PubMed HealthSearch

Biomedical subjects

F T Valentine

Publications and source records attributed to F T Valentine.

At least 19 recordsLinked to original sources

CD4+ blood lymphocytes are rapidly killed in vitro by contact with autologous human immunodeficiency virus-infected cells.

We have investigated the ability of human immunodeficiency virus (HIV)-infected cells to kill uninfected CD4+ lymphocytes. Infected peripheral blood mononuclear cells were cocultured with autologous 51Cr-labeled uninfected cells. Rapid death of the normal CD4-expressing target population was observed following a brief incubation. Death of blood CD4+ lymphocytes occurred before syncytium formation could be detected or productive viral infection established in the normal target cells. Cytolysis could not be induced by free virus, was dependent on gp120-CD4 binding, and occurred in resting, as well as activated, lymphocytes. CD8+ cells were not involved in this phenomenon, since HIV-infected CEMT4 cells (CD4+, CD8- cells) mediated the cytolysis of uninfected targets. Reciprocal isotope-labeling experiments demonstrated that infected CEMT4 cells did not die in parallel with their targets. The uninfected target cells manifested DNA fragmentation, followed by the release of the 51Cr label. Thus, in HIV patients, infected lymphocytes may cause the depletion of the much larger population of uninfected CD4+ cells without actually infecting them, by triggering an apoptotic death.

Apoptosis

Within-subject variation in CD4 lymphocyte count in asymptomatic human immunodeficiency virus infection: implications for patient monitoring.

Changes in CD4 lymphocyte counts are widely used in monitoring human immunodeficiency virus (HIV)-infected patients for disease progression. However, random fluctuations may obscure clinically significant changes. CD4 cell counts from 1020 untreated subjects with asymptomatic HIV infection monitored by standardized methods for up to 2 years were assessed. The within-subject coefficient of variation averaged 25% but was higher in subjects with lower counts; in 6% of subjects the count was half or double the one obtained 8 weeks before. Proportionate rates of decline, which had negligible correlation with the baseline count, averaged 14.3%/year but varied considerably between subjects: An estimated 29% had increasing trends. Declines were greater in HIV p24-positive subjects and those with higher lymphocyte percentages or lower platelet counts or hemoglobin levels. With such high variation, changes between single counts should be interpreted cautiously. Using multiple counts and other markers may provide more precise assessment of immune status.

Acquired Immunodeficiency Syndrome

Didanosine: long-term follow-up of patients in a phase 1 study.

Long-term follow-up of 44 patients with AIDS or AIDS-related complex (ARC) in a phase 1 trial of didanosine is reported. These patients were monitored for as long as 72 weeks (mean, 34 weeks) for toxicity and activity of didanosine. Pancreatitis and neuropathy, the major clinical toxicities, developed infrequently at the doses of didanosine (250-750 mg/d) employed during the latter part of the study. Consistent hematologic toxicity was not encountered; moreover, mean values for hematologic parameters such as hemoglobin concentration, white blood cell count, neutrophil count, lymphocyte count, and platelet count improved for up to 20-60 weeks. CD4 counts increased significantly through 10 weeks of therapy and in some patients remained at or above counts at enrollment for as long as 60 weeks. Serum concentrations of p24 antigen decreased significantly and remained at the decreased level for up to 48 weeks. An initial diagnosis of ARC (as opposed to AIDS), an initial CD4 count of > 100/mm3, and an increase in CD4 counts during the first 10 weeks of therapy were associated with a higher rate of survival and with lower rates of development of opportunistic infections and of other clinical manifestations of disease progression.

AIDS-Related Complex

Relationship between dideoxyinosine exposure, CD4 counts, and p24 antigen levels in human immunodeficiency virus infection. A phase I trial.

OBJECTIVE: To determine the relation between exposure to dideoxyinosine (ddl) and increased CD4 cell counts and suppression of serum p24 antigen in patients infected with the human immunodeficiency virus (HIV). DESIGN: Open-label, phase I study. SETTING: Two university hospitals. Patients were studied in both inpatient and outpatient settings. PATIENTS: Of 36 HIV-infected patients enrolled, 18 had adequate pharmacokinetic information for analysis. INTERVENTION: Dideoxyinosine was administered intravenously every 12 hours for 2 weeks. Patients were switched to oral administration at twice the intravenous dose. Pharmacokinetic profiles were obtained twice during each period. A 40-fold range of dose was examined. MEASUREMENTS: CD4-positive T-lymphocyte counts and serum p24 antigen levels were determined. Plasma area under the ddl concentration-time curve was determined for a single dose and at steady state. RESULTS: Increases in CD4-positive T-lymphocyte counts were independent of ddl exposure and were proportional to the starting CD4 count. Suppression of circulating p24 antigen was influenced by cumulative exposure to ddl and was statistically significant. CONCLUSIONS: The CD4-positive T-lymphocyte count increased at low ddl concentrations or exposures; the extent of this increase was directly proportional to the patient's CD4 count at the start of therapy. Suppression of p24 antigen was related to cumulative exposure to ddl. Therapeutic responses can probably be obtained with ddl, while minimizing long-term toxicity, using daily doses of 10 mg/kg body weight, or less.

Administration, Oral

Population pharmacokinetic analysis of didanosine (2',3'-dideoxyinosine) plasma concentrations obtained in phase I clinical trials in patients with AIDS or AIDS-related complex.

Plasma didanosine concentration data from 36 patients receiving once-a-day therapy and from 33 patients receiving twice-a-day therapy were subject to population pharmacokinetic analysis with the computer program NONMEM. Once- or twice-a-day regimens of didanosine were administered intravenously (i.v.) (dose: 0.8-33 mg/kg) during the first 2 weeks of therapy, and orally (dose: 1.6-66 mg/kg) for the remaining 4 weeks of therapy. Plasma pharmacokinetics were determined after the first and last (steady-state) i.v. and oral doses. Population pharmacokinetic parameters for the combined i.v. and oral steady-state data were (mean [%CV]): systemic clearance, CL, 0.70 (5.2) L/h/kg; central compartment volume, Vc, 0.18 (32) L/kg; steady-state distribution volume, Vdss, 0.84 (6.8) L/kg; first-order absorption rate constant, Ka, 1.3 (9.5) hr-1; and bioavailable fraction, F, 0.34 (8.5). Interindividual variability (omega) was (%CV) 22.3 and 71.0 for CL and Vc, respectively. Intraindividual (residual) variability (sigma) in plasma concentrations (%CV) was 50.2. Body weight, sex, and age did not account for the variability in either CL or Vc, and the use of alternate pharmacokinetic models did not reduce the value of intraindividual variability. Population parameters for the combined i.v. and oral first-dose data were generally similar to those for the steady-state data. The parameters can be used to design dosing regimens in patients using the Bayesian feedback approach.

AIDS-Related Complex

Lymphocytes from some long-term seronegative heterosexual partners of HIV-infected individuals proliferate in response to HIV antigens.

A comparison of the proliferative responses of lymphocytes to human immunodeficiency virus (HIV) antigens from long-term, seronegative heterosexual partners of HIV-infected subjects, from normal unexposed controls and from healthy seropositive heterosexual partners or seropositive, asymptomatic men, reveals that lymphocytes from healthy seropositive individuals with strong proliferative responses to recall, microbial antigens respond only minimally to HIV proteins or envelope peptides, and that even these low responses do not occur in all individuals. If the frequency of responses to several HIV antigens are analyzed, lymphocytes from both HIV-exposed seropositive and seronegative partners of infected individuals proliferate to HIV antigens to a greater degree than lymphocytes from unexposed, normal control individuals. Although lymphocytes from seropositive partners proliferate to a greater degree than those from seronegative partners, the latter are more similar to seropositive partners than they are to normal controls. This observation suggests that these seronegative partners may have become sensitized to HIV antigens through sexual exposure but without infection, and/or that the presence or development of these small immune responses in some individuals might be associated with a failure to become infected.

Female

Pancreatitis and pancreatic dysfunction in patients taking dideoxyinosine.

OBJECTIVE: To describe the incidence, clinical characteristics and dose relationship of dideoxyinosine (ddI)-associated pancreatitis. DESIGN: Patients enrolled in a Phase I dose escalation trial of ddI [AIDS Clinical Trials Group (ACTG) 064] were evaluated for signs and symptoms of pancreatic dysfunction. SETTING: Two ACTG sites. PATIENTS: Forty-four patients with AIDS or AIDS-related complex (ARC) and a CD4 cell count less than or equal to 400 x 10(6)/l. MAIN OUTCOME MEASURES: Seven patients developed pancreatitis that lasted from 1 to 7 weeks and varied in severity from mild to life-threatening. Seven other patients had evidence of hyperamylasemia or hypertriglyceridemia. Six patients who developed pancreatitis were able to tolerate rechallenge with lower doses of ddI. RESULTS: Development of pancreatitis correlated with cumulative dose of ddI but not with stage of disease or concomitant medications. Cumulative dose was not significantly associated with development of hyperamylasemia or hypertriglyceridemia in patients without clinical pancreatitis. CONCLUSIONS: The development of pancreatitis in AIDS or ARC patients receiving ddI varies in severity and time course and is associated with cumulative dose. Patients who develop pancreatitis may be able to tolerate therapy with a lower dose after resolution of their symptoms. Patients receiving ddI require careful monitoring for the development of this complication.

Acquired Immunodeficiency Syndrome

Impact of bioavailability on determination of the maximal tolerated dose of 2',3'-dideoxyinosine in phase I trials.

The objective of this study was to determine the population pharmacokinetic parameters and the extent of absorption of 2',3'-dideoxyinosine, a nucleoside analog with activity against human immunodeficiency virus in vitro and in vivo, after oral and intravenous administration through the use of NON-linear Mixed Effects Modeling. The data were drawn from the pharmacokinetics section of an open-label, multicenter phase I study. One center administered ddI on a once-daily schedule. The other centers administered the drug once every 12 h. Drug was administered intravenously, and the plasma concentration-time profile was determined. Patients were then given the drug orally at twice the dose used in the intravenous portion of the study, and the pharmacokinetic profile was again determined. A 40-fold range of doses was examined. Forty-six human immunodeficiency virus-infected patients were studied. Concentrations in plasma were determined by high-pressure liquid chromatography. Clearance of the drug from plasma was 47.7 liters/h/70 kg of body weight. The terminal half-life was 1.4 h. The volume of distribution in the central compartment was 18.8 liters/70 kg. Absorption was rapid, with an absorption half-life of 0.52 h. Bioavailability with once-daily administration was 27%. For twice-daily administration, bioavailability rose to 36%. This difference was significant (P much less than 0.01). For doses of less than or equal to 5.1 mg/kg given every 12 h (10.2 mg/kg/day), bioavailability was 41%. We conclude that once-daily administration results in lower mean bioavailability, probably because of a saturation of the absorption process similar to that seen with acyclovir. This difference in bioavailability on the basis of the administration schedule explains the different short-term maximal tolerated doses identified in phase I trials of this agent.

Acquired Immunodeficiency Syndrome

Pharmacokinetics of didanosine in patients with acquired immunodeficiency syndrome or acquired immunodeficiency syndrome-related complex.

The pharmacokinetics of didanosine (2',3'-dideoxyinosine) after intravenous and oral administration were evaluated in an open, escalating-dose phase I study in patients with acquired immunodeficiency syndrome (AIDS) or severe AIDS-related complex. Didanosine was administered twice a day for 2 weeks as an intravenous infusion of 60 minutes duration at doses ranging from 0.4 to 16.5 mg/kg, followed by 4 weeks of oral treatment at twice the intravenous dose. Serial blood and urine samples were obtained on the first and final day of intravenous administration and after the first oral dose, as well as at steady state. Didanosine demonstrated linear pharmacokinetic behavior over the dose ranges of 0.4 to 16.5 mg/kg intravenously and 0.8 to 10.2 mg/kg orally. There was no indication of significant changes in pharmacokinetic parameters with repeated administration. The apparent elimination half-life after oral administration was approximately 1.4 hour. Renal clearance values exceeded the glomerular filtration rate, indicating that active tubular secretion of didanosine occurs. Bioavailability of didanosine when administered as a solution with an antacid was approximately 43% for doses from 0.8 to 10.2 mg/kg in patients with AIDS and advanced AIDS-related complex. Bioavailability of didanosine from the citrate-phosphate-buffered solution, the formulation currently used in phase II and expanded access studies, was comparable to the formulation used in the phase I trials.

AIDS-Related Complex

2',3'-dideoxyinosine (ddI) in patients with the acquired immunodeficiency syndrome or AIDS-related complex. A phase I trial.

2',3'-Dideoxyinosine (ddI) is a purine analogue that after intracellular metabolic conversion suppresses the replication of the human immunodeficiency virus (HIV). We conducted a Phase I dose-escalation study of ddI in 17 patients with the acquired immunodeficiency syndrome (AIDS) and 20 patients with AIDS-related complex. The drug was administered twice daily over a dose range of 0.4 to 66 mg per kilogram of body weight per day for 2 to 44 weeks. The maximal tolerated oral dose of ddI was estimated to be 12 mg per kilogram per day. The major dose-limiting toxic effects were a painful peripheral neuropathy (in eight patients) and pancreatitis (in five). Asymptomatic elevations of the serum aminotransferase levels (in 13 patients) and the serum urate level (in 10) were also noted, but there was no dose-related hematologic toxicity. At the maximal tolerated dose, the peak plasma levels of ddI were 6.3 to 9.6 mumol per liter 0.6 to 1 hour after oral administration; the mean plasma half-life was 1.5 hours. The administration of ddI was associated with statistically significant decreases in serum level of p24 antigen and increases in the numbers of CD4 cells at 2, 6, 10, and 20 weeks. These changes were seen at all dose levels studied. Either a clinical improvement or a weight gain of greater than or equal to 2 kg was observed in 25 of 34 patients at six weeks. We conclude that ddI is a promising therapeutic agent in patients with AIDS or AIDS-related complex. Its efficacy is currently being evaluated in large-scale, controlled clinical trials.

AIDS-Related Complex

The proliferative response of human lymphocytes to antigen is suppressed preferentially by lymphocytes precultured with the same antigen.

Human blood lymphocytes activated in vitro with antigen to which the donor is reactive are capable of suppressing the secondary proliferative response of autochthonous fresh cells to antigen. Both antigen-specific and antigen-nonspecific suppression can be detected in each experiment. These suppressor cells act by decreasing the number of lymphocytes entering the proliferative response rather than by slowing or otherwise inhibiting ongoing proliferation. The suppressor cells must be added soon after fresh cells are stimulated with antigen to be effective, but the suppressor cells themselves need not proliferate to exert their effect. Suppressor cells are optimally effective when added in numbers equal to those of the responding population, but still exert a significant effect at one-eighth that number.

Antigens

Requirement of precommitted cells as targets for the augmentation of lymphocyte proliferation by leukocyte dialysates.

After our initial report tha leukocyte dialysates containing transfer factor augment the thymidine incorporation of antigen-stimulated lymphocytes, we have adapted the system to microleukocyte cultures. This modification permits both (a) the simultaneous assay of a single dialysate on the cells of multiple individuals, and (b) the assay of multiple dialysates on the cells of a single individual. The data thus secured, demonstrate that dialysates from both skin-test-positive and -negative donors produced similar degrees of augmentation whether the data are expressed as an arithmetic difference or as a ratio. When expressed as an arithmetic difference, the amount of augmentation is increased in proportion to the level of thymidine incorporation of the assay cells when they were stimulated by antigen alone. When expressed as a ratio, however, the degree of augmentation is independent of the response of the assay cells. An analysis of the ability of dialysates to engage previously uncommitted lymphocytes and thus to augment thymidine incorporation, revealed that precommitted cells were required. In these experiments, antigen-reactive cells were deleted from populations of peripheral blood lymphocytes by incubation with purified protein derivative of tuberculin, diphtheria toxoid, or streptokinase-streptodornase in the presence of [3H]thymidine of high specific activity. This deletion depressed or abolished the effect of dialysate on the residual population when it was recultured with the same antigen, but the effect on the response of the remaining lymphocytes to other antigens was unaltered. In this study, leukocyte dialysate appeared to augment nonspecifically the thymidine incorporation of an antigen-specific precommitted clone of lymphocytes. The relationship of these adjuvant effects on peripheral blood lymphocytes in vitro to the specific and nonspecific activities of transfer factor in vivo remains to be elucidated.

Adjuvants, Immunologic

A micromethod for evaluating the phagocytic activity of human macrophages by ingestion of radio-labelled polystyrene particles.

Studies in vitro of human macrophage function in health and disease have been impeded by the difficulty of obtaining such cells in sufficient number. Unlike animal species, the only readily available source of human macrophages are circulating monocytes. Herein, a method is described whereby the phagocytic rate of small numbers of glass-adherent mononuclear cells can be accurately measured. The method utilizes the ingestion by macrophages of technetium labelled polystyrene particles; both the radiolabel and ingestible substrate are readily available and the labelling process simple and efficient. The phagocytic rate can be expressed as radioactive counts per microgram of cell protein; data is also presented showing that the number of particles ingested per cell can be accurately derived.

Blood Cell Count

In vitro properties of leukocyte dialysates containing transfer factor.

The chief impediment to the precise biochemical identification of transfer factor and its mechanism of action has been the lack of a reproducible in vitro assay. We now report on a method by which dialysates containing transfer factor of proven in vivo potency can convert nonimmune lymphocytes to immune responsiveness in vitro, as reflected by antigen-triggered lymphocyte proliferation. However, "water-dialyzed transfer factor" (TF(D)) prepared for in vivo use by the conventional method of dialysis against large volumes of water exhibits diminished activity in vitro and is frequently toxic to lymphocyte cultures. This problem can be avoided by dialysis of transfer factor into tissue culture medium. When this precaution is taken, such "media-dialyzed transfer factor" (TF(DM)) causes nonimmune lymphocytes to respond to antigen by an increment of thymidine incorporation that ranges from 2 to 25 times that of such cells cultured with antigen alone. This response is generally observed only in the presence of those antigens to which the TF(DM) donor expresses delayed cutaneous reactivity and is distinguishable from nonspecific adjuvant effects.

Adjuvants, Immunologic