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Biomedical subjects

A R Sousa

Publications and source records attributed to A R Sousa.

17 recordsLinked to original sources

Immunohistochemical evaluation of psoriatic plaques following selective photothermolysis of the superficial capillaries.

BACKGROUND: Elongated and tortuous capillary loops are distinctive features of psoriasis. The significance of these microvascular changes in the pathogenesis of plaques, however, remains unclear. OBJECTIVES: To determine what part the expanded superficial capillary bed plays in the pathogenesis of clinical lesions by selectively thermolysing psoriatic capillaries with a pulsed dye laser (PDL). METHODS: Cutaneous lesions were biopsied before and after treatment and sections assessed by standard immunohistochemical techniques for changes in known indicators of angiogenesis, including endothelial surface area, endothelial cell proliferation and endothelial cell expression of adhesion molecules. We also measured lymphocytic infiltration and epidermal thickness, and quantified the presence of a marker of keratinocyte proliferation before and after treatment. RESULTS: The effect of the PDL was limited to the superficial capillary bed, with no changes in the microvessels (including venules and arterioles) of the upper reticular dermis. Although there was significant clinical improvement in plaques after treatment (P = 0.02), complete clearance of lesions was not achieved. Thermolysis of psoriatic capillaries caused a reduction in both endothelial surface area (P < 0.01) and endothelial cell proliferation in the superficial dermis (P = 0.04). Endothelial expression of surface adhesion molecules (integrins and E-selectin) important in angiogenesis was not, however, altered by treatment. The CD4+ and CD8+ T-cell infiltrate was significantly reduced in the superficial papillary dermis (P = 0.02 and P = 0.04, respectively), but not in the epidermis or upper reticular dermis. Laser treatment significantly reduced epidermal thickness (P = 0.001), but did not alter epidermal keratinocyte proliferation (P = 0.2). CONCLUSIONS: The results demonstrate that dermal capillary changes alone are unlikely to be causal in psoriasis. They indicate that the expanded psoriatic capillaries may be important in facilitating the access of activated T cells to the skin and in maintaining the psoriatic plaque. These results do not refute the consensus view that plaque formation may be mediated by the release of growth factors/cytokines from activated epidermal T cells/keratinocytes.

Adult↗

Subepithelial immunopathology of the large airways in smokers with and without chronic obstructive pulmonary disease.

Previous work has shown an increase in CD8+ T-cells, neutrophils and eosinophils in small airway subepithelium in smokers. The authors have now investigated whether similar changes occur in the large airways. Immunohistochemistry on frozen sections of bronchial biopsies were obtained at bronchoscopy in 11 nonsmokers, eight asymptomatic smokers and 11 smokers with chronic bronchitis and chronic obstructive pulmonary disease (COPD). There was an increase in the number of CD8+ cells infiltrating the bronchial subepithelium in the COPD group compared to the asymptomatic smokers (305 (109-400) versus 92 (41-550) cells x mm(-2), p=0.030). There was a negative correlation between the number of CD8+ cells and the forced expiratory volume in one second (FEV1) %predicted (p=0.005, r=-0.62), and a positive correlation between the number of CD8+ cells and the number of pack years smoked (p=0.017, r=0.42). There was a negative correlation between the activated/total eosinophils ratio and the FEV1 % pred (p=0.017, r=-0.51). There was a negative correlation between pack years smoked and the number of neutrophils (p=0.022, r=-0.36). Smokers who develop chronic obstructive pulmonary disease have increased numbers of CD8+ T-cells in large airways when compared to asymptomatic smokers. Airway obstruction was associated with an increase in the proportion of eosinophils that were activated.

Bronchi↗

Glucocorticoid resistance in asthma is associated with elevated in vivo expression of the glucocorticoid receptor beta-isoform.

BACKGROUND: Glucocorticoid-resistant bronchial asthma is characterized by failure of corticosteroids to suppress key asthma-relevant, cell-mediated inflammatory responses in the airways. OBJECTIVE: The mechanism of this phenomenon is not clear but may involve aberrant expression of the beta-isoform of the glucocorticoid receptor. METHODS: We have measured expression of the alpha- and beta-glucocorticoid receptor isoforms in tuberculin-driven cutaneous cell-mediated inflammatory lesions in people with asthma who are glucocorticoid sensitive and resistant after 9 days of therapy with oral prednisolone (40 mg/day) or matching placebo in a random order, crossover design. RESULTS: After placebo therapy, the mean numbers of cells expressing glucocorticoid receptor alpha immunoreactivity in the lesions evoked in glucocorticoid-sensitive and -resistant patients with asthma were statistically equivalent. The numbers of cells expressing glucocorticoid receptor beta were significantly elevated in the patients who were glucocorticoid resistant, resulting in an 8-fold higher ratio of expression of glucocorticoid receptor alpha/glucocorticoid receptor beta in the patients who were glucocorticoid sensitive. Glucocorticoid receptor alpha/glucocorticoid receptors beta were colocalized to the same cells. Oral prednisolone therapy was associated with a significant decrease in the numbers of cells expressing glucocorticoid receptor alpha but not glucocorticoid receptor beta in the subjects who were glucocorticoid sensitive. No significant change was found in the numbers of cells expressing glucocorticoid receptor alpha and glucocorticoid receptor beta in the patients who were glucocorticoid resistant. Prednisolone therapy reduced the ratio of glucocorticoid receptor alpha/glucocorticoid receptor beta expression for the patients who were glucocorticoid sensitive to a level seen in the patients who were glucocorticoid resistant before therapy. CONCLUSION: Because glucocorticoid receptor beta inhibits alpha-glucocorticoid receptor-mediated transactivation of target genes, the increased expression of glucocorticoid receptor beta in inflammatory cells might be a critical mechanism for conferring glucocorticoid resistance.

Adult↗

In vivo resistance to corticosteroids in bronchial asthma is associated with enhanced phosyphorylation of JUN N-terminal kinase and failure of prednisolone to inhibit JUN N-terminal kinase phosphorylation.

BACKGROUND: Corticosteroid-resistant (CR) asthma is associated with increased in vitro activity of the proinflammatory transcription factor activating peptide (AP)-1 in PBMCs resulting from increased c-FOS synthesis. Increased AP-1 may sequester the glucocorticoid receptor to produce a CR state. Using the tuberculin-induced inflammatory responses in the skin, we have previously demonstrated that a therapeutically effective dose of prednisolone suppressed T-cell, macrophage, and eosinophil infiltration into purified protein derivative-induced lesional skin of corticosteroid-sensitive (CS), but not CR, individuals. OBJECTIVE: Skin biopsy specimens from a tuberculin-induced model of dermal inflammation have been evaluated for the effect of corticosteroids in regulating components of AP-1 in vivo. METHODS: Immunohistochemical analysis of the tuberculin-mediated cutaneous response has been performed on 9 subjects with CS asthma and 6 subjects with CR asthma for the regulatory components of AP-1 before and after 9 days of either 40 mg prednisolone or placebo. RESULTS: Significantly greater expression of c-FOS, phosphorylated c-JUN, and phosphorylated JUN N-terminal kinase (JNK) protein has been identified in CR than in CS subjects. Corticosteroids suppressed phosphorylation of c-JUN and JNK in the CS Group (P =.004 for both) but enhanced phosphorylation of c-JUN and JNK in the CR group (P =.031 for both). CONCLUSION: Resistance to corticosteroids in asthmatic subjects may be caused, at least in part, by failure to suppress JNK phosphorylation, leading to failure to suppress c-JUN N-phosphorylation. Increased JNK may be one of the mechanisms central to the mechanism of CR asthma.

Animals↗

Regulation of major histocompatibility complex class II antigens on human alveolar macrophages by granulocyte-macrophage colony-stimulating factor in the presence of glucocorticoids.

Alveolar macrophages (AM) present antigen poorly to CD4+ T cells and respond weakly to interferon-gamma (IFN-gamma) for up-regulation of major histocompatibility complex (MHC) class II and costimulatory molecule expression. In atopic asthma, however, AM exhibit enhanced antigen-presenting cell (APC) activity. Since granulocyte-macrophage colony-stimulating factor (GM-CSF) is increased in the airways of asthmatic patients, we have investigated its role in modulating the APC function of AM. The effects of glucocorticoids were also studied since earlier studies showed optimal induction of MHC antigens on monocytes by GM-CSF in their presence. GM-CSF in the presence, but not the absence, of dexamethasone enhanced the expression of HLA-DR, -DP and -DQ antigens by AM. However AM and monocytes differed in the optimal concentration of steroid required to mediate this effect (10-10 m and 10-7 m, respectively). Induction of MHC antigens was glucocorticoid specific and independent of IFN-gamma. These studies suggest the existence of an IFN-gamma-independent pathway of macrophage activation, which may be important in regulating APC function within the lung.

Adult↗

Immunopathology of the small-airway submucosa in smokers with and without chronic obstructive pulmonary disease.

The airflow obstruction in chronic obstructive pulmonary disease (COPD) occurs mainly at the level of the small airways. In order to investigate the effect of smoking on small-airway submucosal immunopathology, we used immunohistochemistry in peripheral lung sections obtained at surgery from a group of smokers (n = 22) and from a group of nonsmokers (n = 22) that contained both ex-smokers (n = 17) and lifelong nonsmokers (n = 5). Subjects were also divided into those with (n = 19) and those without (n = 20) airflow obstruction. We found an increase in total eosinophils (p = 0.001) and activated eosinophils (p = 0.010), an increase in the CD8(+)/CD3(+) cell ratio (p = 0.003), and a decrease in the CD4(+)/CD8(+) cell ratio (p = 0.005) among cells infiltrating the small-airway submucosa in an area 50 micrometers deep to the basement membrane in smokers as compared with nonsmokers. There was also an increase in neutrophils (p = 0.019) when smokers were compared with lifelong nonsmokers. Neutrophil numbers correlated with numbers of eosinophils (p = 0.0003, r = 0.58). Furthermore, the CD8(+)/CD3(+) cell ratio was related to pack-years smoked (p = 0.016, r = 0.36), months since smoking cessation (p = 0.003, r = 0.47), and number of infiltrating eosinophils (p = 0.007, r = 0.43) and neutrophils (p = 0.004, r = 0.44). These findings suggest that smoking induces movement of an inflammatory infiltrate into the submucosa of the small airway, the location of the increased resistance to airflow in COPD.

Aged↗

Effect of inhaled glucocorticoids on IL-1 beta and IL-1 receptor antagonist (IL-1 ra) expression in asthmatic bronchial epithelium.

BACKGROUND: Accumulating evidence suggests that the cytokine network is central to the immunopathology of bronchial asthma and the existence of naturally occurring cytokine antagonists has added to this complexity. Upregulation of both interleukin 1 beta (IL-1 beta) and its naturally occurring receptor antagonist, interleukin 1 receptor antagonist (IL-1ra), has previously been observed on asthmatic bronchial epithelium compared with normal airways. METHODS: The effect of inhaled beclomethasone dipropionate (BDP) on asthmatic bronchial epithelial expression of IL-1 beta and IL-1ra was studied. Frozen bronchial biopsy specimens from nine asthmatic subjects receiving 1000 micrograms BDP daily for eight weeks and from six asthmatic subjects receiving matching placebo were stained with anti-IL-1 beta and anti-IL-1ra antibodies. Hue-saturation-intensity (HSI) colour image analysis was used to quantify the brown immunoperoxidase reaction colour present on the bronchial epithelium. RESULTS: There was a significant twofold decrease in the epithelial expression of IL-1 beta after treatment with BDP but no significant change was seen in IL-1ra (P = 0.175). CONCLUSION: The selective inhibition of IL-1 beta, without effect on IL-1ra, provides a novel mechanism for the anti-inflammatory action of glucocorticosteroids.

Adult↗

Expression of interleukin-5 and granulocyte-macrophage colony-stimulating factor in aspirin-sensitive and non-aspirin-sensitive asthmatic airways.

Increased numbers of eosinophils and mast cells in the bronchial mucosa are characteristic features in subjects with aspirin-sensitive asthma. Interleukin-5 (IL-5) and granulocyte-macrophage colony-stimulating factor (GM-CSF) are involved in the activation, maturation, and perpetuation of survival of eosinophils. Immunohistochemical techniques were therefore used to study the expression of IL-5 and GM-CSF on frozen bronchial biopsies from 13 aspirin-sensitive asthmatic (ASA) and 8 non-ASA (NASA) subjects. Aspirin sensitivity was diagnosed by lysine-aspirin inhalation provocation. ASA airways demonstrated a significant 2-fold increase in the total number of submucosal inflammatory cells expressing IL-5 (p = 0.03) and approximate 4- and 2-fold increases in the numbers of mast cells expressing IL-5 and GM-CSF (p = 0.02 and p = 0.04, respectively). There was also a 4-fold increase in the number of eosinophils expressing IL-5 (p = 0.004). These results suggest a central role for the mast cell and eosinophil in regulation of the inflammatory cell infiltrate of ASA airways by secretion of the hemopoietic cytokines IL-5 and GM-CSF.

Adult↗

The effects of prednisolone on the cutaneous tuberculin response in patients with corticosteroid-resistant bronchial asthma.

We have used the classical tuberculin cutaneous delayed hypersensitivity immune response to investigate the effects of corticosteroids on mononuclear cell function in nine subjects with corticosteroid-resistant asthma (CRA) and six subjects with corticosteroid-sensitive asthma (CSA), who demonstrated sensitivity to intradermal purified protein derivative (PPD) of Mycobacterium tuberculosis. In a double-blind, crossover, placebo-controlled study, patients were given oral prednisolone or placebo, starting on day 0, and a predetermined intradermal dose of PPD on day 7. On day 9 the site of the induration was measured and biopsied for immunohistochemical analysis. There was no difference in skin induration between the CSA and CRA groups during the placebo arm of the study (p = 0.38). Prednisolone significantly suppressed the cutaneous induration (p, 0.003) in the CSA group but not in the CRA group. As compared with placebo, the number of macrophages (p = 0.018), eosinophils (p = 0.009), and T memory cells (p = 0.009) was suppressed by prednisolone in the CSA group but not in the CRA group. No significant suppression of the number of neutrophils or monocytes/immature macrophages was induced by prednisolone in either group. There was no difference in intracellular adhesion molecule-1, vascular cell adhesion molecule-1, and endothelial leukocyte adhesion molecule-1 expression in blood vessels or epidermis between the CSA and CRA groups, with no suppression by prednisolone in either group. These findings suggest a defect in the responsiveness of cellular immune mechanisms to the suppressive effects of corticosteroids in steroid-resistant asthma. The differential suppressive effects of corticosteroids on cellular recruitment in the PPD response between the individuals with CSA and those with CRA are not due to modulation of expression of endothelial adhesion molecules.

Adrenal Cortex Hormones↗

Effect of endobronchial aspirin challenge on inflammatory cells in bronchial biopsy samples from aspirin-sensitive asthmatic subjects.

BACKGROUND: The aspirin-induced bronchoconstriction in patients with aspirin-sensitive asthma is caused by cysteinyl leukotriene release. The cellular source of the leukotrienes is unknown. The inflammatory cell infiltrate in bronchial biopsy samples from seven aspirin-sensitive asthmatic (ASA) subjects and eight non-ASA subjects before and after local challenge with lysine aspirin was therefore examined. METHODS: Using flexible bronchoscopy, airway mucosal biopsy samples were taken and lysine aspirin solution was placed directly onto a carina of the contralateral lung. Twenty minutes later a second series of biopsy samples was taken from the site of the local endobronchial lysine aspirin challenge. The biopsy samples were double immunostained with a rabbit polyclonal antibody to the enzyme 5-lipoxygenase and monoclonal antibodies to mast cells (AA1), neutrophils (NP57), macrophages (EBM11), T lymphocytes (anti-CD3), and total (BMK13) and activated eosinophils (EG2). RESULTS: A decrease in both absolute mast cell numbers staining with mast cell tryptase (AA1) and the percentage of mast cells co-immunostaining with 5-lipoxygenase was seen in the ASA patients after lysine aspirin challenge compared with the non-ASA control group. There was also an increase in the numbers of activated eosinophils (EG2) in the ASA subjects compared with the non-ASA group. No changes were observed in the total numbers of macrophages (EBM11), neutrophils (NP57), total eosinophils (BMK13), and T lymphocytes (anti-CD3) after challenge with lysine aspirin. CONCLUSIONS: The decrease in numbers of mast cells staining for tryptase and the increase in activated eosinophils after endobronchial challenge with lysine aspirin may represent degranulation of these cell types, and may be an early event associated with aspirin-sensitive reactions in ASA subjects.

Administration, Topical↗

Inflammatory cell populations in bronchial biopsies from aspirin-sensitive asthmatic subjects.

The inflammatory cell infiltrate in bronchial biopsies of 12 aspirin-sensitive asthmatic (ASA) subjects and eight non-aspirin-sensitive (non-ASA) control subjects have been compared. Biopsies were taken from a right middle or lower lobe segmental carina using fiberoptic bronchoscopy. The biopsies were snap-frozen in OCT, and sections 5 microns thick were doubled immunostained using a rabbit polyclonal antibody to the enzyme 5-lipoxygenase (5-LO) and with a monoclonal antibody to neutrophils (NP57), macrophages (EMB11), and total (BMK13) and activated eosinophils (EG2), mast cells (AA1), and T-lymphocytes (anti-CD3). There was no significant difference in the total numbers of cells staining for 5-LO between the two groups of subjects. As a percentage of total 5-LO cells, there were significantly more mast cells (12.9 +/- 3.8% versus 3.4 +/- 3.1%; p = 0.039) and total eosinophils (34.7 +/- 9.4% versus 11.1 +/- 3.8%; p = 0.044) and significantly fewer macrophages (23.3 +/- 6.1% versus 39.8% +/- 5.3; p = 0.041) in the bronchial biopsies from ASA subjects as compared with non-ASA patients. The numbers of neutrophils, T-lymphocytes, and activated eosinophils were similar for the two groups. The increased numbers of eosinophils and mast cells identified in the bronchial tissue from aspirin-sensitive asthmatic subjects may be the source of the enhanced cysteinyl leukotriene production observed in these subjects.

Administration, Inhalation↗

Expression of interleukin-1 beta (IL-1beta) and interleukin-1 receptor antagonist (IL-1ra) on asthmatic bronchial epithelium.

Accumulating evidence suggests that the cytokine network is central to the immunopathology of bronchial asthma and recent findings have suggested that naturally occurring cytokine antagonists may also be involved. In this study we looked at the expression of interleukin-1 beta (IL-1beta) and its naturally occurring receptor antagonist, IL-1ra, in the normal and asthmatic bronchial wall. Frozen bronchial biopsies from 12 normal and 18 asthmatic individuals were double stained with EBM11 (a CD68 macrophage marker) and either a rabbit anti-IL-1beta or a rabbit anti-IL-1ra. Hue-saturation-intensity color image analysis (HSI) was used to quantify the brown immunoperoxidase reaction product present on the bronchial epithelium. There was an increased expression of both IL-1beta and IL-1ra in the asthmatic bronchial epithelium, p < 0.0002 and p < 0.0001, respectively. Additionally, the numbers of macrophages, of IL-1beta producing cells, and the percentage of macrophages producing IL-1beta were significantly increased in the asthmatic submucosa (p < 0.004, p < 0.002, and p < 0.008, respectively).

Adult↗

Increased expression of the monocyte chemoattractant protein-1 in bronchial tissue from asthmatic subjects.

The expression of the monocyte chemoattractant protein (MCP-1), a member of the chemokine family of low molecular weight cytokines, was assessed by immunohistochemistry in bronchial biopsies from 12 asthmatic and 12 normal subjects. Both a monoclonal antibody (F9) and a polyclonal antibody were employed to detect MCP-1, while the mouse myeloma protein (MOPC21) was used as a negative control. Strong positive reactions for MCP-1 were seen in the bronchial epithelium. Subepithelial macrophages, blood vessels, and bronchial smooth muscle were also stained. Hue-saturation-intensity color image analysis was used to quantify reactions of the monoclonal antibody in the epithelial and subepithelial layers. With the monoclonal antibody, asthmatic biopsies showed 51.8 +/- 3.7% (mean +/- SEM) of the epithelium staining positively, whereas normal subjects reacted much less, with 6.4 +/- 1.9% of the epithelium staining (P < 0.0001); there was no overlap between the two groups. Likewise, staining was increased in the subepithelium of asthmatic airway biopsies, with 11.5 +/- 3.1% and 2.0 +/- 1.0% staining positively in asthmatic and normal subepithelium, respectively, (P < 0.002). There was a significant correlation between staining of the epithelium and subepithelium (r = 0.77, P < 0.001). The polyclonal anti-MCP-1 antibody also gave strong reactions in the epithelium and subepithelium, with 34.0 +/- 7.8% of the asthmatic and 1.6 +/- 1.0% of the normal bronchial epithelium staining positively (P < 0.0001). These increased levels of MCP-1 in the asthmatic airways suggest that they may play a role in macrophage recruitment and activation and thereby contribute to the inflammatory pathology of bronchial asthma.

Adult↗

Detection of GM-CSF in asthmatic bronchial epithelium and decrease by inhaled corticosteroids.

The presence of granulocyte-macrophage colony-stimulating factor (GM-CSF) in airway epithelial cells in vivo was assessed in 15 asthmatic and 9 normal subjects. GM-CSF was analyzed using immunohistochemistry with a polyclonal and a monoclonal antibody. Hue saturation intensity color image analysis was used to quantify staining. Asthmatic airway epithelial cells stained significantly more with anti-GM-CSF than those from normal subjects (p = 0.0013 and p = 0.0003 for the polyclonal and monoclonal antibodies, respectively). Additionally, 8 asthmatic individuals inhaled 1,000 micrograms beclomethasone diproprionate per day for 8 wk and 6 asthmatic patients inhaled matching placebo. There was a significant reduction of GM-CSF in the epithelium in the patients who were given corticosteroids (p = 0.014), whereas the group of subjects who were given placebo showed no significant change in GM-CSF staining. There was a correlation between the percentage suppression of GM-CSF staining by inhaled corticosteroids and the percentage increase in FEV1 (r = 0.61, p < 0.05) and percentage decrease in carbachol responsiveness (r = 0.80, p < 0.01). These findings suggest that GM-CSF may play a role in the inflammatory processes of bronchial asthma and that the epithelial cell may be a target cell for drug action.

Administration, Inhalation↗

[Aorto-left ventricular tunnel arising from the left sinus of Valsalva].

Aortic-left ventricular tunnel (ALVT) is a rare congenital anomaly in which an abnormal communication connects the ascending aorta with the left ventricle, bypassing the aortic valve. Usually the ALVT takes its origin from the right aortic sinus. We report a patient with an ALVT arising from the left sinus of Valsalva who underwent surgery at five months of age. The diagnosis was first established by two-dimensional echocardiography.

Aorta↗

Subclavian flap aortoplasty for treatment of coarctation of the aorta in infants less than 3 months of age.

Over a period of 3 years, 21 infants under 3 months of age were operated upon for coarctation of the aorta by subclavian flap aortoplasty. Associated intracardiac defects were present in 13 patients (62%), VSD being the most frequently encountered (10 patients, 48%). In 8 patients coarctation of the aorta, with or without patent ductus arteriosus, was the only cardiovascular malformation. The indication for surgical treatment was intractable congestive heart failure despite intensive medical treatment. Eight patients were on mechanical ventilatory support prior to surgery. There was no early operative mortality. One patient died in congestive heart failure due to valvular aortic stenosis 3 months after surgery for correction of the coarctation. During a follow-up of from 2 months to 3 years, 5 patients underwent a second operation for correction of intracardiac defects. Nineteen of the surviving 20 patients are in good clinical condition. One patient has clinical evidence of residual coarctation; a blood pressure difference of more than 10 mmHg between right arm and leg is presented in 4 patients. Early subclavian flap aortoplasty is recommended for patients with coarctation of the aorta, with or without associated intracardiac defects, who remain in congestive heart failure despite medical therapy.

Aortic Coarctation↗