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Biomedical subjects

R Alam

Publications and source records attributed to R Alam.

At least 91 records · Page 5Linked to original sources

Study of the cellular origin of histamine release inhibitory factor using highly purified subsets of mononuclear cells.

We have recently described a specific antagonist of histamine-releasing factors that inhibits histamine release from basophils and mast cells. This histamine release inhibitory factor (HRIF) is produced by PBMC upon stimulation with histamine as well as mitogens such as Con A. The objective of this study was to investigate the cellular origin of HRIF produced by PBMC. Monocytes, T cells, and B cells were isolated to 96 to 99% purity by a combination of plastic adherence, E rosetting, and negative selection with mAb (OKM1, OKT11, OKB7, OKT4, and OKT8) and C. Purified subpopulations were cultured with histamine or Con A and then the processed supernatants were assayed for the inhibition of HRF-induced histamine release from basophils. The results of this study suggest that the highest amount of HRIF is synthesized by B cells followed by T cells and monocytes. The B cell origin of HRIF was confirmed by abolishing the activity after incubation of the cells with OKB7 mAb and C. Both CD4- and CD8- T cells are capable of producing HRIF. In mixing experiments, the synthesis of HRIF by two different subpopulations has been less than additive. T + B cells produced most of the HRIF activity. Monocytes tended to suppress the synthesis of HRIF by B cells. The synthesis of HRIF by so many cell types suggests that a fine balance between HRIF and HRF may regulate the mediator release from basophils and mast cells.

B-Lymphocytes↗

Receptor-mediated uptake and 'retroendocytosis' of high-density lipoproteins by cholesterol-loaded human monocyte-derived macrophages: possible role in enhancing reverse cholesterol transport.

Human monocyte-derived macrophages (MDM) are cholesterol-loaded, and the rates of uptake, degradation and resecretion of high-density lipoproteins are measured and compared to the rates in control cells. Results show the binding activity of these lipoproteins is upregulated in cholesterol-loaded cells; the bound and internalized lipoproteins are not degraded to any appreciable extent but primarily resecreted as a larger particle. The enhancement of binding activity for high-density lipoproteins is arrested when cycloheximide is added to the medium, suggesting that protein synthesis is involved. Preliminary evidence also indicates that HDL3 (without apoE) after internalisation is converted intracellularly to a larger apoE-containing HDL2-like particles. Thus, MDM appears to possess specific receptors for HDL3 without apoE that may function to facilitate HDL-mediated removal of excess cholesterol from cells.

Biological Transport↗

Cellular origin of histamine-releasing factor produced by peripheral blood mononuclear cells.

Histamine releasing factors (HRF) are a group of cytokines that release histamine and other mediators from mast cells and basophils. It has been speculated that HRF might play a major role in the pathogenesis of allergic diseases. Most investigators have studied PBMC as a source of HRF. This study was undertaken to investigate the cellular origin of HRF. Peripheral blood was processed to isolate and purify monocytes, T cells, CD4- T cells, CD8- T cells and B cells by using plastic adherence, 2-aminoethylisothiomonium-treated SRBC rosetting and negative selection with the use of mAb OKM1, OKT11, OKT8, OKT4, and OKB7 plus C. Highly purified subpopulations of PBMC were cultured alone or in the presence of Con A for 24 h. Supernatants were harvested, dialyzed, and assayed for HRF activity in the basophil histamine release test. We found that all subpopulations of PBMC including T cells, CD4- T cells, CD8- T cells, B cells, and monocytes produce variable quantities of HRF. The spontaneous production is very high in B cells but only barely measurable in T cells and monocytes. The synthesis of HRF by B cells was confirmed by abolishing the release of the activity after treatment of B cells with OKB7 mAb and C. Stimulation of cell populations by Con A significantly enhances HRF production by PBMC and T cells but not by B cells and monocytes. In mixing experiments, unstimulated monocytes + B cells showed synergism, but other combinations demonstrated an additive effect. This is the first demonstration of HRF production by human peripheral blood B cells. The results of this study also suggest that histamine releasing cytokines are of multiple cellular origin. This perhaps contributes to their molecular heterogeneity.

Antigens, Differentiation, T-Lymphocyte↗

Comparative effect of recombinant IL-1, -2, -3, -4, and -6, IFN-gamma, granulocyte-macrophage-colony-stimulating factor, tumor necrosis factor-alpha, and histamine-releasing factors on the secretion of histamine from basophils.

Most cytokines possess multiple biologic activities. This study was undertaken to investigate the effect of rIL-1 beta, -2, -3, -4 and -6, IFN-gamma, TNF-alpha, and granulocyte-macrophage (GM)-CSF on basophils from 16 donors and the amount of histamine released was compared with that by partially purified mononuclear cell-derived histamine-releasing factor (HRF) and anti-IgE. We found that only IL-3 and GM-CSF at relatively high doses (50 to 500 ng/ml) released small amounts of histamine (3 to 14%) from two allergic donors. In contrast, both HRF and anti-IgE released significant amounts of histamine from all donors. Other cytokines did not release any measurable quantity of histamine. Simultaneous addition of several cytokines to the basophils also failed to release histamine. IL-3, GM-CSF, and IL-1 can also release histamine at lower concentrations (less than 5 ng/ml) when incubated with basophils in the presence of D2O. Basophils from 6 out of 13 allergic donors released histamine in response to IL-3, whereas three donors responded to IL-1 beta and two responded to GM-CSF. The results of this study demonstrated that although IL-3 and GM-CSF release small amounts of histamine only from a select group of allergic patients, mononuclear cell-derived HRF is more potent in their action and release histamine from normals as well as allergic patients.

Animals↗

The effect of preseasonal immunotherapy on the production of histamine-releasing factor (HRF) by mononuclear cells from patients with seasonal asthma: results of a double-blind, placebo-controlled, randomized study.

The effect of immunotherapy on the production of histamine-releasing factor (HRF) by mononuclear cells (MNC) from patients with seasonal asthma was investigated in a double-blind, placebo-controlled, randomized study. Twenty-four patients with asthma were randomly divided into a placebo-treated group and a grass pollen-treated group. In vitro production of HRF by MNCs and the provocative concentration of histamine that causes 20% fall in FEV1 were measured before and after immunotherapy, and symptoms were monitored during the pollen season. MNCs from the patients were either cultured alone, spontaneous HRF production (spHRF), or in the presence of grass allergens (grass-stimulated HRF production), and the supernatants were assayed for HRF activity with basophils from a single donor after the study. We found that MNCs from patients with seasonal asthma to grass pollen spontaneously produce substantial amounts of HRF. The group of patients treated with placebo developed typical symptoms in the pollen season and also an increase in HRF production. In contrast, patients treated with grass pollen demonstrated reduced symptoms and no increase in spHRF production. A high degree of correlation between spHRF productions and symptom scores in both treated groups was noted. After 2 years of immunotherapy, allergen-stimulated HRF production decreased significantly, whereas spHRF production decreased significantly only in the patients who were clinically benefitted. The change in the provocative concentration of histamine that causes 20% fall in FEV1 during the pollen season highly correlated with the change in HRF production. The results of this study suggest that HRF might be involved in the pathogenesis of atopic asthma.

Adult↗

Prediction of carotid stenosis progression by lipid and hematologic measurements.

We followed 19 men and 19 women with asymptomatic carotid stenosis up to 30 months to determine whether hematologic or lipid abnormalities could identify those individuals developing progressing carotid atherosclerosis (defined as an increase in mean percent stenosis greater than or equal to 19% or an increase in a single region of greater than or equal to 23%) on B-mode carotid ultrasonography performed at 2- to 6-month intervals. Our patients demonstrated increased beta-thromboglobulin, platelet factor 4, and fibrinogen compared with age-matched controls. Eight patients developed progression of carotid stenosis, and this group had higher baseline low-density lipoprotein (LDL) and fibrinogen than the 30 nonprogressing patients. Multiple regression analyses of age, sex, smoking, coronary artery disease, peripheral vascular disease, diabetes, hypertension, and baseline high-density lipoprotein (HDL), HDL2, HDL3, LDL, beta-thromboglobulin, platelet factor 4, and fibrinogen identified coronary artery disease and elevated LDL and fibrinogen as the only independent variables significantly associated with the progressing group. We conclude that, in patients with carotid atherosclerosis, a combination of coronary artery disease and elevated LDL and fibrinogen will predict with 88% accuracy whether the patient will have progressing carotid stenosis.

Aged↗

Production and properties of histamine-releasing factor of guinea pigs.

The production of histamine-releasing factor (HRF) by human mononuclear cells has previously been reported. In this paper we describe the production of HRF by guinea pig spleen cells, thymocytes, and PBMC. Guinea pig lymphoid cells were cultured either alone or in the presence of mitogens (PHA and Con A) or specific Ag(OVA and keyhole limpet hemocyanin) and the dialyzed cell-free supernatant was tested for histamine-releasing activity on guinea pig lung mast cells and blood basophils. Lung mast cells were isolated by enzymatic digestion and partially purified by countercurrent elutriation and discontinuous Percoll gradient centrifugation. Guinea pig spleen cells, thymocytes, and PBMC spontaneously produced significant amounts of HRF. The production was enhanced upon stimulation with PHA or specific Ag in animals immunized with Ag in CFA. Two distinct species of HRF were identified with m.w. of 50,000 to 70,000 and 5000 to 8000 by gel chromatography. HRF is a trypsin- and chymotrypsin-sensitive heat-stable protein. It does not bind to Con A-Sepharose and its production is not inhibited by tunicamycin. HRF-induced histamine release from lung mast cells is a temperature-dependent process and is complete in 10 min at 37 degrees C. Intradermal injection of HRF caused an immediate ear-swelling reaction in guinea pigs. The most severe ear-swelling reactions did not resolve within 1 h, but instead evolved over a period of 12 to 24 h.

Animals↗

Identification of a histamine release inhibitory factor (HRIF) and an inhibitor of histamine releasing factor synthesis (IHS) produced by guinea pig lymphoid cells.

Guinea pig spleen cells, thymocytes, and blood mononuclear cells have been shown to produce a histamine releasing factor (HRF) spontaneously or after stimulation with PHA or specific antigens. In this study we have shown that antigenic stimulation of spleen cells obtained from animals immunized with high doses of antigen suppresses the spontaneous HRF production. Likewise, stimulation with Con A of spleen cells also inhibits the spontaneous HRF production. When the supernatants from Con A- and antigen-stimulated cultures were added to fresh thymocyte cultures, a significant inhibition of HRF production was observed. These supernatants also inhibited HRF-induced histamine release from mast cells. We have identified an inhibitor of HRF synthesis (IHS) and also a histamine release inhibitory factor (HRIF) by gel chromatography. Virtually all mitogen- and antigen-stimulated culture supernatants elaborated the activities of HRF, IHS, and HRIF in various quantities depending on the dose of antigen and the kind of adjuvant used for immunization. IHS has a MW of 22K-35K and 10K. This cytokine also inhibits DNA synthesis by thymocytes. HRIF has a MW of 15K-20K and 10K. It inhibits both HRF- and antigen-induced histamine release from lung mast cells. These results suggest that lymphocytes produce a variety of factors which function to regulate histamine release from mast cells.

Animals↗

Effect of autogenic bacterial antigens on the production of histamine releasing factor by mononuclear cells from intrinsic asthmatic patients.

The production of histamine releasing factor (HRF) by mononuclear cells (MNC) from intrinsic asthmatic patients has previously been reported. In this study, we investigated the effect of preincubation of lymphocytes with autogenic killed bacteria upon the production of HRF. Bacteria were isolated from the sputum, and nasopharyngeal swab obtained from patients and control subjects. MNC from intrinsic asthmatics and healthy controls were preincubated with killed bacteria for 4 h, then washed and cultured for 18 h. HRF activity of the cell-free supernatants was assayed in the histamine release test using basophils from normal subjects. We found that MNC from the patients spontaneously produce significant amounts of HRF. Preincubation of the cells with autogenic bacterial antigens enhanced HRF production in 12 of 25 patients and only in one of 15 control subjects. No specific bacterial strain was identified as having the sole stimulatory property for HRF production; rather, individual susceptibility predisposes to the ability to produce HRF in response to some common bacteria. When MNC from healthy subjects were preincubated with bacterial antigens isolated from the patients, no enhancement in HRF production was observed. We concluded that MNC from some intrinsic asthmatics are specifically sensitized to certain bacterial antigens and release HRF upon contact with these antigens.

Adolescent↗

Identification of a histamine release inhibitory factor produced by human mononuclear cells in vitro.

Human mononuclear cells (MNC) secrete histamine-releasing factor(s) (HRF) when cultured in vitro. HRF induces the release of histamine and other mediators from basophils and mast cells. We have shown that MNC also produced a histamine release inhibitory factor (HRIF), and that the synthesis is augmented by culture with physiologic concentrations of histamine (10(-10) to 10(-6) M) and by the mitogen concanavalin A (Con A). HRIF does not affect release initiated by other secretagogues such as allergen, anti-IgE, C5a, Con A, and phorbol myristate acetate. HRIF requires a preincubation with the cells for 5-10 min for maximal inhibition, and this effect is not abolished by washing the cells after the preincubation. The biological activity of HRIF is protease-sensitive, neuraminidase-resistant, and relatively heat-stable. HRIF can be distinguished from HRF by a lower apparent molecular mass (8,000-10,000 D).

Biomarkers, Tumor↗

Activation of guinea pig lymphocytes and mast cells by grain-dust extract.

Previous studies have demonstrated that grain dust can stimulate lymphocyte proliferation and the production of interleukin-1 by macrophages. This study was undertaken to investigate whether grain dust could stimulate the production of histamine-releasing factor (HRF) by guinea pig spleen cells. We also studied the direct action of grain dust on guinea pig lung mast cells and basophils. Plastic nonadherent cells from immunized animals were cultured for 24 hours in the presence of grain dust or lipopolysaccharide, and the cell-free supernatants were assayed for HRF activity in the mast cell and basophil histamine release test. Lung mast cells were isolated by enzymatic digestion and discontinuous Percoll gradient centrifugation. It has been demonstrated that grain dust stimulated the production of HRF by spleen cells from the immunized animals but not from the control animals. Stimulation of spleen cells with lipopolysaccharide did not enhance the HRF production. Gel chromatography of grain dust-stimulated supernatant revealed that HRF has a molecular weight in the range of 50 to 70 kd and 5 to 8 kd. We also found that grain dust directly released significant amount of histamine from both mast cells and basophils. The results of this study suggest that grain dust contains some potent active substances that can activate lymphocytes, mast cells, and basophils.

Animals↗

The magnitude of the spontaneous production of histamine-releasing factor (HRF) by lymphocytes in vitro correlates with the state of bronchial hyperreactivity in patients with asthma.

In our previous studies we reported that lymphocytes from patients with asthma spontaneously produce histamine-releasing factor (HRF) in vitro. In an effort to examine whether spontaneous HRF production (SpHRF) by lymphocytes from patients with asthma is related to the state of bronchial hyperreactivity (BHR), 20 patients with mild to severe asthma were studied. Peripheral blood lymphocytes were cultured alone in a serum-free medium for 24 hours, and culture supernatant was assayed for HRF activity in two separate histamine-release tests with autologous basophils and normal basophils from known healthy donors. BHR was measured as bronchial reactivity to inhaled histamine and was expressed as a provocation concentration of histamine required to induce a 20% fall in FEV1 (PC20). The result of this study demonstrated that lymphocyte supernatant from all patients with asthma released significant amount of histamine from both autologous and normal basophils. Very high histamine release was usually induced by lymphocyte supernatant from severely ill patients who had PC20 less than 2 mg/ml. Statistical analysis demonstrated that the magnitude of the SpHRF significantly correlated (r = -0.86; p less than 0.001) with PC20. Since mast cell- and basophil-derived mediators have been implicated in the pathogenesis of BHR, high correlation between PC20 and SpHRF by lymphocytes suggests that the latter may contribute to the development of BHR. Further studies are required to disclose the exact relationship between SpHRF and BHR.

Adult↗

T lymphocyte-derived demyelinating activity in multiple sclerosis patients in relapse.

Supernatants of cultured T lymphocytes of multiple sclerosis patients were tested for a demyelinating activity in rat cerebellum explant cultures. Supernatants of unstimulated T lymphocytes in seven out of 10 multiple sclerosis patients in relapse produced demyelination when checked by phase contrast microscopy. Supernatants of unstimulated T lymphocytes from healthy subjects did not produce demyelination, but when T cells were stimulated by phytohaemagglutinin (PHA), 50% of tested supernatants produced demyelination, which was, however, never as advanced as in multiple sclerosis supernatant treated cerebellum cultures. The demyelinating activity proved to be heat labile. Gel filtration study revealed two fractions of the demyelinating activity 12.5-29.0 kD and 43.0-66.0 kD. The results suggest that lymphokines can be directly involved in the pathogenesis of demyelination in multiple sclerosis.

Adult↗

Studies on histamine releasing factor (HRF) of human, murine and guinea-pig origin.

There has been the lack of small animal models for the studies of histamine releasing factor (HRF). We have found that HRF produced in vitro by lymphocytes of asthmatic patients can act independently from the animal species and induces histamine secretion from mouse peritoneal mast cells. We also found, that spleen cells derived from normal as well as from sensitized mice and guinea-pigs are able to generate HRF in vitro, when cultured in suitable conditions. HRF of mouse and guinea-pig origin released histamine from homologous mast cells in vitro and its activity was enhanced when spleen cell cultures were stimulated with specific antigens or non-specific mitogen.

Animals↗

Studies on lymphokine-mediated demyelination in organotypic rat cerebellum in culture.

Supernatants of peripheral blood lymphocytes (PBL), containing lymphokines, isolated from MS patients and healthy subjects were tested for demyelinating activity in organotypic culture of the rat cerebellum. PBL were isolated on Ficoll-paque gradient and cultures in RPMI 1640 medium for 72 h with or without phytohemagglutinin and Concanavalin A. Both stimulated and unstimulated PBL supernatants from MS patients consistently demyelinated cerebellum cultures. The supernatants of unstimulated PBL from healthy subjects did not produce demyelination, however, slight effect was present in the cultures treated with PBL stimulated supernatants. The results indicate that lymphokines might be involved in demyelination in MS.

Adult↗