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Caterina Bucca

Publications and source records attributed to Caterina Bucca.

11 recordsLinked to original sources

Exhaled nitric oxide as a diagnostic test for asthma in rhinitic patients with asthmatic symptoms.

BACKGROUND: Rhinitis is a major risk factor for asthma, so that evaluation of the lower airways is recommended in patients with rhinitis. Exhaled nitric oxide (FE(NO)) is considered a marker of airway inflammation and it has been found to be useful for the screening of patients with suspected diagnosis of asthma. Our aim was to assess the validity and accuracy of FE(NO) to identify patients with asthma in 48 non-smoking patients with persistent rhinitis and asthma-like symptoms. METHODS: Asthma was diagnosed on the basis of 12% improvement in FEV1 after salbutamol or a methocholine PD(20)FEV1<800 microg. Prior to lung function FE(NO) was measured with the single exhalation method at 50 ml/s. RESULTS: The geometric mean (95% confidence interval) FE(NO) was significantly higher in the 18/48 asthmatics than in the non-asthmatic patients (60 ppb, CI 95%: 50-89, versus 30 ppb, CI 95%: 28-45, P=0.001). Receiver operating characteristic (ROC) curve for the diagnosis of asthma indicated that FE(NO) is an acceptable discriminator between patients with and without asthma (area under the ROC curve=0.78). None of the asthmatic patients had FE(NO) values<25 ppb and all the patients with FE(NO)>100 ppb (n=5) were asthmatics. The sensitivity and specificity of FE(NO) for detecting asthma, using 36 ppb as cut-off point, were 78% and 60% and the positive and negative predictive values were 54% and 82%, respectively. CONCLUSIONS: Measuring FE(NO) may be useful for the screening of rhinitic patients with asthma-like symptoms.

Adolescent↗

Tooth loss and obstructive sleep apnoea.

BACKGROUND: Complete tooth loss (edentulism) produces anatomical changes that may impair upper airway size and function. The aim of this study was to evaluate whether edentulism favours the occurrence of obstructive sleep apnoea (OSA). METHODS: Polysomnography was performed in 48 edentulous subjects on two consecutive nights, one slept with and the other without dentures. Upper airway size was assessed by cephalometry and by recording forced mid-inspiratory airflow rate (FIF50). Exhaled nitric oxide (eNO) and oral NO (oNO), were measured as markers of airway and oropharyngeal inflammation. RESULTS: The apnoea/hypopnoea index (AHI) without dentures was significantly higher than with dentures (17.4 +/- 3.6 versus 11.0 +/- 2.3. p = 0.002), and was inversely related to FIF50 (p = 0.017) and directly related to eNO (p = 0.042). Sleeping with dentures, 23 subjects (48%) had an AHI over 5, consistent with OSA, but sleeping without dentures the number of subjects with abnormal AHI rose to 34 (71%). At cephalometry, removing dentures produced a significant decrease in retropharyngeal space (from 1.522 +/- 0.33 cm to 1.27 +/- 0.42 cm, p = 0.006). Both morning eNO and oNO were higher after the night slept without dentures (eNO 46.1 +/- 8.2 ppb versus 33.7 +/- 6.3 ppb, p = 0.035, oNO 84.6 +/- 13.7 ppb versus 59.2 +/- 17.4 ppb, p = 0.001). CONCLUSION: These findings suggest that complete tooth loss favours upper airway obstruction during sleep. This untoward effect seems to be due to decrease in retropharyngeal space and is associated with increased oral and exhaled NO concentration.

Aged↗

Effects of levetiracetam on nocturnal sleep and daytime vigilance in healthy volunteers.

PURPOSE: Individuals with epilepsy commonly report daytime sleepiness, attributed to sleep disruption (frequent arousals, awakenings, and stage shifts) induced by ictal and interictal activity or antiepileptic drugs (AEDs) or both. To study the effect of levetiracetam (LEV) on sleep, at full doses but without the interference of epilepsy, we investigated the sleep architecture and daytime vigilance in healthy adults after 3 weeks of treatment. METHODS: The study was of a double-blind crossover design with random allocation of multiple doses of two different treatments (randomly first LEV <or=2,000 mg/day or placebo for 3 weeks, washout for 4 weeks, and then the alternative treatment for another 3 weeks). Fourteen healthy volunteers were studied with polysomnography (PSG) and the Multiple Sleep Latency Test (MSLT). Epworth Sleepiness Scale (ESS) and sleep log also were evaluated. RESULTS: After treatment with LEV, statistically significant increases were observed in total sleep time, sleep efficiency, and time spent in non-rapid eye movement (NREM) sleep stages 2 and 4. Stage shifts and wake after sleep onset were significantly decreased. Sleep latency was normal at PSG and MSLT in all subjects and did not statistically differ between placebo and LEV. No changes were found in the ESS. CONCLUSIONS: Our findings show that in healthy volunteers, LEV consolidates sleep and does not modify vigilance, two appreciated qualities in epilepsy patients with sleep disturbance and daytime sleepiness.

Adult↗

Angiotensin-converting enzyme inhibitors and obstructive sleep apnea.

Angiotensin-converting enzyme (ACE) inhibitors may induce cough and rhinopharyngeal inflammation. Obstructive sleep apnea (OSA) is characterized by upper airway inflammation. We describe a patient who, during enalapril treatment, developed cough, upper airway symptoms, and diurnal sleepiness, with an increased number of obstructive apnea-hypopnea episodes (apnea-hypopnea index [AHI], 25) during sleep. Her symptoms and AHI improved 1 month after enalapril was discontinued and diuretic therapy (hydrochlorothiazide-spironolactone) was initiated. Similar findings were observed in 4 other patients with OSA who had ACE inhibitor-induced cough. The mean +/- SD AHI was 33.8+/-21.0 during enalapril treatment and 20.0+/-17.0 after withdrawal of this drug (P = .04). Exhaled nitric oxide, a marker of airway inflammation, was increased during enalapril treatment (15.0 +/- 4.3 parts per billion) and decreased after discontinuation of this drug (9.0 +/- 2.6; P = .03). No significant difference in the AHI and exhaled nitric oxide was observed in 4 patients with OSA who did not experience cough, before or after withdrawal of ACE inhibitor treatment. These findings suggest that ACE inhibitor treatment may contribute to OSA by inducing upper airway inflammation.

Aged↗

Source of exhaled nitric oxide in primary biliary cirrhosis.

BACKGROUND: Exhaled nitric oxide (NO) levels may be elevated in patients with liver cirrhosis and autoimmune diseases. Primary biliary cirrhosis (PBC) is often associated with keratoconjunctivitis sicca (Sjogren syndrome [SS]), an extrahepatic autoimmune manifestation. The aim of this study was to evaluate the source of increased exhaled NO (ie, alveolar vs airway) in patients with PBC, whether associated with SS or not, and to evaluate its impact on oxygenation abnormalities. DESIGN: Observational controlled study. SETTING: University hospital. METHODS: The fractional alveolar NO concentration (FANO) and airway flux of NO (QbrNO) were measured by the multiple flows technique in 34 patients with PBC, 12 with associated SS, and were compared to 20 control subjects and 12 patients with primary SS. RESULTS: FANO was significantly higher in patients with PBC, associated with SS (mean [+/- SEM], 8.9 +/- 0.8 parts per billion [ppb]) or not (mean, 7.7 +/- 0.7 ppb) compared to healthy control subjects (mean, 4.6 +/- 0.5 ppb; p < 0.001) and to patients with primary SS (mean, 4.3 +/- 0.5 ppb; p < 0.001). FANO was significantly higher in cirrhotic patients with increased alveolar-arterial oxygen pressure difference (P[A-a]O(2)) compared to patients with normal P(A-a)O(2) values (9.8 +/- 0.8 vs 7.3 +/- 0.7, respectively; p = 0.018). When compared with control subjects and with patients with PBC not associated with SS, QbrNO was significantly increased in patients with both primary SS and SS associated with PBC. CONCLUSIONS: Increased exhaled NO levels found in PBC are from both alveolar and airway sources in patients with associated SS, but only FANO is associated with oxygenation impairment.

Exhalation↗

Exhaled nitric oxide during exercise and dobutamine stress echocardiography in patients with mitral stenosis.

BACKGROUND: Pulmonary hypertension (PH) is an important limiting factor of exercise tolerance in patients with mitral stenosis (MS). We wished to investigate the relationship between respiratory nitric oxide (NO), a potent vasodilator, and exercise tolerance in patients with moderate MS. In the same patients, we wondered whether acute change in pulmonary hemodynamics could affect respiratory NO. METHODS: Ten patients with moderate MS (valve area 1.4+/-0.2 cm(2)) were studied at rest, during incremental cycle ergometry exercise, and during dobutamine stress echocardiography (DSE). The concentration of NO in exhaled air (FE(NO)) and NO output (V'(NO)) were measured at baseline, at the end of exercise, and at the end of DSE. Eight healthy subjects served as normal controls for NO output during exercise. RESULTS: During exercise, FE(NO) decreased both in patients and in controls, while V'(NO) increased in both. At the end of exercise, both VO(2) max and V'(NO) were significantly higher in controls than in patients. The increase in V'(NO) during exercise was significantly correlated with VO(2) max, both in patients and in controls. During DSE, cardiac output (CO), pulmonary artery pressure (PAP), and mitral valve gradient increased. No changes in mean FE(NO), V'(NO), or ventilation were observed during DSE. There was a significant inverse correlation between FE(NO) and mitral valve gradient at the end of DSE. CONCLUSIONS: In patients with moderate MS, exercise performance is correlated with respiratory NO output. In the same patients, during DSE, the increase in CO, which is not accompanied by an increase in ventilation, is not associated with an increase in respiratory V'(NO).

Journal Article↗