanosine. The authors used a quantitative polymerase chain reaction (PCR) assay for measuring plasma virus RNA and a selective PCR assay for detecting specific HIV reverse transcriptase (RT) drug-resistance mutations. Their study demonstrates the potential for effective combination therapy if drugs are optimally combined and suggests that assays for measuring HIV burden and HIV drug resistance can be used to better understand the results of preliminary clinical trials. In addition, their study raises questions about the potential role for measurements of virus burden and the detection of HIV drug resistance in larger clinical trials and clinical practice.

Antiviral Agents↗

Drug resistance and heterogeneous long-term virologic responses of human immunodeficiency virus type 1-infected subjects to zidovudine and didanosine combination therapy. The AIDS Clinical Trials Group 143 Virology Team.

Plasma human immunodeficiency virus (HIV) type 1 RNA levels, CD4 lymphocyte changes, and drug resistance were studied in HIV-infected patients with 200-500 CD4 lymphocytes/microL who received zidovudine and didanosine combination therapy for 2 years. Among 35 patients, 10 had sustained and 16 had transient > 10-fold reductions in HIV RNA: 9 did not have 10-fold HIV RNA reductions. Only patients with sustained HIV suppression maintained increased CD4 cell counts for 2 years (370 to 501 cells/microL; P = .006). Patients with transient HIV suppression were more likely to develop drug-resistant HIV strains (12/16 vs. 5/19, P = .01) and reverse transcriptase (RT) mutations (4.5 vs. 2.5/strain; P = .02) than were patients with sustained or no HIV suppression. Zidovudine resistance occurred with RT mutations at codons 41, 67, 70, 215, and 219. Multidrug resistance occurred with mutations at codons 62, 75, 77, 116, and 151. Mutations occurred at codons 60, 68, 118, 210, and 228 in > or = 4 patients each. Heterogeneity exists among individual virologic responses to zidovudine and didanosine combination therapy. HIV resistance mechanisms during combination therapy appear more complex than reported with monotherapy.

Amino Acid Sequence↗

Quantitative analysis of syncytium-inducing and non-syncytium-inducing virus in patients infected with human immunodeficiency virus type 1.

Among 75 consecutive human immunodeficiency virus type 1 (HIV-1)-infected patients with moderate and advanced immunosuppression, those harboring syncytium-inducing (SI) HIV-1 had a lower CD(4+)-cell count (145 versus 278 cells per microliter, P < 0.001) and 10-fold-higher virus titers than patients with non-SI HIV-1 (398 versus 39 infectious units per 10(6) CD4+ lymphocytes; P < 0.001). In patients with SI virus, the mean titer of SI virus, determined with a quantitative MT-2 cell assay, was 135 SI infectious units per 10(6) CD4+ lymphocytes. Virus titer correlated inversely with CD(4+)-cell count in patients with SI (r = -0.67) but not non-SI (r = -0.29) virus.

CD4-Positive T-Lymphocytes↗

Human cytomegalovirus (CMV) DNA in plasma reflects quantity of CMV DNA present in leukocytes.

A quantitative DNA amplification assay for human cytomegalovirus (CMV) DNA has been used to evaluate the relationship between quantities of CMV DNA in plasma and those in infected leukocytes (WBC) from human immunodeficiency virus-infected patients. The target sequence for DNA amplification was a region of the immediate-early 1 gene of CMV. The quantitation assay uses an internal control that is coamplified with each patient sample DNA and contains a sequence for detection by colorimetric hybridization with the same bases, but in different order than in the CMV immediate-early 1 region used for hybridization of amplified patient sample DNA. Results showed that patients with CMV disease had more CMV DNA in both WBC and plasma than those without disease. However, in this study, copy numbers of CMV DNA in WBC were higher than those in plasma. The gB and gH variants were the same in plasma and WBC.

Base Sequence↗

Persistence of attenuated rev genes in a human immunodeficiency virus type 1-infected asymptomatic individual.

With the goal of examining the functional diversity of human immunodeficiency virus type 1 (HIV-1) env genes within the peripheral blood mononuclear cells of an asymptomatic individual, we substituted four complete env genes into the replication-competent NL4-3 provirus. Despite encoding full-length open reading frames for gp120 and gp41 and the second coding exon of tat and rev, each chimera was replication defective. Site-directed mutagenesis of codon 78 in the Rev activation domain (from a hitherto unique Ile to the subtype B consensus Leu) partially restored infectivity for two of three chimeras tested. Similarly, mutagenesis of rev codon 78 of NL4-3 from Leu to Ile partially attenuated this virus. Ile-78 was found in all 13 clones examined from samples taken from this asymptomatic subject 4.5 years after infection, including 9 from peripheral blood mononuclear cells and 4 from a virus isolate, as well as 4 additional clones each from peripheral blood mononuclear cells sampled 37 and 51 months later. We next examined conservation of the Rev activation domain within and among long-term survivors (LTS) and patients with AIDS, as well as T-cell-line-adapted strains of HIV-1. Putative attenuating mutations were found in a minority of sequences from all five LTS and two of four patients with AIDS. Of the 11 T-cell-line-adapted viruses examined, none had these changes. Among and within LTS virus population had marginally higher levels of diversity in Rev than in Env; patients with AIDS had similar levels of diversity in the two reading frames; and T-cell-line-adapted viruses had higher levels of diversity in Env. These results are consistent with the hypothesis that asymptomatic individuals harbor attenuated variants of HIV-1 which correlate with and contribute to their lack of disease progression.

Acquired Immunodeficiency Syndrome↗

Didanosine resistance in HIV-infected patients switched from zidovudine to didanosine monotherapy.

OBJECTIVE: To determine the frequency and pattern of development of specific drug resistance mutations for human immunodeficiency virus (HIV) reverse transcriptase in patients switched from zidovudine to didanosine therapy and to examine the relation of the didanosine resistance mutation at codon 74 of the HIV reverse-transcriptase gene to CD4+ T-cell changes and virus burden. DESIGN: Retrospective analysis of all patients enrolled at Stanford University in protocols where patients were switched from zidovudine to didanosine monotherapy. SETTING: A university hospital. PATIENTS: 64 patients infected with HIV who were switched from zidovudine to didanosine monotherapy. Patients had the acquired immunodeficiency syndrome (AIDS), AIDS-related complex, or were asymptomatic (mean [+/- SD] starting CD4+ T-cell count of 129 +/- 88 cells/mm3). MEASUREMENTS: Serial serum specimens were tested for the didanosine resistance mutation at codon 74 of the HIV reverse-transcriptase gene and for a zidovudine resistance mutation at codon 215 using selective polymerase chain reactions (PCR). Serum HIV RNA levels were determined by quantitative PCR. CD4+ T-cell counts were determined at serial time points. RESULTS: By 24 weeks of didanosine therapy, the proportion of patients with the didanosine resistance mutation at codon 74 increased from 0% to 56% (36 of 64). In contrast, the proportion of patients with the zidovudine resistance mutation at codon 215 decreased from 84% at the start to 59% after 24 weeks of didanosine therapy (a 25% decrease, 95% lower CI, 15%; P < 0.0001). Patients who developed the codon 74 mutation had a greater decrease in CD4+ T cells after the development of the mutation than did patients without the mutation (P < 0.001). In addition, after 24 weeks of didanosine, patients who developed the codon 74 mutation had a greater serum HIV RNA burden than patients who remained wild type (did not have the mutation) at codon 74 (225,000 compared with 82,400 HIV RNA copies/mL serum; P = 0.01). CONCLUSIONS: Among patients infected with HIV who had advanced disease and were switched from zidovudine to didanosine therapy, more than one half developed the didanosine resistance mutation at codon 74 by 24 weeks of didanosine therapy. Patients who developed the codon 74 mutation had a greater decline in CD4+ T cells after the development of the mutation and had a greater serum virus burden than did patients without the codon 74 mutation.

CD4-Positive T-Lymphocytes↗

Disposition of antigen-presenting liposomes in vivo: effect on presentation of herpes simplex virus antigen rgD.

Antigen-presenting liposomes (APLs) containing a lipophilic derivative of muramyl tripeptide (MTP-PE) have previously been shown to enhance the immunotherapeutic effects mediated by HSV recombinant protein gD (rgD) after HSV type 2 infection is established. In this study, both the in vivo disposition of rgD and the immunological activity of in vivo-delivered rgD were determined. Following intravenous administration, most of the liposome-encapsulated rgD accumulated rapidly, mainly in the spleen, while most of the soluble rgD was quickly eliminated through the kidney. We have compared the T-cell stimulatory effects of macrophages, B cells and dendritic cells from the spleens of animals treated with rgD in vivo. Of these antigen-presenting cells, only adherent macrophages, isolated from the spleens of animals treated with rgD encapsulated in APLs for 90 minutes, were capable of stimulating HSV-sensitized autologous T and B cells. Additional in vitro exposure of macrophages to rgD was not required. In contrast, spleen macrophages from HSV-sensitized animals exposed to either empty liposomes or free rgD did not exhibit such immune responses, indicating that the immunobiological effect of the rgD delivered in APLs is antigen- and carrier-specific. The enhanced delivery of antigen to spleen cells, coupled with MTP-PE immunostimulatory activity, may be the key factors for the enhanced therapeutic effects observed in treating HSV-2 disease in guinea pigs. This approach will be useful to enhance the induction of secondary immune responses in postinfection vaccination schemes.

Acetylmuramyl-Alanyl-Isoglutamine↗

Quantitation of human immunodeficiency virus by culture and polymerase chain reaction in response to didanosine after long-term therapy with zidovudine.

Measurements of human immunodeficiency virus by quantitative RNA and DNA polymerase chain reaction (PCR), cell and plasma infectivity dilution cultures, and immune complex-disassociated p24 antigen-capture ELISA were made repeatedly in 10 subjects receiving long-term zidovudine treatment before and after therapy was changed to didanosine. Comparison of baseline assays showed that quantitative cell cultures, plasma RNA, and proviral DNA were measurable in all subjects and that cell culture results were significantly correlated with measures of nucleic acids. Plasma viremia (as indicated by culture) and p24 antigen were detected in three measurements in 3 of 8 and 6 of 10 subjects, respectively. Significant decreases in plasma RNA and cell dilution cultures from baseline were maintained for up to 6 months after initiation of didanosine therapy. These findings demonstrate a decrease in virus burden with the use of didanosine; however, continued detection of plasma RNA suggests that additional antiviral therapy will be required to suppress viral replication.

Adult↗

Deficiency in antibody response to human cytomegalovirus glycoprotein gH in human immunodeficiency virus-infected patients at risk for cytomegalovirus retinitis.

Human immunodeficiency virus (HIV)-infected patients at risk for symptomatic human cytomegalovirus (CMV) infection were studied for serum antibody to CMV glycoproteins gH and gB. Antibody titers to gB in HIV-seropositive patients, irrespective of CD4 cell counts or presence of CMV retinitis, were significantly higher than titers in HIV-seronegative, CMV-seropositive patients but were comparable to titers detected in HIV-seronegative patients with CMV mononucleosis. In contrast, antibody to gH was rarely detected in HIV-seropositive patients with CD4 cell counts > 100/mm3 compared with patients with counts > 100/mm3. The inability to detect gH antibody at a time of high risk for symptomatic CMV retinitis suggests that immune intervention with either gH-specific vaccine or passive immunotherapy may benefit HIV-infected persons at risk for symptomatic CMV disease.

AIDS-Related Opportunistic Infections↗

Failure of short-term CD4-PE40 infusions to reduce virus load in human immunodeficiency virus-infected persons.

The safety, immunologic, and antiviral effects of a recombinant biologic product that combines the second and third domains of the CD4 molecule and Pseudomonas exotoxin A (PE40) were evaluated in 21 human immunodeficiency virus (HIV)-infected subjects in a phase III open-label dose-ranging study. Subjects with CD4+ lymphocyte counts of 100-500/mm3 received CD4-PE40 at 40, 80, or 160 micrograms/m2 by infusion three to seven times over 10 days. At the maximum tolerated dose (80 micrograms/m2), peak CD4-PE40 levels were 65-130 ng/mL with a serum half-life of 3.6 +/- 1.5 h. Toxicity, primarily increased hepatic transaminases, was dose-related and reversible. HIV DNA proviral levels in peripheral blood mononuclear cells and plasma HIV RNA remained stable during and after CD4-PE40 infusions. The relative resistance of clinical isolates of HIV, limits of the tolerated dose, and the immunogenicity and short half-life of the protein may explain the lack of in vivo antiviral effect of CD4-PE40.

ADP Ribose Transferases↗