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Biomedical subjects

D R Lucey

Publications and source records attributed to D R Lucey.

At least 19 recordsLinked to original sources

In vitro immunologic and virologic effects of interleukin 15 on peripheral blood mononuclear cells from normal donors and human immunodeficiency virus type 1-infected patients.

Interleukin 15 (IL-15) is a cytokine that shares receptor subunits and functional activity, such as T-cell and B-cell stimulation, with IL-2. The effect of IL-2 on immune function and human immunodeficiency virus (HIV) viral load in HIV-infected patients is being actively studied. Thus, we examined how IL-15 compares with IL-2 in several in vitro immunologic and virologic assays in order to explore whether a rationale exists for pursuing initial clinical therapeutic trials with IL-15. The effects of IL-15 on induction of lymphokine-activated killer (LAK) cells, gamma interferon (IFN-gamma) production from HIV-positive peripheral blood mononuclear cells (PBMCs), and HIV production from PBMCs were studied. Induction of LAK cells by IL-15 was found in eight of eight HIV-positive donors. Incubation of PBMCs from some donors with IL-15 (1, 10, 50, and 100 ng/ml) induced production of IFN-gamma. The effect of IL-15 was compared with that of IL-2 on HIV replication in PBMCs from five HIV-positive patients and four HIV-negative donors whose PBMCs were infected in vitro with HIV. Levels of HIV p24 antigen were moderately lower in the presence of 10 ng of IL-15 per ml than with 10 ng of IL-2 per ml, but they were similar for 100 and 500 ng of each cytokine per ml. In summary, IL-15 can induce LAK cell activity in HIV-seropositive patients and can stimulate IFN-gamma production from PBMCs of some donors. IL-15 stimulates levels of HIV production from PBMCs which are similar to or moderately lower than those obtained with IL-2, depending on cytokine concentration.

Cells, Cultured

High levels of anti-HIV-1 envelope antibodies in cerebrospinal fluid as compared to serum from patients with AIDS dementia complex.

The antibody response to the HIV-1 envelope protein has not been well characterized in patients with AIDS dementia complex (ADC). We evaluated the frequency of antibodies against the HIV-1 envelope in cerebrospinal fluid (CSF) and serum from 21 persons with ADC and 10 symptom-free HIV-1-positive subjects using Western immunoblot with reducing and nonreducing buffer and radioimmunoprecipitation (RIP) analysis. RIP analysis revealed anti-envelope antibodies in all sera tested. Higher anti-envelope levels were observed in CSF than in serum of 12 of 21 ADC patients and only 1 of 10 symptom-free subjects (two-sided Fisher exact test, p < 0.05). All persons with moderate to severe ADC had higher anti-envelope levels in CSF than in sera (p < 0.005). CSF anti-gp120 antibodies were not as readily detected by Western blot analysis even under nonreduced conditions, suggesting that they are directed to conformational epitopes. Higher CSF anti-envelope antibodies appear to be more common in patients with ADC than in symptom-free HIV-1-positive subjects. This antibody pattern may serve as a marker for ADC and its progression.

AIDS Dementia Complex

Interleukin-15 mRNA is expressed by human keratinocytes Langerhans cells, and blood-derived dendritic cells and is downregulated by ultraviolet B radiation.

Interleukin (IL)-15 is a recently described cytokine that shares many functional activities with IL-2; however, unlike IL-2, IL-15 is produced by monocytes/macrophages, and not by lymphocytes. In this report, we assessed IL-15 mRNA expression by freshly isolated human epidermal cells, as well as by negatively selected keratinocytes and positively selected Langerhans cells, utilizing reverse transcription and polymerase chain reaction. In addition, cultured keratinocytes, immortalized keratinocytes (HaCaT cells), and dendritic cells expanded from adult peripheral blood in the presence of granulocyte/macrophage-colony stimulating factor and IL-4 were examined for IL-15 transcripts. Using cultured keratinocytes, we also studied the regulation of IL-15 mRNA expression by ultraviolet B radiation in vitro. Freshly isolated keratinocytes, HaCaT cells, and cultured keratinocytes all constitutively expressed IL-15 mRNA, and IL-15 expression was downregulated by ultraviolet B radiation in cultured keratinocytes in a time- and dose-dependent manner. In addition, IL-15 transcripts were constitutively expressed by freshly isolated Langerhans cells. IL-15 produced by keratinocytes, Langerhans cells, and other tissue-specific dendritic cells may be important in attracting and activating antigen-specific Th1 T cells. Furthermore, ultraviolet B-induced downregulation of keratinocyte IL-15 production may contribute to the relative state of immunosuppression induced by sun exposure.

Adult

Type 1 and type 2 cytokine dysregulation in human infectious, neoplastic, and inflammatory diseases.

In the mid-1980s, Mosmann, Coffman, and their colleagues discovered that murine CD4+ helper T-cell clones could be distinguished by the cytokines they synthesized. The isolation of human Th1 and Th2 clones by Romagnani and coworkers in the early 1990s has led to a large number of reports on the effects of Th1 and Th2 on the human immune system. More recently, cells other than CD4+ T cells, including CD8+ T cells, monocytes, NK cells, B cells, eosinophils, mast cells, basophils, and other cells, have been shown to be capable of producing "Th1" and "Th2" cytokines. In this review, we examine the literature on human diseases, using the nomenclature of type 1 (Th1-like) and type 2 (Th2-like) cytokines, which includes all cell types producing these cytokines rather than only CD4+ T cells. Type 1 cytokines include interleukin-2 (IL-2), gamma interferon, IL-12 and tumor necrosis factor beta, while type 2 cytokines include IL-4, IL-5, IL-6, IL-10, and IL-13. In general, type 1 cytokines favor the development of a strong cellular immune response whereas type 2 cytokines favor a strong humoral immune response. Some of these type 1 and type 2 cytokines are cross-regulatory. For example, gamma interferon and IL-12 decrease the levels of type 2 cytokines whereas IL-4 and IL-10 decrease the levels of type 1 cytokines. We use this cytokine perspective to examine human diseases including infections due to viruses, bacteria, parasites, and fungi, as well as selected neoplastic, atopic, rheumatologic, autoimmune, and idiopathic-inflammatory conditions. Clinically, type 1 cytokine-predominant responses should be suspected in any delayed-type hypersensitivity-like granulomatous reactions and in infections with intracellular pathogens, whereas conditions involving hypergammaglobulinemia, increased immunoglobulin E levels, and/or eosinophilia are suggestive of type 2 cytokine-predominant conditions. If this immunologic concept is relevant to human diseases, the potential exists for novel cytokine-based therapies and novel cytokine-directed preventive vaccines for such diseases.

Antigen Presentation

Functional studies of epidermal Langerhans cells and blood monocytes in HIV-infected persons.

APC dysfunction may be important in immune dysregulation associated with HIV disease. Langerhans cells, epidermal APC, can be infected with HIV, although their function in HIV-infected persons has not been studied. Therefore, we studied the immunologic function of Langerhans cells, in parallel with blood APC (enriched for monocytes/macrophages (M phi) function, in 21 HIV-seropositive (HIV+) and 21 HIV-seronegative volunteers, including three monozygotic twin pairs discordant for HIV serology. Langerhans cells from HIV+ patients were quantitatively normal and expressed normal levels of HLA-DR. However, Langerhans cells from AIDS patients and M phi from both AIDS and HIV+ non-AIDS patients stimulated allogeneic T cells less well compared with control APC. In addition, decreased recall Ag- and mitogen-induced T cell responsiveness was observed in HIV+ patients using either autologous Langerhans cells or autologous M phi as APC/accessory cells. Interestingly, Langerhans cells and M phi isolated from HIV+ twins (CD4+ cell counts of 181, 271, and 562/mm3) were able to present recall Ag normally to HIV-uninfected syngeneic T cells. In summary, APC from HIV+ patients were impaired in their ability to generate a primary immune response (i.e., alloantigen-induced T cell stimulation), but they retained the ability to generate a secondary immune response (i.e., recall Ag-induced syngeneic T cell stimulation). Thus, these findings suggest that defects in secondary immune responses commonly observed in HIV disease are dependent on T cell dysfunction alone, whereas defective primary immune responses may be secondary to both T cell and APC dysfunction.

Adult

Infection, apoptosis, and killing of mature human eosinophils by human immunodeficiency virus-1.

Although human eosinophils express low concentrations of CD4, the capacity of mature, non-replicating eosinophils to be infected with human immunodeficiency virus-1 (HIV-1) has not been established. Using peripheral blood eosinophils isolated free of contaminating lymphocytes and mononuclear leukocytes, we evaluated eosinophil infection with HIV-1. Eosinophils could be infected with strains of HIV-1 as evidenced by HIV-induced cytolytic effects, progressive release of p24 antigen in cultures of infected eosinophils, recovery of HIV from infected eosinophils by co-cultivation, and detection of HIV-1 gag viral DNA from infected eosinophils by polymerase chain reaction (PCR) amplification. Greater p24 antigen release from infected eosinophils was elicited by the phorbol ester, PMA; and eosinophil killing by HIV-1 was enhanced by the cytokine GM-CSF. By light and electron microscopy, HIV-infected eosinophils demonstrated apoptosis and necrosis. Apoptotic subdiploid nuclear staining was detected by flow cytometric analyses of propidium iodide-stained nuclei from HIV-infected eosinophils, and DNA isolated from HIV-infected eosinophils showed both nucleosomal fragmentation and diffuse degradation. Thus, mature eosinophils, non-replicating terminally differentiated leukocytes, can be infected with HIV-1. HIV-1 expression in eosinophils is promoted by increased granulocyte-macrophage colony-stimulating factor (GM-CSF) and can cause eosinophils to undergo death due to apoptosis and necrosis.

Apoptosis

Characterization of substance P binding to human monocytes/macrophages.

Substance P (SP), a member of the tachykinin family of neuropeptides, can immunomodulate human T cells and monocytes. SP has been shown to stimulate human monocytes to produce inflammatory cytokines and superoxide ions, and it enhances tumoricidal activity in vitro. A specific SP receptor, however, has not been identified on human monocytes/macrophages. In this study, we report that 125I-SP binds to human monocytes/macrophages with high affinity and specificity (Kd = 2.7 x 10(-8) to 5.5 x 10(-8) M). Our measurements of binding affinity to this single class of receptors were possible only when experiments were performed in the presence of excess serine proteinase inhibitor (serpin) enzyme complex receptor ligand. We determined that 125I-SP bound to a specific receptor on human monocytes/macrophages and that this binding was detectable as early as 6 h and was maintained throughout 6 to 8 weeks in culture. Modulation of the diverse immunological and inflammatory effects of SP on human monocytes may be mediated through this specific SP receptor.

Humans

Restoration of HIV-specific cell-mediated immune responses by interleukin-12 in vitro.

Peripheral blood mononuclear cells (PBMCs) from many asymptomatic individuals infected with human immunodeficiency virus-type 1 (HIV) are unresponsive as measured by in vitro T cell proliferation and interleukin-2 (IL-2) production to influenza virus and synthetic peptides of HIV envelope (Env). Strong influenza virus- and Env-stimulated IL-2 responses and T cell proliferation were restored when cultures were stimulated in the presence of IL-12. Interferon-gamma production by PBMCs from HIV seropositive (HIV+) patients was also restored with IL-12. Furthermore, in vitro antigen-specific production of IL-2 and proliferation of PBMCs from HIV- donors were suppressed by antibody to IL-12, but were not enhanced by addition of exogenous IL-12. Thus, IL-12 may be limiting in PBMCs from HIV+ but not HIV- individuals. These findings demonstrate that IL-12 can restore HIV-specific cell-mediated immunity in vitro in HIV-infected individuals and suggest a potential use of IL-12 in augmenting the diminished immunologic functions associated with HIV infection.

Cells, Cultured

Total lymphocyte count as a predictor of absolute CD4+ count and CD4+ percentage in HIV-infected persons.

OBJECTIVE: To determine whether the total lymphocyte count (TLC) accurately predicts a low absolute CD4+ T-cell count and CD4+ percentage in persons infected with human immunodeficiency virus (HIV). DESIGN: Retrospective analysis of data collected in the US Air Force HIV Natural History Study. SETTING: Military medical center that performs annual medical evaluation of all HIV-infected US Air Force personnel. PATIENTS: A total of 828 consecutive patients with no prior history of zidovudine use, evaluated from January 1985 through July 1991. For patients with multiple observations over time, a single data point within each 6-month interval was included in the analysis (N = 2866). MEASUREMENTS AND MAIN RESULTS: The sensitivity, specificity, and likelihood ratio (LR) of the TLC, in the range of 1.00 x 10(9)/L to 2.00 x 10(9)/L, in predicting an absolute CD4+ T-cell count less than 0.20 x 10(9)/L or a CD4+ percentage less than 20% were calculated. In addition, the LR and pretest probability of significant immunosuppression were used to calculate posttest probabilities of a low CD4+ count for a given TLC value. The LR of the TLC in predicting an absolute CD4+ count < 0.20 x 10(9)/L increased from 2.4 (95% confidence interval, 2.2 to 2.5) for all TLCs less than 2.00 x 10(9)/L, to 33.2 (95% confidence interval, 24.1 to 45.7) for all TLCs less than 1.00 x 10(9)/L. The specificity for this prediction increased from 57% to 97% over this range. The LR also increased from 1.4 (95% confidence interval, 1.3 to 1.6) for all TLCs less than 2.00 x 10(9)/L to 9.7 (95% confidence interval, 7.1 to 13.1) for all TLCs less than 1.00 x 10(9)/L in predicting a CD4+ percentage less than 20%. CONCLUSIONS: The TLC, between 1.00 x 10(9)/L and 2.00 x 10(9)/L, appears to be a useful predictor of significant immunosuppression as measured by a CD4+ T-cell count less than 0.20 x 10(9)/L in HIV-infected persons. The LR for a given TLC value and the pretest probability of immunosuppression can be used to determine the posttest probability of significant immunosuppression in individual patients. For example, in a patient with a TLC less than 1.50 x 10(9)/L and a pretest probability of 16%, the posttest probability of a low CD4+ T-cell count increases to 53%. In contrast, a TLC greater than 2.00 x 10(9)/L in an individual with a pretest probability of 30% will decrease the posttest probability of a low CD4+ T-cell count to less than 4%. Physicians should find these data useful to help predict the risk for opportunistic infection among HIV-infected persons who present with syndromes that are potentially compatible with opportunistic infection but who have not had recent or prior CD4+ T-cell analysis.

Adolescent

Pulmonary eosinophils express HLA-DR in chronic eosinophilic pneumonia.

BACKGROUND: Chronic eosinophilic pneumonia is a rare idiopathic disorder. role the eosinophil plays in the pathogenesis of this disease is unknown. The recent finding that nature eosinophils can express the class II major histocompatibility complex molecule HLA-DR suggests an immunologic role, perhaps through antigen presentation. The purpose of this research was to determine whether lung-derived eosinophils exhibit in vivo expression of HLA-DR. METHODS: Eosinophils were obtained simultaneously from bronchoalveolar lavage and peripheral blood from a 59-year-old woman with asthma and chronic eosinophilic pneumonia. Eosinophil-enriched aliquots of peripheral blood were cocultured with human lung fibroblasts (with or without additional granulocyte-macrophage colony-stimulating factor). The percentage of cells expressing HLA-DR was quantitated by flow cytometric analysis. RESULTS: Eosinophils derived from bronchoalveolar lavage displayed in vivo expression of HLA-DR (86%) in contrast to those from peripheral blood (7%), suggesting compartmentalization of eosinophil activation within the lung. Peripheral blood eosinophils retained the capacity for HLA-DR expression when coincubated with lung fibroblasts (83%) with augmentation by granulocyte-macrophage colony-stimulating factor (93%). CONCLUSION: These data demonstrate that lung eosinophil HLA-DR expression occurs in vivo; it may contribute to the pathogenesis of inflammatory lung injury.

Bronchoalveolar Lavage Fluid

Early markers of HIV infection and subclinical disease progression.

Human immunodeficiency virus (HIV) infection in US Air Force personnel between 1985 and 1989 was examined through a mandatory serological survey, and through annual examination of infected patients. CD4+ cell counts were determined by flow cytometry; beta 2 microglobulin and neopterin were measured by immunoassay. During this period 933 cases were found, of which 161 were documented seroconversions, giving an incidence rate of 15.6/100,000 person-years. For patients with > 400 CD4 cells microliters-1, the rate of initial occurrence of opportunistic infection was 1 and 4% at 1 and 2 years, respectively. HIV-infected persons with < 400 CD4+ cells microliters-1, in contrast, had rates of 21% at 1 year and 36% at 2 years. In a cross-sectional study, beta 2 microglobulin concentration was shown to increase in both the serum and spinal fluid of patients infected with HIV as their blood CD4 numbers declined. Neopterin levels in serum and spinal fluid showed a similar trend, with significantly lower neopterin concentrations in the group that had > 1000 CD4+ T cells compared to the 0-600 CD4+ cell group. Longitudinal studies included correlation of HIV p24 antigen with CD4 counts over a 1 year period. The p24 antigen-positive group had a 21% decline in CD4+ T cells, while the antigen-negative group had a 14% decline. Specific helper T-cell subsets were also examined over a 6 month period. A significant decline was seen in the CD4+/CD29+, CD4+/CD45R+, and overall CD4+ subsets which was not seen in AZT-treated patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Aerospace Medicine

Cerebrospinal fluid neopterin levels in 159 neurologically asymptomatic persons infected with the human immunodeficiency virus (HIV-1): relationship to immune status.

Monocytes and brain macrophage-microglial cells are thought to play a crucial role in the neurologic dysfunction associated with HIV-1 disease. Since neopterin is produced by monocytes-macrophages, we asked whether cerebrospinal fluid (CSF) neopterin levels increase before the onset of HIV-1 neurologic disease and whether they correlate with other CSF and peripheral blood immunologic parameters. In this study, CSF neopterin levels from 159 neurologically asymptomatic HIV-positive persons were found to increase as the blood CD4+ T-cell count decreased and as CSF IgG, IgG synthesis, IgG index, and beta 2-microglobulin increased. Neopterin levels in the CSF exceeded those in the serum in 32% of patients, while 25% had CSF levels > 13.5 nmol/liter. CSF neopterin levels vary with immune status, may reflect intrathecal production, and can be elevated in asymptomatic HIV-positive patients with normal neurologic examinations. Long-term follow-up of this patient population should be able to define the clinical correlation between CSF neopterin levels during the asymptomatic phase of HIV-1 disease and the risk of subsequent neurologic disease.

Biopterins

Clinical gnathostomiasis: case report and review of the English-language literature.

Human gnathostomiasis is most frequently caused by the nematode Gnathostoma spinigerum. This disease is endemic to Southeast Asia, particularly Thailand and Japan. The clinical presentation is most commonly characterized by localized, intermittent, migratory swellings of the skin and subcutaneous tissues, often in association with localized pain, pruritus, and erythema. Since this worm can migrate to deeper tissues, any organ system may become involved. Characteristically, patients with gnathostomiasis have a moderate to severe elevation of the peripheral eosinophil count, with values not uncommonly exceeding 50% of the total white blood cell count. With modern-day travel and immigration, cases of gnathostomiasis are being diagnosed with increased frequency in the United States. Because of its rarity in this country, however, gnathostomiasis often is not included in an initial differential diagnosis despite the characteristic triad of intermittent migratory swelling, a history of travel to Southeast Asia, and eosinophilia. We report a case of cutaneous gnathostomiasis diagnosed in the United States, and we present a clinical review of the English-language literature on human gnathostomiasis.

Adult