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Biomedical subjects

N H ten Hacken

Publications and source records attributed to N H ten Hacken.

13 recordsLinked to original sources

L-Arginine is not the limiting factor for nitric oxide synthesis by human alveolar macrophages in vitro.

Unlike murine mononuclear phagocytes, human macrophages do not release high amounts of nitric oxide (NO) in vitro despite the presence of nitric oxide synthase (NOS). To determine whether this limited NO synthesis in vitro is due to limited availability of the NOS substrate L-arginine, and putative NOS inhibiting factors present in foetal serum preparations, both alveolar macrophages (AM) and monocyte derived macrophages (MDM) were incubated in various circumstances. Nitrite production measured using stimulated AM was typically <5 pmol x min(-1) x 10(-6) cells. A range of stimuli were tested, but without result. Furthermore, incubation of MDMs with normal human serum or purified bovine serum albumin instead of foetal calf serum failed to enhance NO production. Moreover, neither the use of arginase inhibitors nor the addition of surplus L-arginine resulted in an increased NO synthesis. Interestingly, addition of the NOS intermediate Nomega-hydroxy-L-arginine (100 microM) to AM led to nitrite release, which was unaffected by the NOS inhibitor amino guanidine showing that this effect is NOS independent. It is concluded that the limited nitric oxide production of human macrophages in vitro can neither be explained by limited availability of L-arginine, nor by nitric oxide synthase inhibiting substances in foetal serum. Furthermore, it is shown that nitrite release from Nomega-hydroxy-L-arginine by alveolar macrophages is nitric oxide synthase independent.

Animals↗

Increased vascular expression of iNOS at day but not at night in asthmatic subjects with increased nocturnal airway obstruction.

Nitric oxide production by endothelial cells may have important consequences for the development of airway inflammation as well as for airway obstruction. The present study investigated whether the expression of vascular inducible nitric oxide synthase (iNOS) and endothelial nitric oxide synthase (eNOS) in human bronchi differs between asthmatic and healthy subjects, and whether it shows a circadian rhythm, especially in subjects with increased nocturnal airway obstruction. Bronchial biopsy samples were taken at 16:00 and 04:00 h from 13 healthy and 25 asthmatic subjects, 18-45 yrs. Biopsy samples were snap-frozen and double-immunostained for iNOS and eNOS in combination with a common vascular antigen (CD31). The degree of immunopositivity was expressed as a percentage of CD31-positive vessels encountered in complete biopsy sections. Asthmatic subjects showed greater iNOS expression than healthy controls: 23+/-15 versus 7+/-17% (mean+/-SD) at 16:00 h (p<0.001) and 19+/-15 versus 8+/-11% at 04:00 h (p<0.05). Asthmatic subjects with a fall in forced expiratory volume in one second of >10% of the predicted value between 16:00 and 04:00 h showed greater iNOS expression at 16:00 than at 04:00 h: 32+/-16 versus 20+/-13% (p<0.05). eNOS expression did not differ between healthy controls and asthmatic patients, nor did it differ between 16:00 and 04:00 h. It is suggested that asthmatic subjects with increased nocturnal airway obstruction demonstrate increased activation of inducible nitric oxide synthase during the day. The resulting nitric oxide production might protect against airway obstruction during the day. However, at night, nitric oxide production is probably insufficient to counterbalance the bronchoconstricting forces.

Adolescent↗

Borg scores before and after challenge with adenosine 5'-monophosphate and methacholine in subjects with COPD and asthma.

Dyspnoea differs between subjects with chronic obstructive pulmonary disease (COPD) and asthma, partly because the underlying mechanisms for bronchoconstriction differ. This study investigated the possible role of inflammation and the contribution of clinical variables on dyspnoea in subjects with COPD and asthma. Forty-eight smoking subjects with COPD and 21 nonsmoking subjects with asthma, were challenged with adenosine 5'-monophosphate (AMP) and methacholine. The Borg score was assessed before and after each challenge. Mean increases in Borg score (per percentage decrease in baseline forced expiratory volume in one second (FEV1)) were significantly smaller in COPD than in asthma (p<0.01), values being 0.055 and 0.045 in COPD and 0.122 and 0.093 in asthma respectively. This difference was largely due to the fact that one-third of the subjects with COPD did not increase their Borg score during bronchoconstriction. The increase in Borg tended to be larger during AMP than during methacholine challenge, both in asthma and COPD. Changes in Borg scores were explained by age in COPD and by the Borg score before AMP challenge in asthma. The authors conclude that perception of dyspnoea during adenosine 5'-monophosphate and methacholine induced bronchoconstriction is lower in chronic obstructive pulmonary disease than in asthma and that age contributes to this difference. As adenosine 5'-monophosphate is regarded as an indirect marker of airway inflammation, the results suggest that inflammation is not important because both groups showed similar responses on such provocations.

Adenosine Monophosphate↗

Ongoing airway inflammation in patients with COPD who do not currently smoke.

BACKGROUND: Inflammatory changes in the airways in chronic obstructive pulmonary disease (COPD) are largely attributed to smoking, yet they may be present even if patients do not currently smoke. The differences in inflammatory cells and the factors contributing to these differences were examined in the airways of patients with COPD who do not currently smoke. METHODS: Eighteen non-atopic subjects with COPD (14 men) of mean (SD) age 62 (8) years and forced expiratory volume in one second (FEV(1)) 59 (13)% predicted and 11 non-atopic healthy subjects (eight men) of mean (SD) age 58 (8) years, FEV(1) 104 (11)% predicted were studied. Sputum induction and bronchoscopy with bronchoalveolar lavage (BAL) and biopsies were performed. RESULTS: Patients with COPD had more mucosal EG2+ cells (eosinophils) (median (range) 40 (0-190) versus 5 (0-40) cells/mm(2), p = 0.049) and CD68+ cells (1115 (330-2920) versus 590 (450-1580) cells/mm(2), p = 0.03), and a tendency towards more CD4+ but not CD8+ lymphocytes than healthy controls. Furthermore, patients with COPD had higher percentages of sputum neutrophils (77 (29-94) versus 36 (18-60)%, p = 0.001) and eosinophils (1.2 (0-8.5) versus 0.2 (0-3.1)%, p = 0.008), BAL fluid eosinophils (0.4 (0-1.7) versus 0.2 (0-0.5)%, p = 0.03), and higher concentrations of sputum eosinophilic cationic protein (ECP) (838 (115-23 760) versus 121 (35-218) ng/ml, p<0.001). Concentrations of ECP expressed per eosinophil were not higher. Patients with COPD with high mucosal EG2+ cell numbers also had high mucosal CD4+ cell numbers. Sputum eosinophilia was associated with a decrease in FEV(1)/VC and BAL fluid eosinophilia with a decrease in mucosal NP57+ cells (neutrophils). CONCLUSIONS: Subjects with COPD who do not currently smoke have increased numbers of inflammatory cells. Eosinophils are increased in number in the airways in COPD but do not seem to be activated. The increased eosinophil numbers are probably due to recruitment as a result of ongoing inflammation. Macrophages and lymphocytes may play a part in this inflammation.

Biopsy↗

[Nitric oxide and asthma].

Nitric oxide (NO) is a universal signalling molecule, involved in many physiological and pathophysiological processes, including asthmatic airway inflammation. Nitric oxide synthases (NOS) are newly identified enzyme systems active in airway epithelial cells, macrophages, neutrophils, mast cells, non-adrenergic non-cholinergic neurons, smooth muscle cells and endothelial cells. Two functional classes of NOS can be identified: the inducible form temporarily leading to large amounts of NO, and the constitutive form continuously leading to small amounts of NO. Large amounts of NO contribute to airway inflammation and killing of micro-organism, whereas small amounts of NO lead to smooth muscle relaxation. Asthmatic airway obstruction is induced by various bronchoconstricting factors (like allergens, pharmacological spasmogens, physical stimuli, infectious disease state) and is inhibited by NO. The development of specific inhibitors for the inducible form of NOS might open up a new era of antiasthmatic drugs.

Asthma↗

Vascular adhesion molecules in nocturnal asthma: a possible role for VCAM-1 in ongoing airway wall inflammation.

BACKGROUND: Increased airway inflammation at night is thought to be one of the underlying mechanisms in nocturnal asthma. Vascular adhesion molecules may be important for the recruitment of inflammatory cells in the process of asthmatic airway inflammation. OBJECTIVE: To determine the possible role of vascular adhesion molecules in increased airway inflammation at night in subjects with nocturnal asthma. METHODS: Bronchial biopsies were obtained at 16.00 h and 04.00 h from 13 healthy controls, 15 asthmatic patients with PEF variation < or = 15% and 10 asthmatic patients with PEF variation > 15%. Biopsies were snap-frozen and double-immunostained for CD31 in combination with P-selectin, E-selectin, ICAM-1 or VCAM-1. RESULTS: No significant day-night differences in expression of adhesion molecules were found in any of the three groups. The percentage of VCAM-1 positive vessels in biopsies of asthmatic patients was higher than in biopsies of healthy controls: 5.8 vs 2.5% (P < 0.05) at 16.00h and 11 vs 0% (P<0.05) at 04.00 h. In asthma, VCAM-1 expression was correlated with the number of EG2 positive cells: at 16.00 h (rho = 0.57, P < 0.01) as well as at 04.00 h (rho = 0.64, P< 0.01). Moreover, VCAM-1 expression was correlated with the number of CD25 positive cells at 16.00 h (rho = 0.43, P < 0.05) and at 04.00 h (rho = 0.41, P < 0.05). CONCLUSION: Increased nocturnal airway obstruction in asthma is not associated with an increased nocturnal expression of vascular E-selectin, P-selectin, ICAM-1 or VCAM-1. The relationship between vascular VCAM-1 expression and sub-mucosal EG2 and CD25 positive cells, both at 16.00 h and 04.00 h, suggests a role for VCAM-1 in the ongoing airway wall inflammation of asthma.

Adult↗

Exhaled nitric oxide is higher both at day and night in subjects with nocturnal asthma.

Nitric oxide in exhaled air is thought to reflect airway inflammation. No data have been reported so far on circadian changes in NO in subjects with nocturnal asthma. To determine whether exhaled NO shows a circadian rhythm inverse to the circadian rhythm in airway obstruction in subjects with nocturnal asthma, we conducted a study involving six healthy controls, eight individuals without nocturnal asthma (4-h to 16-h variation in peak expiratory flow [PEF] <= 15%), and six individuals with nocturnal asthma (4-h to 16-h PEF variation > 15%). Smoking, use of corticosteroids, and recent respiratory infections were excluded. NO concentrations were measured at 12, 16, 20, and 24 h, and at 4, 8, and 12 h of the next day, using the single-breath method. At the same times, FEV1 and PEF were also measured. Mean NO concentrations were significantly higher in subjects with nocturnal asthma than in subjects without nocturnal asthma, and higher in both groups than in healthy controls at all time points. Mean exhaled NO levels over 24 h correlated with the 4-h to 16-h variation in PEF (r = 0.61, p < 0.01). Exhaled NO did not show a significant circadian variation in any of the three groups as assessed with cosinor analysis, in contrast to the FEV1 in both asthma groups (p < 0.05). At 4 h, mean +/- SD NO levels were higher than at 16 h in subjects with nocturnal asthma; at 50 +/- 20 ppb versus 42 +/- 15 ppb (p < 0.05); other measurements at all time points were similar. Differences in NO and FEV1 from 4 h to 16 h did not correlate with one another. We conclude that subjects with nocturnal asthma exhale NO at higher levels both at night and during the day, which may reflect more severe diurnal airway-wall inflammation. A circadian rhythm in exhaled NO was not observed. NO levels did not correspond to the circadian rhythm in airway obstruction. The small increase in NO at 4 h may indicate an aspect of inflammation, but it is not associated with increased nocturnal airway obstruction.

Adolescent↗

Elevated serum interferon-gamma in atopic asthma correlates with increased airways responsiveness and circadian peak expiratory flow variation.

Interleukin (IL)-4, IL-5 and interferon (IFN)-gamma are thought to play an important role in chronic airway inflammation in asthmatic subjects. Increased airways responsiveness and nocturnal airway obstruction are important clinical manifestations of asthma. The aim of this study was to investigate whether IL-4, IL-5 and IFN-gamma values are elevated in atopic asthma and correlate with its clinical manifestations. Serum IL-4, IL-5 and IFN-gamma levels of 17 atopic asthmatics and eight nonatopic healthy subjects were determined at 16:00 and 04:00 h by a chemiluminescence enzyme-linked immunosorbent assay (ELISA) method. The clinical manifestation of asthma was determined by assessment of the degree of airway obstruction, airways responsiveness to methacholine and severity of nocturnal airway obstruction, defined as the mean circadian (16:00-04:00 h) peak expiratory flow (PEF) variation. Serum IL-4, IL-5 and IFN-gamma levels were significantly higher in asthmatic subjects as compared to healthy controls, both at 16:00 and 04:00 h. In asthmatic subjects serum IFN-gamma at both time points correlated significantly with the provocative concentration of methacholine causing a 20% fall in forced expiratory volume in one second (PC20,meth) (rho= - 0.55) and with the mean 16:00-04:00 h PEF variation (rho = 0.53). In contrast, no relationship was found between the levels of IL-4 and IL-5 and the parameters of clinical manifestation of asthma. The results suggest that the serum interferon-gamma level is a reflection of the severity of airway inflammation in atopic asthma. More studies are needed to detect the cellular sources and to clarify the exact roles of interferon-gamma and other pro-inflammatory cytokines in asthma.

Adolescent↗

Increased peak expiratory flow variation in asthma: severe persistent increase but not nocturnal worsening of airway inflammation.

Asthma at night is characterized by a nocturnal increase in airway obstruction. It has been hypothesized that nocturnal asthma results from an increase in airway wall inflammation at night. However, studies on inflammatory cells in bronchoalveolar lavage (BAL) fluid and bronchial biopsies have produced conflicting data. This study assessed inflammatory cell numbers at 16:00 h and 04:00 h in bronchial biopsies of 13 healthy controls, 15 asthmatic patients with peak expiratory flow (PEF) variation < or =15% and 10 asthmatic patients with PEF variation >15%. There was no significant increase at night in the number of CD3, CD4, CD8, CD25, AAI (tryptase) and EG2-immunopositive cells in the submucosa in both groups. Numbers of EG2-positive cells in the two asthmatic groups were significantly higher than in healthy controls, both at 16:00 h (p<0.05) and 04:00 h (p<0.01). The number of EG2, CD4 and CD25-positive cells at 04:00 and 16:00 h tended to be higher in asthmatics with a PEF variation >15% than in asthmatics with PEF variation < or =15%. At 04:00 h the median numbers of EG2-positive cells (per mm basement membrane) in subjects with PEF variation >15% and < or =15% were 6 and 3 cells, respectively, and at 16:00 h 4 and 25 cells respectively. Increased nocturnal airway obstruction is not associated with increased numbers of inflammatory cells in the bronchial submucosa at night. Apparently, asthmatic patients with a peak expiratory flow variation >15% suffer from a higher overall severity of bronchial inflammation at night and during the day.

Adolescent↗

Techniques in human airway inflammation: quantity and morphology of bronchial biopsy specimens taken by forceps of three sizes.

BACKGROUND: In recent years, fiberoptic bronchoscopy has been introduced successfully in the research of bronchial asthma. Bronchial biopsy specimens obtained by this procedure are small, and an optimal biopsy technique is necessary to obtain high-quality tissue samples, as sufficient length of intact basement membrane and sufficient depth of submucosal tissue are required. METHODS: We compared size and qualitative aspects of bronchial biopsy specimens from nonasthmatic subjects, obtained by forceps of three different sizes, types FB-19C, FB-21C, and FB-35C (Olympus; Tokyo, Japan). RESULTS AND CONCLUSIONS: We conclude from this study that the hypothesis that the bigger the biopsy forceps, the larger the biopsy specimen and the better the quality of the tissue does not hold. Bronchial biopsy specimens obtained with forceps type FB-35C and FB-21C were equal in size, but the FB-35C biopsy specimens showed more damage and crush artifacts, whereas biopsy specimens obtained with forceps type FB-21C had more intact basement membrane, more submucosal depth, and well-preserved morphology.

Biopsy↗

Submucosa 1.0 x 0.1 mm in size is sufficient to count inflammatory cell numbers in human airway biopsy specimens.

Counting of inflammatory cells in human airway biopsy specimens is difficult because immunopositive cells are present in varying density in lung tissue. The goal of our study was to assess the minimal amount of tissue that is necessary for the counting of constant cell numbers. In bronchial biopsy specimens from 5 healthy controls and 5 patients with asthma, we evaluated 20 successive areas of submucosa 0.1 x 0.1 mm in size. We recorded positive and negative changes of more than 10% in the counted numbers of CD4-, CD8-, and EG2-positive cells. We demonstrated that tissue 1.0 x 0.1 mm in size, along 1-mm basement membrane, is sufficient to obtain constant cell numbers.

Asthma↗

Techniques in human airway inflammation: differences in plastic-embedded and snap-frozen sections for CD3, CD4, and CD8 immunostaining of bronchial biopsy specimens.

Today, the quantification of inflammatory cells in human airway biopsies might be facilitated by better morphologic resolution provided by special resin (plastic)-embedding techniques. The present study compares the numbers of CD3-, CD4-, and CD8-positive cells in glycolmethacrylate-embedded versus snap-frozen biopsy specimens of normal bronchial mucosa in 10 patients with various pulmonary diseases. In general, larger numbers of CD3-, CD4-, and CD8-positive cells were counted in snap-frozen specimens than in plastic-embedded ones. Loss of antigenic properties during storage of plastic-embedded tissue (blocks) might have contributed to the weak correlation between both methods. An additional study showed that the number of CD3-, CD4-, and CD8-positive cells decreased significantly within a few months after embedding in glycolmethacrylate. Therefore, we recommend processing glycolmethacrylate-embedded specimens as soon as possible. For standard evaluation of established inflammatory cell parameters such as CD3, CD4, CD8, and EG2, frozen tissue is preferable because of the ease of the method and its reliable cell counting. Because glycolmethacrylate-embedded tissue shows superior morphologic resolution, under strict rules, this method seems attractive for the study, in particular, of cell-cell and cell-matrix relationships.

Biopsy↗