Biomedical subjects
B McRae
Publications and source records attributed to B McRae.
Immune response to HIV p24 core protein during the early phases of human immunodeficiency virus infection.
The immune response to the p24 core antigen of human immunodeficiency virus type 1 (HIV-1) was studied in serial samples collected prospectively from 52 homosexual males in two separate cohorts from Amsterdam and San Francisco. p24 antibody levels were quantified with an antigen sandwich immunoassay using p24 recombinant antigen as capture and probe. Titers and slopes of dilution curves reflecting antibody affinity were analyzed. Only 45 of 52 men developed a measurable primary immune response to p24. In 17 (33%) patients there was a low response with maximum antibody titer below 66, shallow (low affinity) dilution curve, and 10 of the 17 became HIV antigen positive over a 2 year period. In 24 (46%) of the 52 patients titers ranged from 100-4000, steeper dilution curves were noted, and none became HIV antigen positive. Four (8%) men developed a strong immune response with high titers (greater than 12,000) and high affinity type dilution curve. Over time, after the peak immune response, antibody titer declined in some individuals related in part to the formation of immune complexes between HIV-1 p24 antigen and antibody which were dissociable. In vitro, the addition of increasing amounts of purified p24 antigen corresponded to decreasing antibody titer and a shallower dilution curve suggesting a preferential consumption of high affinity antibodies for complex formation. The magnitude of immune response to HIV-1 p24 antigen varies widely in infected homosexual men. Both the intrinsic ability to mount an immune response and immune complex formation contribute to the measurable antibody level.
The initial immune response to HIV and immune system activation determine the outcome of HIV disease.
A study was conducted to assess the relative contribution of the HIV-1-specific immune response and -nonspecific immune activation to HIV disease progression. The titer of antibody to the p24 core protein and the concentration of serum neopterin were measured in 238 HIV-1-seropositive subjects in a prospective cohort study of homosexual men. Antibody titers were extremely variable among cohort participants but relatively stable over time, suggesting inherent differences in the initial immune response capacity. Neopterin concentrations were also variable at cohort entry but generally increased over time. These two markers, measured at cohort entry, had powerful and independent predictive value for the development of AIDS up to 54 months before diagnosis. Subjects with low antibody titers and high levels of neopterin, had the highest incidence of AIDS (60% over 54 months). Patients with low antibody or high neopterin alone had an intermediate risk (34% incidence) and less than 10% of those with high antibody and low neopterin developed AIDS. We propose that the initial immune response to HIV and virus-mediated immune system activation are independent and innately variable components of an individual's response to HIV infection that interact to determine the clinical outcome.
Fluorescent probes for peripheral-type benzodiazepine receptor visualization and localization.
Explore the source record for details and available documents.
Effects of selenium in vitro on human T-lymphocyte functions and K-562 tumor cell growth.
In vitro E-rosette formation, lymphocyte mitogenesis, and natural killer (NK) cell activity of human blood lymphocytes were strongly inhibited by high concentrations (10(-4) M) of sodium selenite, sodium selenate, and selenium dioxide. Lower concentrations (10(-5) or 10(-7) M) also inhibited E-rosette formation and natural killer cell activity against K-562 tumor cells. Lymphocyte transformation induced by concanavalin A (con A) or pokeweed mitogen (PWM) was also inhibited by all selenium compounds tested, but only at the highest concentrations (10(-5) and 10(-4) M). There was depression of the total number of viable lymphocytes following incubation with selenium dioxide only at a high concentration (10(-4) M). Interferon production was enhanced at lower levels (10(-9) to 10(-6)M) of selenium dioxide while a higher concentration (10(-5) and 10(-4)M) appeared to inhibit its production. The mechanism of inhibition by selenium compounds (10(-4) M) is due, in part, to the decrease of viable lymphocytes. It is unclear how other and lower concentrations (10(-7) or 10(-9) M) of selenium compounds inhibit E-rosette formation, NK activity, or K-562 tumor cell growth.