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Biomedical subjects

S Ratto-Kim

Publications and source records attributed to S Ratto-Kim.

4 recordsLinked to original sources

Repeated immunization with recombinant gp160 human immunodeficiency virus (HIV) envelope protein in early HIV-1 infection: evaluation of the T cell proliferative response.

This longitudinal study was designed to evaluate cellular immunity in early-stage, asymptomatic human immunodeficiency virus (HIV)-1-infected persons (CD4 cell count,>400/mm3; median, 625/mm3) who were immunized with either recombinant (r) gp160 or placebo every 2 months for 5 years. Proliferative responses were assessed against rgp160, rp24, and a panel of recall antigens and mitogens. Despite good reactivity to recall antigens, at baseline approximately 33% had proliferative responses to gp160, and approximately 42% showed p24 gag responses. There was no statistical difference between vaccine and placebo groups for antigens or mitogens. After 1 year, approximately 73% of the subjects in the vaccine arm had new or boosted responses to gp160, versus approximately 18% in the placebo arm. Statistical significance was maintained throughout the study. Recurrent vaccination with recombinant gp160 was proven to be persistently immunogenic, increasing significantly the ability of HIV-1-infected persons to mount new proliferative responses to the vaccine.

AIDS Vaccines

Comparison of HIV-1 envelope-specific CD4+ T cell lines simultaneously established from peripheral blood mononuclear cells and lymph node biopsy in HIV-1-infected individuals.

HIV-1 envelope-specific CD4+ T cell lines were established simultaneously from PBMC and lymph node mononuclear cells of two HIV-1-infected patients. Three recombinant envelope proteins were used to establish the CD4+ T cell lines: gp160NL4-3, gp120IIIB, and gp120MN. Six T cell lines were established from the first patient, one for each Ag from each compartment, and four T cell lines, two per compartment, were established from the second patient. Each line was challenged with a panel of overlapping peptides spanning the entire gp120 sequence to define its T cell epitope specificity. The pattern of recognition for all the lines from any given patient was similar between compartments. Each patient had a different pattern of peptide recognition. TCR analysis showed a heterogeneous usage of Vbeta between lines with same peptide specificity and established from different compartments. These data suggest that the cellular immune response does not phenotypically vary between the peripheral blood and lymph node compartments, but demonstrates genotypic heterogeneity, showing possible redundancy of the immune response to HIV-1 gp160.

Acquired Immunodeficiency Syndrome

Delayed-type hypersensitivity skin testing using third variable loop peptides identifies T lymphocyte epitopes in human immunodeficiency virus-infected persons.

Cellular immune responses to human immunodeficiency virus type 1 (HIV-1) infection, particularly in vivo responses, have been difficult to study in large patient cohorts because of technical impediments. By use of small peptide fragments of the HIV-1 gp120 third variable loop, the CD4 T lymphocyte epitopes of 2 HIV-infected persons were mapped using a cutaneous delayed-type hypersensitivity (DTH) assay. The in vivo DTH responses correlated with epitopes previously identified in vitro using CD4 T lymphocyte lines. The ability to determine CD4 T lymphocyte epitopes in large cohorts of patients using this simple in vivo technique would provide important diagnostic and prognostic data regarding effective immunoregulation of HIV-1. This technique should have broad applicability in HIV vaccine development and in the investigation of other immune-mediated human diseases.

Amino Acid Sequence

Evolution of human immunodeficiency virus type 1 env sequence variation in patients with diverse rates of disease progression and T-cell function.

We examined the relationship between env sequence variation and disease progression in 10 human immunodeficiency virus type 1 (HIV-1)-seropositive subjects selected from a longitudinal cohort receiving zidovudine therapy. Five subjects were chosen for stable clinical status and CD4 counts (slow progressors), and five were selected for rapid clinical deterioration and CD4 count decline (rapid progressors). The slow progressors had significantly lower plasma viral RNA loads and greater lymphoproliferative responses to mitogens than the rapid progressors. DNA sequences representing the C1 through C3 regions of env were amplified from two peripheral blood mononuclear cell DNA samples from each subject separated by an average of 2.5 years. Molecular clones of these amplicons were then sequenced, and DNA sequence and deduced amino acid sequence distances were compared. Inter-time point sequence comparison showed a higher rate of sequence evolution for the rapid progressors in three of five matched pairs of rapid progressors and slow progressors and for the slow progressors in the remaining two subject pairs. However, intra-time point sequence comparisons showed that four of five slow progressors developed a more diverse quasispecies over time and one showed no change. In contrast, four of five rapid progressors showed no change in quasispecies diversity over time and one showed a significant decrease in diversity. The overall C1 through C3 region quasispecies diversity in the slow progressors at baseline was lower than that for the rapid progressors, but this difference was not significant at the follow-up time points. These diversity relationships were obscured if sequence analyses were limited to the 300-bp C2 to V3 region. Thus, HIV-1 quasispecies diversity increased over time in subjects with more functional immune systems.

Base Sequence