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Biomedical subjects

E Nizankowska

Publications and source records attributed to E Nizankowska.

At least 19 recordsLinked to original sources

Ras p21 protein levels in human plasma from patients with chronic obstructive pulmonary disease (COPD) compared with lung cancer patients and healthy controls.

To explore the value of an increase in ras p21 proteins in plasma as a biomarker for the carcinogenic process or for the general disease state, we have directly analysed for ras p21 proteins, plasma samples from Polish human patients with chronic obstructive pulmonary disease (COPD). They were compared with appropriate controls and also with the Polish lung cancer patients previously examined before treatment [D. Anderson, J.A. Hughes, A. Cebulska-Wasilewska, E. Nizankowska, B. Graca, Ras oncoproteins in human plasma from lung cancer patients and healthy controls, Mutat. Res. 349 (1996) 121-126]. An elevated level of ras p21 proteins was considered to be greater than 2 standard deviations (SD) above the mean negative control values. Nine out of 20 COPD patients (mean age = 65.9 years) had increased ras p21 protein levels when compared with 20 age-matched (mean age = 62.4 years) controls of the present study with a mean + 2 SD of 0.70. Eighteen out of 40 lung cancer patients (mean age = 60.1 years) had increased ras p21 protein levels compared with their concurrent controls (mean age = 40.2 years) with a mean + 2 SD of 2.53. However when compared with the age-matched controls of this present study, there were 35 out of 40 (87.5%) with increased levels. When the COPD patients and lung cancer patients were compared with 101 historical controls (age range 25-76 years, of those whose age was recorded) from unexposed healthy populations from Poland, Estonia and Spain with a mean + 2 SD of 1.83, then 4 out of 20 (20%) COPD patients and 30 out of 40 (75%) lung cancer patients had increased levels. Whether using concurrent controls, age-matched controls or historical controls, the data would suggest that an increase in ras p21 protein levels in plasma from lung cancer patients could be a possible prognostic marker or biomarker for lung cancer. COPD patients when compared with historical controls or age-matched controls had lower ras p21 protein values than cancer patients. Their ras p21 protein values might also be a biomarker for cancer. It is possible that some of these COPD patients were in the process of developing cancer or perhaps would die from COPD before cancer develops. It cannot be ruled out that the increases could be a biomarker of exposure since many of the lung cancer patients and most of the COPD patients were smokers.

Aged

Overexpression of leukotriene C4 synthase in bronchial biopsies from patients with aspirin-intolerant asthma.

Aspirin causes bronchoconstriction in aspirin-intolerant asthma (AIA) patients by triggering cysteinyl-leukotriene (cys-LT) production, probably by removing PGE2-dependent inhibition. To investigate why aspirin does not cause bronchoconstriction in all individuals, we immunostained enzymes of the leukotriene and prostanoid pathways in bronchial biopsies from AIA patients, aspirin-tolerant asthma (ATA) patients, and normal (N) subjects. Counts of cells expressing the terminal enzyme for cys-LT synthesis, LTC4 synthase, were fivefold higher in AIA biopsies (11.5+/-2.2 cells/mm2, n = 10) than in ATA biopsies (2.2+/-0.7, n = 10; P = 0. 0006) and 18-fold higher than in N biopsies (0.6+/-0.4, n = 9; P = 0. 0002). Immunostaining for 5-lipoxygenase, its activating protein (FLAP), LTA4 hydrolase, cyclooxygenase (COX)-1, and COX-2 did not differ. Enhanced baseline cys-LT levels in bronchoalveolar lavage (BAL) fluid of AIA patients correlated uniquely with bronchial counts of LTC4 synthase+ cells (rho = 0.83, P = 0.01). Lysine-aspirin challenge released additional cys-LTs into BAL fluid in AIA patients (200+/-120 pg/ml, n = 8) but not in ATA patients (0. 7+/-5.1, n = 5; P = 0.007). Bronchial responsiveness to lysine-aspirin correlated exclusively with LTC4 synthase+ cell counts (rho = -0.63, P = 0.049, n = 10). Aspirin may remove PGE2-dependent suppression in all subjects, but only in AIA patients does increased bronchial expression of LTC4 synthase allow marked overproduction of cys-LTs leading to bronchoconstriction.

Aspirin

Nasal provocation test with lysine-aspirin for diagnosis of aspirin-sensitive asthma.

Nasal provocation tests (NPTs) with lysine-aspirin (L-ASA) have been recently introduced for assessment of aspirin-induced asthma (AIA). They differ in dose and means of aspirin instillation, duration of observation period, and criteria for positivity. Thus far they have not become a routine part of clinical diagnosis. Fifty-one patients with AIA, confirmed by oral challenge test, were recruited to undergo diagnostic NPTs with L-ASA. In 10 of these patients (19.6%), NPTs could not be performed because of total obstruction of at least one nostril or marked fluctuations in nasal flows, leaving 41 patients with AIA for the study. Control groups consisted of 13 aspirin-tolerant asthmatic patients and 10 healthy subjects. L-ASA at a total dose of 16 mg of acetylsalicylic acid applied bilaterally into the inferior nasal conchae caused significant fall in inspiratory nasal flow in at least one nostril (>40%), which was measured by anterior rhinomanometry, and clinical symptoms of watery discharge and nasal blockage in 35 of 41 patients with AIA, one of 10 healthy subjects, and none of 13 aspirin-tolerant asthmatic patients. No relationship was found between the baseline nasal flow values and the intensity of response to L-ASA. No systemic reactions, including bronchospasm, were noticed, even in patients whose initial FEV1 was lower than 70% of predicted value. This test is highly specific (95.7%) and sensitive (86.7%), but negative results do not exclude possible intolerance to aspirin (predictive value of a negative result 78.6%). In conclusion, the NPT described is a simple, safe, and quick test for diagnosis of AIA. It can be used in patients with unstable asthma. It may be a method of choice to confirm hypersensitivity to aspirin manifested only by symptoms from the upper respiratory tract. Patients suspected of aspirin intolerance who have negative NPT results should undergo bronchial or oral challenge tests with aspirin.

Adult

Benefits from adding the 5-lipoxygenase inhibitor zileuton to conventional therapy in aspirin-intolerant asthmatics.

From bronchoprovocation studies and investigations of the acute effects of drugs that inhibit leukotrienes (LT), the hypothesis has emerged that leukotrienes are important mediators of airway obstruction and other symptoms in aspirin-intolerant asthma (AIA). However, it has yet not been shown if subjects with AIA respond favorably to clinical treatment with leukotriene inhibitors. Therefore, in a double-blind placebo-controlled crossover study, we examined the effects of 6 wk of treatment with the leukotriene-pathway inhibitor zileuton (600 mg, four times daily) in 40 patients with well-characterized AIA. The treatment was added to existing therapy, which included medium to high doses of inhaled (average daily dose 1,030 microg of beclomethasone or budesonide) or oral glucocorticosteroids (4 to 25 mg/d) for all but one of the patients. On top of this treated baseline, there were no significant effects of adding placebo, indicating that their asthma was kept relatively stable. However, there was an acute and chronic improvement in pulmonary function after treatment with zileuton, expressed both as increased FEV1 from baseline compared with placebo, and higher morning and evening peak expiratory flow rate (PEFR) values on zileuton treatment compared with placebo. The improvements occurred despite lower use of rescue bronchodilator with zileuton. Zileuton also diminished nasal dysfunction, which is one of the cardinal signs of AIA. There was a remarkable return of smell, less rhinorrhea, and a trend for less stuffiness and higher nasal inspiratory flow during treatment with zileuton. Zileuton caused a small but distinct reduction of bronchial hyperresponsiveness to histamine and inhibited aspirin-induced bronchoconstriction. Zileuton inhibited urinary excretion of LTE4 but did not change airway reactivity to inhaled LTD4, supporting that zileuton specifically inhibited leukotriene biosynthesis. The findings indicate that leukotrienes are important mediators of persistent airway obstruction and chronic nasal dysfunction in AIA. The study also suggests that addition of a leukotriene pathway inhibitor such as zileuton may bring about greater control of asthma than what is achieved by treatment with medium to high doses of glucocorticosteroids alone.

Adrenergic beta-Agonists

Salmeterol prevents aspirin-induced attacks of asthma and interferes with eicosanoid metabolism.

We determined the effect of a long acting beta2-agonist, salmeterol, on aspirin-induced asthma (AIA) attacks and urinary release of eicosanoids in a double-blind, placebo-controlled, crossover study in 10 asthmatics sensitive to aspirin. The patients inhaled 50 microgram of salmeterol or placebo 15 min prior to a cumulative challenge with increasing doses of lysine-aspirin (L-ASA) (Part I), and before a single, predetermined dose of L-ASA that caused a 20% fall in FEV1 (PD20) (Part II). Salmeterol significantly attenuated aspirin-precipitated bronchoconstriction and the increase in urinary LTE4. Salmeterol also prevented the decrease in blood eosinophils, and abolished the correlation between the urinary levels of LTE4 and provocative doses of aspirin. In addition, PGD-M, the major urinary metabolite of PGD2, increased after L-ASA inhalation in six of nine subjects; this increase was blocked in all six by salmeterol. The protective effect of salmeterol on aspirin-induced attacks and mediator release suggests that it may be efficacious in aspirin-sensitive asthma.

Administration, Inhalation

Factors affecting various biomarkers in untreated lung cancer patients and healthy donors.

The purpose of the present communication was to determine in lung cancer patients and healthy donors if there was a possible association between cancer and biomarkers of cytogenetic damage and ras p21 oncoprotein levels, and if various exogenous confounding factors (such as smoking habit) and endogenous ones (age, sex, etc.) could affect these biomarkers. Peripheral blood and plasma were collected from 31 lung cancer patients prior to treatment and 35 healthy donors of a similar socioeconomic status and from the same region in Poland. Chromosomal aberrations (CA), sister chromatid exchanges (SCE), high frequency cells (HFC), and proliferative rate index (PRI) were examined from the blood and ras p21 oncoproteins from the plasma. These parameters were used as biomarkers of genotoxic anomalies. All the biomarkers were examined for their relationship to confounding factors of age, sex, smoking habit, and immediate family cancer history. Results were analyzed by a t-test, analysis of variance (ANOVA), and stepwise multivariate regression analysis. All types of CA (including and excluding gaps), percent aberrant cells, SCE, and ras p21 oncoproteins were statistically significantly higher in cancer patients than in the healthy donors. Although there were smaller numbers of females in the cancer patients group who were older than the males, there was a difference due to sex (gender) with statistically significant increases in females for CA, SCE, and HFC, but there was no increase for ras p21 oncoproteins. Cytogenetic damage was not related to other cancers in the immediate families of the groups. All major CA parameters differed significantly between smokers and non-smokers in the cancer patients group, and SCE and HFC differed in the healthy donors group. Such parameters also showed a significant variability with the number of cigarettes smoked and the years of smoking habit. Multivariate regression analyses showed a significant association between cytogenetic damage, ras p21 oncoproteins, and cancer. In conclusion, cytogenetic damage and ras p21 oncoproteins in this study appear to be biomarkers associated with cancer, but have not been proved causally, and confounding factors such as age, sex (gender), and smoking can have an impact on them.

Adult

Intranasal fluticasone propionate for chronic eosinophilic rhinitis in patients with aspirin-induced asthma.

We performed a double-blind, crossover, placebo-controlled study on the effect of fluticasone propionate (FP) treatment on chronic eosinophilic rhinosinusitis in 15 patients with aspirin-induced asthma (AIA). There were 10 women and five men aged 32-60 years; average: 45 years. After a 10-day run-in period, patients underwent two 4-week treatment courses (FP vs placebo), separated by a 2-week washout interval. Clinical activity of FP was evaluated by daily measurement of peak nasal inspiratory flow (PNIF) and a scoring system of subjective symptoms. Nasal challenges with E-lysine aspirin, using active anterior rhinomanometry, were performed at the entry and on the last day of each treatment period. Weekly mean values of symptom scores were generally lower and PNIF measurements higher during treatment with FP than with placebo. This difference was statistically significant for most recorded parameters for the whole 4-week FP treatment. On average, the reactions evoked by aspirin nasal challenge were significantly shorter and milder after treatment with FP than with placebo. In 8/13 patients, FP completely prevented aspirin-precipitated nasal reaction, whereas protection after placebo was observed in only 2/12 subjects (P = 0.004). We conclude that intranasal FP is an effective therapy for chronic eosinophilic rhinitis in patients with AIA.

Administration, Intranasal

Aspirin-induced asthma and HLA-DRB1 and HLA-DPB1 genotypes.

BACKGROUND: Aspirin-induced asthma (AIA) affects one in 10 individuals with adult-onset asthma. It is not known if aspirin sensitivity is due to immune mechanisms or to interference with biochemical pathways. OBJECTIVE: The study aimed to test for possible involvement of the genes of the Major Histocompatibility Complex (MHC) in AIA. METHODS: HLA-DPB1 and HLA-DRB1 genotyping was carried out by DNA methods in 59 patients with positive challenge tests for AIA and in 48 normal and 57 asthmatic controls. RESULTS: The DPB1*0301 frequency was increased in AIA patients when compared with normal controls (19.5% vs 5.2%, Odds Ratio = 4.4, 95% Confidence Interval (CI) 1.6-12.1, P = 0.002), and compared with asthmatic controls (4.4%, OR = 5.3, 95% CI = 1.9-14.4, P = 0.0001). The frequency of DPB1*0401 in AIA subjects was decreased when compared with normal controls (28.8% vs 49.0%, OR = 0.42, 95% CI = 0.24-0.74, P = 0.003) and asthmatic controls (45.6%, OR = 0.48, 95% CI = 0.28-0.83, P = 0.008). The results remained significant when corrected for multiple comparisons. There were no significant HLA-DRB1 associations with AIA. CONCLUSION: The presence of an HLA association suggests that immune recognition of an unknown antigen may be part of the aetiology of AIA.

Adult

Cytokine production in human and rat macrophages and dicatechol rooperol and esters.

The ability of dicatechol rooperol and esters to inhibit the production of cytokines in endotoxin-stimulated human alveolar macrophages, human blood monocyte/macrophages, histiocytic cell line U937, and rat alveolar macrophages was examined in vitro. Rooperol derivatives inhibited the production of tumour necrosis factor-alpha, interleukin-1 beta and interleukin-6. Of the esters tested on human cells, rooperol diacetate and tetraacetate were more potent inhibitors of cytokine production (IC50 in the range of 10-20 microM) than rooperol disulphate (IC50 in the range of 25-75 microM). The acetate esters also inhibited cytokine production in rat alveolar macrophages, whereas the sulphate had little effect. Rooperol and acetate esters, in the same concentration range, decreased the production of nitric oxide by rat alveolar macrophages stimulated by endotoxin. These concentrations of rooperol had no effect on cell viability, as indicated by incorporation of 14C-labelled leucine into macrophage proteins and their content of lactate dehydrogenase. The results obtained suggest that rooperol esters are potentially useful antiinflammatory agents.

Animals

ras oncoproteins in human plasma from lung cancer patients and healthy controls.

In order to explore the significance of ras oncoproteins in plasma in the carcinogenic process, we have examined samples from 40 Polish human lung cancer patients prior to treatment. They were compared with 35 healthy donors and have been screened using a direct analysis of the plasma. Proteins were separated by gel electrophoresis, transferred to a nitrocellulose membrane by Western blotting and detected by chemiluminescence, using monoclonal ras antibody as the primary antibody. Elevated increases in ras oncoproteins were determined where an increase was considered to be greater than 2 standard deviations above the mean negative control values. The results showed that in 45% of cancer patients ras oncoprotein levels were statistically significantly increased (P < 0.001, pooled two-sample t-test untransformed, and non-parametric Mann-Whitney test) in the plasma by comparison with 6% in the controls. This would suggest that an increase in ras oncoproteins in plasma could be a possible prognostic marker or biomarker for lung cancer.

Adult

The atopy trait in hypersensitivity to nonsteroidal anti-inflammatory drugs.

The prevalence of atopy was evaluated in two groups of subjects with hypersensitivity to nonsteroidal anti-inflammatory drugs (NSAID): 1) 78 patients with aspirin-induced asthma (AIA) confirmed by oral or bronchial provocation challenges 2) 42 subjects with hypersensitivity to pyrazolone drugs (case history and positive skin tests to noramidopyrine/aminophenazone) who tolerated aspirin well. Fifty sex- and age-matched persons from an unselected general population, with no hypersensitivity to NSAID, formed the control group. Atopy was estimated from the results of the following clinical and biologic parameters: 1) personal and family history of atopic diseases 2) skin prick tests with 16 aeroallergens 3) serum levels of specific IgE to five aeroallergens 4) total serum IgE level. Different definitions of atopy were used, consisting of constellations of two or three of the above-mentioned features. The results of the study revealed that the prevalence of atopy varied according to the criteria used for its definition. Irrespective of the definition used, a similar distribution of atopy was observed in both groups of patients with hypersensitivity to NSAID. Atopy was more frequent in either group of patients with intolerance of NSAID than in the control group. Thus, atopy is related to adverse drug reactions to NSAID.

Adult

Protective and bronchodilator effects of prostaglandin E and salbutamol in aspirin-induced asthma.

We performed a double-blind, two-phase study on protective and bronchodilator effects of prostaglandins E2 and E1 (PGE2, PGE1) and salbutamol in patients with aspirin-induced asthma (AIA). In phase 1 we assessed the effects of pretreatment with PGE2, salbutamol, or the PGE1-analogue, misoprostol, on bronchoconstriction precipitated by inhalation of L-lysine aspirin in 11 patients with AIA. PGE2 and salbutamol were inhaled at equimolar concentrations of 0.25 mumol, 5 min before the aspirin challenge, while 400 micrograms misoprostol was administered orally 1 h before challenge. PGE2 attenuated the bronchoconstrictive reactions in 10 patients, salbutamol in eight, and misoprostol in seven. The mean provocative dose of aspirin causing a 20% fall in FEV1 (PD20) decreased after PGE2 (p = 0.04) and salbutamol (p = 0.06), but only marginally after misoprostol (p = 0.25). There was a positive correlation between magnitude of the protection offered by the three compounds in individual subjects. In phase 2, we examined bronchial response to inhaled PGE2, PGE1, salbutamol, and 2% ethanol in 12 AIA patients compared with 10 aspirin-tolerant patients with asthma. AIA subjects were characterized by less pronounced and shorter bronchodilator responses. There was no correlation between the protective and bronchodilator actions of the compounds used in individual patients. Thus, inhaled PGE2 and salbutamol protect against aspirin-induced attacks of asthma through mechanisms unrelated to their bronchodilator properties. Airways of aspirin-sensitive patients with asthma demonstrate distinct bronchial reactivity.

Administration, Inhalation

Bronchial aspirin challenge causes specific eicosanoid response in aspirin-sensitive asthmatics.

We have shown that inhalation of lysine aspirin enhances leukotriene production in the lungs of patients with aspirin-induced asthma (AIA). To assess the specificity of this reaction, we compared two well-matched groups of patients: eleven with AIA versus 14 asthmatics tolerant to aspirin (ATA). All subjects underwent bronchoalveolar lavage (BAL) with saline followed immediately by instillation of 10 mg of lysine aspirin, into a right middle lobe segmental bronchus, which was lavaged 15 min later. At baseline the two groups did not differ with respect to BAL fluid concentrations of cyclooxygenase products, peptido-leukotrienes, histamine, tryptase, interleukin-5 (IL-5), eosinophil cationic protein (ECP), or eosinophil number. Fifteen minutes after aspirin instillation, there was a statistically significant rise in peptido-leukotrienes, IL-5, and eosinophil number in AIA, but not in ATA, but not in ATA patients. In the former, but not in the latter group, mean histamine concentrations rose in response to aspirin, approaching the level of statistical significance. Tryptase and ECP levels showed no significant change. Aspirin significantly depressed PGE2 and thromboxane B2 (TXB2) in both groups, however PGD2, PGF2 alpha, and 9 alpha, 11 beta-PGF2 decreased only in ATA patients. A characteristic disturbance in eicosanoid balance, produced by aspirin in patients intolerant to this drug, might explain precipitation of asthma attacks.

Adult

Autoimmune phenomena in bronchial asthma with special reference to aspirin intolerance.

We assessed the autoimmune status of 185 adult patients with bronchial asthma and 46 healthy subjects of similar sex and age. The patients were divided into groups with: (1) aspirin-induced asthma (AIA) (n = 80); (2) intrinsic asthma with good aspirin tolerance (n = 46); and (3) atopic asthma (n = 59). Antinuclear antibodies (ANA) at a titer of > or = 1:40 were present in the serum of 55% of the patients with AIA, 41% of those with intrinsic asthma, 39% of those with atopic asthma, and 11% of the healthy subjects, with the difference between each patient group and the healthy subjects being statistically significant (p < 0.05). The fluorescence staining pattern of ANA on Hep-2 cells was mainly speckled, but the precise antigen specificity of the antibodies could not be identified with reference sera against extractable nuclear antigens. None of the subjects exhibited anti-double stranded deoxyribonucleic acid (anti-ds-DNA) or anti-neurtrophil cytoplasmic antibodies (ANCA). Positive ANA were associated with signs of complement activation, the presence of rheumatoid factor, and circulating immune complexes. Clinical signs of autoimmunity, evidenced by rheumatic symptoms, cold sensitivity, and Raynaud's phenomenon, were more common among the patients who tested positively for ANA. The assessment of autoimmunity may help in better characterizing patients with asthma and understanding various symptoms of the disease. Any causal relationship between asthma and autoimmunity remains to be established.

Adolescent