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Biomedical subjects

R Alam

Publications and source records attributed to R Alam.

At least 73 records · Page 4Linked to original sources

Selective inhibition of the cutaneous late but not immediate allergic response to antigens by misoprostol, a PGE analog. Results of a double-blind, placebo-controlled randomized study.

The objective of this study was to investigate the effect of misoprostol on allergen-induced cutaneous immediate- and late-phase allergic reactions in a double-blind placebo-controlled randomized study. We also studied the mechanism of antiallergic effects of misoprostol. A total of 16 dust mite-allergic patients received misoprostol (200 micrograms) or placebo and then had skin testing on 2 different days. The immediate- and late-phase skin response was monitored for 6 h. Skin biopsy was obtained from 5 selected donors at 5 h. In vitro studies included the effect of misoprostol on eosinophil chemotaxis, eosinophil survival, basophil histamine release, and cytokine production by lymphocytes. All subjects developed an immediate wheal reaction and a late-phase induration in response to dust mite allergens after taking placebo. Misoprostol selectively inhibited the late- but not the immediate-phase response (p < 0.05). Histologic studies revealed a trend toward a reduced number of inflammatory cells in the skin dermis after misoprostol treatment. Misoprostol significantly (p < 0.05) inhibited eosinophil chemotaxis and the production of granulocyte-macrophage colony-stimulating factor by lymphocytes at concentrations > or = 10(-8) M. However, at significantly lower concentrations (> or = 10(-12) M) misoprostol blocked cytokine-stimulated eosinophil survival. Thus, misoprostol has potent antiallergic effects and blocks the cutaneous late-phase allergic inflammation.

Adult↗

Gene polymorphism of apolipoprotein AI, the major protein of high density lipoprotein in predicting stroke risk among white and black subjects.

BACKGROUND AND PURPOSE: Restriction fragment length polymorphism of the apolipoprotein AI gene, which encodes the most prominent apoproteins in high density lipoprotein (HDL), were investigated using the restriction enzymes Sac I and Pst I in white and black subjects to determine the potential role of genetic variations as stroke risks as determined by carotid stenosis and an atherogenic serum profile, such as elevated total cholesterol and low density lipoprotein (LDL) levels or reduced HDL levels. METHODS: Ninety-eight subjects, including normal control subjects with no carotid stenosis and subjects with carotid stenosis, who were believed to be at stroke risk, were the study subjects and included 70 white and 28 black subjects. RESULTS: Sac I polymorphic S2 allele frequency was higher in stroke-risk groups. Significantly higher levels of serum cholesterol, triglycerides, and LDL (P < .05) and significantly lower levels of HDL (P < .05) were present in the stroke-risk group with carotid stenosis. Our study showed the following: Sac I polymorphism frequency was significantly higher in black than white subjects (chi 2 = 3.92, P < .05). Triglyceride level was significantly higher in white subjects compared with black subjects (P < .05). In white subjects, carotid artery stenosis was associated with significantly elevated total cholesterol and LDL levels (P < .01) but not with Sac I polymorphism. In black subjects, the reverse was seen with the Sac I polymorphic S2 allele associated with carotid bifurcation stenosis but did not reach statistical significance because of the small number of subjects. In addition, Sac I polymorphism did not correlate with any lipid profile. Pst I polymorphism was not associated with an abnormal atherogenic lipid profile or carotid artery stenosis abnormalities. CONCLUSIONS: Our study shows that carotid artery stenosis in white subjects is associated with increased plasma total cholesterol and LDL levels and an atherogenic profile but not with Sac I polymorphism for apoprotein AI. In black subjects, Sac I polymorphism appears to identify individuals with significant carotid stenosis, a necessary precursor to atherothrombotic brain infarction, but not those with elevated total cholesterol or LDL and/or reduced HDL levels. These results suggest that Sac I polymorphism may identify black subjects at increased risk for atherothrombotic brain infarctions.

Aged↗

Development of a new technique for recovery of cytokines from inflammatory sites in situ.

We attempted to recover cytokines from nasal mucosal surface following allergen challenge. Repeated lavage of nasal mucosa of seven allergic patients was done, but we failed to detect IL-1 beta in the lavage samples even in ten-fold concentrated materials. Therefore, we developed a new technique to recover cytokines using filter strips. Small filter strips were placed on nasal turbinates for 10 min at different time points after allergen challenge. The strips were air-dried, and stored. For recovery of cytokines individual strips were washed with small volumes of Hepes buffer containing 0.3% human serum albumin. Eluates were assayed for the presence of IL-1 beta and GM-CSF using commercially available ELISA. We were able to detect IL-1 beta and GM-CSF in eluates. Both cytokines were consistently detectable in the late phase allergic reaction peaking at 5 h. Nasal challenge with saline failed to detect any cytokine during the 7 h observation period. In standardization experiments known quantities of IL-1 beta and GM-CSF were applied to filter strips and the recovery ranged from 67 to 89%. Thus, we developed a simple technique of recovery of cytokines from inflammatory mucosa in situ.

Allergens↗

Macrophage inflammatory protein-1 alpha activates basophils and mast cells.

Macrophage inflammatory protein-1 (MIP) is a recently cloned cytokine that causes neutrophilic infiltration and induces an inflammatory response. We studied the effect of MIP-1 alpha on histamine secretion from basophils and mast cells. Leukocytes from allergic and normal subjects were studied. MIP-1 alpha caused dose-dependent release of histamine from basophils of 14 of 20 allergic donors at concentrations of 10(-9)-10(-7) M, and the mean release was 13.50 +/- 2.9% at the highest concentration. In the same experiments, the mean histamine release by anti-immunoglobulin E and monocyte chemotactic and activating factor (MCAF) (10(-7) M) was 32 +/- 7% and 31 +/- 3%, respectively. The cells from only 2 of 10 normal subjects released histamine in response to MIP-1 alpha. Histamine release by MIP-1 alpha was rapid, and almost complete within the first 3 min. MIP-1 alpha-induced degranulation was a calcium-dependent noncytotoxic process. MIP-1 alpha showed chemotactic activity for purified basophils that was comparable to MCAF. Both MIP-1 alpha and MCAF at 10(-7) M concentration elicited a chemotactic response that was 40% of the maximal response to C5a (1 microgram/ml). Murine MIP-1 alpha induced histamine release from mouse peritoneal mast cells in a dose-dependent manner. Thus, we have established that MIP-1 alpha is a novel activator of basophils and mast cells.

Animals↗

Measurement of histamine-releasing factor activity in individual nasal washings: relationship with atopy, basophil response, and membrane-bound IgE.

We collected individual pools of nasal washings (NWs) from 15 allergic and 15 nonallergic subjects to determine histamine-releasing factor (HRF) activity and to ascertain the relationship of these cytokines with atopic status, basophil releasability, and cell membrane-bound IgE. NWs were concentrated, dialyzed, and assayed with basophils from a single donor. Samples from 12 of 15 allergic subjects and from all the nonallergic subjects revealed greater than or equal to 15% histamine release (HR), 33.5% +/- 21.3% (mean +/- SD) and 38.6% +/- 19.6%, respectively (p greater than 0.05). When we assayed the same samples with autologous basophils, the allergic group demonstrated higher HR than the nonallergic group (31.9% +/- 19.7% versus 4.8% +/- 4.3%; p less than 0.001). A standard lot of mononuclear cell-derived HRFs was also screened with basophils from both groups. Means for HR from basophils of allergic and nonallergic subjects were 51.9% +/- 16.7% versus 26.3% +/- 8.2%, respectively (p less than 0.001). Pretreatment of basophils with lactic acid led to abrogation of sensitivity to HRF. Acid-stripped cells incubated with sera from patients with asthma regained their capacity to release histamine. We found that HRF activity can be detected in NWs of most donors, and there is no difference among allergic and nonallergic subjects. Our results suggest that the capacity of these cytokines to induce HR depends on several factors: atopic status, basophil releasability, and membrane-bound IgE.

Basophils↗

Molecular biological studies in atherothrombotic brain infarction.

Strokes due to atherosclerosis are the most prominent neurological disease affecting adults, and efforts to reduce stroke occurrence, in addition to stroke-risk reduction, will require insights into molecular mechanisms. Our studies showing abnormal metabolism of low and high density lipoproteins (LDL and HDL) in vivo and of RFLP in apoprotein AI, the major protein of HDL, in stroke-prone subjects suggest that greater exploration of fundamental mechanisms of atherothrombotic brain infarction (ABI) should yield preventative strategies, the ultimate treatment for strokes.

Apolipoprotein A-I↗

Restriction fragment length polymorphism of the apoprotein A-I-C-III gene cluster in control and stroke-prone white and black subjects: racial differences.

BACKGROUND AND PURPOSE: The presence of known restriction fragment length polymorphisms in the apoprotein A-I-C-III gene cluster, which encodes their respective apoproteins, was investigated using the restriction enzymes Sac I and Pst I to determine the potential role of genetic variations for stroke risk in an American population. METHODS: Ninety-eight subjects (70 white, 28 black subjects), both normal controls with no carotid stenosis and those with carotid stenosis believed at risk for stroke, defined as showing stenosis focally or diffusely at that site, composed the study population. RESULTS: Sac I polymorphic S2 allele frequency was higher in stroke-risk groups, whereas Pst I polymorphic P2 allele frequency was similar in control and stroke-risk groups. Significantly higher levels of serum cholesterol, triglycerides, and low density lipoprotein (p less than 0.05) and significantly lower levels of high density lipoprotein (p less than 0.05) were observed in stroke-risk groups with diffuse stenosis. Results of our study with the two racial groups show the following: the frequency of Sac I polymorphism was significantly higher in American black compared with American white subjects (chi 2 = 3.92, p less than 0.05). Among serum lipids, triglycerides were significantly higher in white compared with black subjects (p less than 0.05). In white subjects, carotid artery stenosis was associated with significantly elevated total cholesterol and low density lipoprotein (p less than 0.01) but not with Sac I polymorphism. In black subjects the converse was observed, namely, the Sac I polymorphic S2 allele seemed to be associated with carotid bifurcation stenosis but did not reach statistical significance because of the small number of subjects. In addition, Sac I polymorphism did not correlate with any lipid profile. Pst I polymorphism was not associated with any lipid profile or carotid artery stenosis abnormalities. CONCLUSIONS: Our results indicate that carotid artery stenosis identifies white subjects with increased plasma total cholesterol and low density lipoprotein, an atherogenic profile, but not with Sac I polymorphism. These findings suggest that carotid bifurcation stenosis in white subjects is associated with an atherogenic lipid profile but not with apoprotein A-I-C-III restriction fragment length polymorphisms. In black subjects, Sac I polymorphism seems to identify those individuals with significant carotid stenosis, a necessary precursor to atherothrombotic brain infarction, but not those with elevated total cholesterol, elevated low density lipoprotein, and/or reduced high density lipoprotein. These results suggest that Sac I polymorphism may identify black subjects at increased risk for atherothrombotic brain infarctions.

Aged↗

Low and high density lipoprotein metabolism in atherothrombotic brain infarction.

BACKGROUND AND PURPOSE: Elevated low density lipoprotein and reduced high density lipoprotein cholesterol may increase the risk of atherothrombotic brain infarction, but the metabolic mechanisms accounting for this relation are poorly understood. METHODS: The kinetic parameters of low density and high density lipoprotein were studied in nine subjects with atherothrombotic brain infarction or identifiable (by noninvasive testing) extracranial occlusive disease and in 12 control subjects. Autologous iodine-125-labeled lipoproteins were injected intravenously. Blood samples were drawn 10 minutes after injection and periodically thereafter for 10 days. Kinetic parameters were calculated from the decay curves. RESULTS: The stroke-risk group showed significantly higher triglyceride (p less than 0.05), total cholesterol (p less than 0.02), and low density lipoprotein cholesterol (p less than 0.01). The fractional catabolic rate of low density lipoprotein was significantly lower (p less than 0.001) and the high density lipoprotein rate higher (p less than 0.02) in the stroke-risk group than in the control group. Regression analysis (using all subjects) of serum lipoproteins and their respective fractional catabolic rates correlated significantly (for low density lipoprotein, r = 0.684, p less than 0.001; for high density lipoprotein, r = 0.595, p less than 0.002). Mean percent stenosis showed a significant relation with triglyceride level (r = 0.678, p less than 0.01) and low density lipoprotein cholesterol (r = 0.535, p less than 0.02) but not with high density lipoprotein cholesterol. Mean percent stenosis also showed correlation with both fractional catabolic rate of low density lipoprotein (r = 0.667, p less than 0.002) and with serum high density lipoprotein levels (r = 0.504, p less than 0.02). CONCLUSIONS: Our study provides insights into the role of altered low and high density lipoprotein metabolism in the pathogenesis of carotid stenosis. The statistically significant association of serum lipoprotein metabolic rates with carotid stenosis, rather than their respective serum concentrations, implies that metabolic parameters may be more important in predicting stroke risk.

Carotid Stenosis↗

Effect of topical corticosteroids on the recovery of histamine releasing factors in nasal washings of patients with allergic rhinitis. A double-blind, randomized, placebo-controlled study.

Nasal washings (NW) have been used by many investigators as a readily available biologic fluid for studying the mechanism of allergic reactions. These fluids have been analyzed for the presence of various mediators, including cytokines. Recently, histamine releasing factors (HRF) have been detected in the NW. The objective of this study was to investigate the effect of treatment with topical corticosteroids on the recovery of these cytokines from the NW obtained from patients with allergic rhinitis. A group of 30 patients with ragweed pollen allergy were given either beclomethasone dipropionate (BDP) or placebo for 1 wk in a double-blind randomized manner. NW were performed twice before the start of the treatment period and were repeated twice at the end of the study. HRF activity was measured in the NW. Patients maintained a daily symptom score. The activity of HRF decreased significantly (mean +/- SD, pre = 37.2 +/- 21.3% versus post = 23.8 +/- 20.1%; p less than 0.01) in the BDP group, as did the mean symptom score (5.1 +/- 1.4 versus 1.5 +/- 1.5, p less than 0.01) at the end of the treatment period. In contrast, there was no significant change in HRF recovery (32.8 +/- 25.6% versus 33.8 +/- 25.3%; p less than 0.05) or symptom score (4.8 +/- 1.8 versus 5.4 +/- 1.9; p greater than 0.05) in the placebo group. There was a significant correlation between the net changes in symptom scores and the net differences in HRF activity. We speculate that the reduction in HRF in the nasal mucosa may contribute to the clinical efficacy of topical corticosteroids.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Interleukin-8 and RANTES inhibit basophil histamine release induced with monocyte chemotactic and activating factor/monocyte chemoattractant peptide-1 and histamine releasing factor.

The objective of this study was to investigate the effect of interleukin-8 (IL-8) and RANTES on basophil histamine release induced with monocyte chemoattractant peptide-1 (MCP-1) and crude histamine releasing factor (HRF). IL-8 induced low levels of histamine release (8.5 +/- 0.5%) from basophils obtained from only six of 20 donors at high concentrations (10(-6) M). RANTES induced histamine release (16 +/- 2%) from basophils of four of 15 donors at 10(-7) M concentration. However, both IL-8 and RANTES inhibited MCP-1 and HRF-induced histamine release from basophils dose-dependently at concentrations of 10(-9) to 10(-7) M. Basophils from all donors showed a significant inhibitory response (greater than 15%). The maximal inhibition of MCP-1 and HRF by IL-8 was 28 +/- 4% and 48 +/- 8%, respectively. The maximal inhibition of MCP-1 and HRF by RANTES was 26 +/- 4% and 43 +/- 6%, respectively. Peripheral blood mononuclear cell-derived HRF was purified into three distinct peaks by reverse-phase high performance liquid chromatography. Peak I contained MCP-1 as judged by binding to an immunoaffinity column that was prepared with anti-MCP-1 antibody. IL-8 inhibited histamine release induced with all three peaks of HRF. The inhibition of histamine release by IL-8 was significantly higher in normal subjects than in allergic patients (59 +/- 9% versus 31 +/- 7%, P less than 0.05). Both IL-8 and RANTES inhibited cytokine-induced histamine release only and did not affect histamine release by anti-IgE, FMLP, and C5a.(ABSTRACT TRUNCATED AT 250 WORDS)

Anti-Infective Agents↗

Monocyte chemotactic and activating factor is a potent histamine-releasing factor for basophils.

Monocyte chemotactic and activating factor (MCAF) is a recently cloned cytokine that causes chemotaxis of basophils. In our pursuit of cytokines affecting basophil function, we studied the effect of MCAF on histamine secretion from basophils. Leukocytes from 20 donors, 10 allergic and 10 normal subjects, were studied. MCAF caused dose-dependent release of histamine at concentrations of 10(-8) and 10(-7) M, and the mean release was 31.25 +/- 2.9% at the highest concentration. In the same experiments the mean histamine release by anti-IgE and histamine releasing factor (HRF) was 27.05 +/- 4% and 32.70 +/- 2.7%, respectively. All 20 subjects responded to MCAF with significant histamine release. Allergic subjects released significantly more histamine than normals in response to anti-IgE (P less than 0.01) but not to MCAF (P = 0.2) and HRF (P = 0.1). The histamine release was significantly correlated between MCAF and HRF (P less than 0.01), but not between MCAF and anti-IgE (P greater than 0.05). The histamine release by MCAF was complete within the first 3 min. MCAF-induced degranulation was a calcium-dependent process. Leukocytes depleted of monocytes responded equally well to MCAF. Using an anti-MCAF affinity column we determined that greater than 50% of HRF activity of crude PBMC supernatant could be attributed to MCAF. Thus, we established that MCAF is a potent secretagogue for basophils.

Basophils↗

Histamine-releasing factors and inhibitors: historical perspectives and possible implications in human illness.

The initiation of allergic reactions with the bridging of surface-bound IgE antibodies on mast cells and basophils by allergens is well recognized. However, it is clear that other factors most likely play a role in regulating these cells. A number of cytokines have been identified that modulate the secretory response of mast cells and basophils. Among the well-characterized cytokines, interleukin-3 and connective tissue-activating peptide III (or its degradation product, neutrophil-activating peptide 2) can increase the secretory response, whereas interleukin-8 specifically inhibits the response to cytokines. Additional factors are currently under investigation. Preliminary studies suggest an important role for these histamine-releasing factors in atopic disorders, as well as in other conditions in which an IgE-dependent mechanism is not demonstrable. Furthermore, these cytokines may modulate the response of basophils and mast cells in physiologic conditions, such as tissue repair and host defense.

Basophils↗

Histamine-releasing factors and inhibitory factors.

Peripheral-blood mononuclear cells (MNC) synthesize several histamine-releasing factors (HRF) spontaneously and when stimulated. Some of the characterized cytokines have histamine-releasing activity, especially connective tissue activating peptide III, neutrophil-activating peptide 2 and interleukin-3 (IL-3). At least two species of HRF remain to be characterized. MNC also secrete a histamine release-inhibitory factor (HRIF), which is a highly specific inhibitor, because it antagonizes only HRF. IL-8 resembles the low-molecular-weight species of HRIF in terms of size and specificity.

Basophils↗

Cytokines and bronchial hyperreactivity.

Cytokines and interleukins are a potent group of molecules that is primarily involved in maintaining homeostasis. These molecules regulate the growth and function of many cells of the immune system including eosinophils, mast cells/basophils and others. Activation of the later cells by cytokines may play a crucial role in the development of allergic inflammation of the airways. The importance of cytokines in the pathogenesis of bronchial hyperreactivity and asthma has been reviewed in this paper.

Animals↗

Sensitivity of basophils to histamine releasing factor(s) of various origin: dependency on allergic phenotype of the donor and surface-bound IgE.

Certain species of histamine-releasing factor (HRF) have been demonstrated to distinguish a select group of allergic patients from healthy subjects. An IgE-dependent mechanism of action has been suggested. The donor and IgE dependency of HRF produced by peripheral blood mononuclear cells (PBMCs) has not been clearly demonstrated. In this study, we have compared the response of basophils from normal subjects versus allergic patients with and without asthma. In addition, we have addressed the IgE dependency of HRF recovered from cultures of PBMCs, T cells, B cells, macrophages, and bronchoalveolar lavage fluid. We have demonstrated that basophils from allergic as well as normal subjects respond to PBMC-HRF. The response of basophils from allergic patients with asthma is significantly increased. This heightened response to HRF does not correlate with the severity of disease as assessed by baseline spirometry, medication, and skin test scores. Stripping of the membrane-bound IgE by incubating basophils with lactic acid causes a significant loss of sensitivity to HRF generated by PBMCs, T cells, B cells, and macrophages, as well as to HRF recovered from bronchoalveolar fluid. The loss of response can be restored by sera from patients with asthma but not from normal subjects or by myeloma IgE. In addition, poorly responsive basophils from normal subjects can be rendered sensitive by incubating with sera from patients with asthma. The capacity of a given serum from a patient with asthma to restore the response to HRF is not correlated with the total concentration of IgE in the serum.(ABSTRACT TRUNCATED AT 250 WORDS)

Asthma↗

Detection of histamine release inhibitory factor- and histamine releasing factor-like activities in bronchoalveolar lavage fluids.

Histamine releasing factors (HRF) are a group of cytokines that cause degranulation of basophils and mast cells. Recently we have described a histamine release inhibitory factor (HRIF) that inhibits HRF-induced histamine release from basophils and mast cells. The objective of this study was to investigate the presence of these cytokines in bronchoalveolar lavage (BAL) fluid from normal subjects. We found that BAL fluids from 12 to 17 volunteers contained a dialyzable (molecular weight cutoff 3500) factor that inhibited basophil histamine release by HRF, anti-IgE, concanavalin A, and N-formyl-methionyl-leucyl-phenylalanine (FMLP). In addition, BAL fluids from 83% of the tested donors contained a nondialyzable inhibitor that blocked HRF-induced histamine release from basophils. The molecular weight of this inhibitor was estimated to be 20 to 30 and 8 to 10 kD by Sephadex G-50 chromatography and TSK 2000 size-exclusion HPLC. None of the unconcentrated BAL fluids showed any HRF activity on initial screening using basophils from allergic subjects. However, when the BAL fluids were concentrated, all BAL samples that were tested (N = 10) demonstrated significant HRF activity. The molecular weight of BAL HRF has been estimated to be in the range of 15 to 25 kD by size-exclusion HPLC, similar to the HRF synthesized by mononuclear cells. Thus we have demonstrated the presence of both HRF and HRIF in the BAL fluids. We speculate that these cytokines may be involved in the local regulation of basophil and mast cell activation.

Adult↗

Molecular biology of atherothrombotic brain infarction.

Because reduced high density lipoproteins may contribute to atherothrombotic brain infarction, we performed molecular biologic and metabolic studies to characterize high density lipoprotein metabolism with respect to its role in reverse cholesterol transport, to clone the high density lipoprotein receptor, and to determine gene polymorphism for apolipoprotein A-I, the major protein of high density lipoprotein, because altered structure may impair reverse cholesterol transport. For high density lipoprotein metabolism measurements, high density lipoprotein 3 was isolated, purified, and labeled with iodine-125. The radiolabeled high density lipoprotein 3 was reinjected, and daily blood samples were taken for 10 days. Synthesis rates and fractional catabolic rates were determined from the specific activities and daily decrements. Preliminary data indicate that stroke-prone individuals' fractional catabolic rates for high density lipoprotein 3 are twice those of normal individuals. Also, the conversion of high density lipoprotein 3 to high density lipoprotein 2 is reduced in these individuals, suggesting that high density lipoprotein may be abnormally processed in individuals prone to atherothrombic brain infarctions. We surveyed more than 100 patients with carotid stenosis using a 2.2-kb probe for the apolipoprotein A-I gene. A subset of these patients displays polymorphism with restriction enzymes SacI or PstI. These preliminary findings suggest that gene polymorphism for apolipoprotein A-I may provide a molecular clue of atherothrombic brain infarction.

Arteriosclerosis↗