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Biomedical subjects

Francesco Pistelli

Publications and source records attributed to Francesco Pistelli.

6 recordsLinked to original sources

Reference equations for spirometry from a general population sample in central Italy.

Aim of this study was to derive new lung function reference equations and compare the predicted values with those from three sets of existing reference equations: one derived from a Northern Italy population and the two others widely used in European (ECCS) and American (NHANES III) clinical practice. Reference equations for flow-volume curve indexes and VC were derived on 497 normal subjects, aged 8-74, from the epidemiological survey in Pisa, Central Italy (1991-1993). By applying natural cubic splines, one single smooth and continuous equation for the entire age range was provided for each index, separately by gender. Along with age and height, reference values also depended on BMI. Differences among the four reference equations for FEV(1), FVC, VC were quantified for average subjects. The magnitude largely varied over the age range in both genders, reaching up to half litre of air volume at specific ages. Age-gender-specific prevalence rates of airway obstruction, as defined by the ERS criterion, largely varied by applying the considered equations, the differences ranging from -3% to 28%. The observed discrepancies confirm that reference equations should be derived from a population most similar to that for which the equations are to be used and based on measurements obtained by the same instrument and testing procedures, in order to minimize technical variability in lung function both for clinical and epidemiological purposes.

Adolescent↗

Respiratory symptoms/diseases and environmental tobacco smoke (ETS) in never smoker Italian women.

AIM: To study the relationship between respiratory/allergic disorders and chronic environmental tobacco smoke (ETS) exposure to husband or at workplace among non-smoking women of a general population in Italy. METHODS: Analyses regard 2195 married or employed women. Information was collected through a self-administered questionnaire. ETS exposure was validated by salivary cotinine. RESULTS: Exposure both to husband and at work resulted a significant risk factor for current dyspnoea (odds ratio (OR) 1.61, 95% confidence interval (CI) 1.20-2.16), any shortness of breath at rest (OR 2.81, 95% CI 1.83-4.30), recent wheeze (OR 1.71, 95% CI 1.04-2.82), recent attacks of shortness of breath with wheeze (OR 1.85, 95% CI 1.05-3.26), asthma diagnosis/symptoms (OR 1.50, 95% CI 1.09-2.08), diagnosis of asthma or bronchitis/emphysema (obstructive lung diseases (OLD)) (OR 2.24, 95% CI 1.40-3.58), current cough/phlegm (OR 1.52, 95% CI 1.07-2.15), and rhino-conjunctivitis (OR 1.48, 95% CI 1.13-1.94). Exposure only at work yielded higher adjusted odds ratios for all health conditions, except for rhino-conjunctivitis. Overall, about 24% of shortness of breath at rest, 16% of dyspnoea, 17% of rhino-conjunctivitis, 12% of OLD, and 10% of asthma diagnosis/symptoms are attributable to the effect of exposures to both husband and at work. Twelve percent of shortness of breath at rest and 10% of rhino-conjunctivitis cases might be avoided by eliminating exposure only at work and only to husband, respectively. CONCLUSIONS: Lifetime ETS exposure, especially at work, is associated with respiratory symptoms/diseases, and it accounts for a sizeable proportion of such disorders. The combined effect of both exposures is higher than the separate effects.

Adolescent↗

Epidemiology of chronic obstructive pulmonary disease: health effects of air pollution.

COPD is one of the leading causes of morbidity and mortality in the industrialized and the developing countries. According to the prediction of the World Health Organization, COPD will become the third leading cause of mortality and the fifth cause of disability in 2020 worldwide. In epidemiology, distinct phenotypic entities converge on the term COPD, so that prevalence and mortality data may be inclusive of chronic bronchitis, emphysema and asthma; moreover, the assessment of prevalence rates may change considerably according to the diagnostic tools used. Thus, a considerable problem is to estimate the real prevalence of COPD in the general population. COPD is determined by the action of a number of various risk factors, among which, the most important is cigarette smoking. However, during the last few decades, evidence from epidemiological studies finding consistent associations between air pollution and various outcomes (respiratory symptoms, reduced lung function, chronic bronchitis and mortality), has suggested that outdoor air pollution is a contributing cause of morbidity and mortality. In conclusion, epidemiological studies suggest that air pollution plays a remarkable role in the exacerbation and in the pathogenesis of chronic respiratory diseases. Thus, respiratory physicians, as well as public health professionals, should advocate for a cleaner environment.

Air Pollution↗

Plasma, salivary and urinary cotinine in non-smoker Italian women exposed and unexposed to environmental tobacco smoking (SEASD study).

BACKGROUND: The aim of this study was to compare cotinine determinations in three biological fluids for assessing environmental tobacco smoke (ETS) exposure in female non-smokers (n=1605) in Italy. METHODS: Information about ETS exposure at home, in the workplace, and in other places within the previous week was collected via questionnaire. Plasma, salivary and urinary cotinine levels were measured. Cotinine levels of > or =0.1 ng/mL for plasma, > or =0.2 ng/mL for saliva, and > or =0.5 ng/mL for urine were used to determine biochemical exposure. RESULTS: Median cotinine levels were significantly higher in exposed than in unexposed women (0.21 vs. 0.05 ng/mL in plasma, 0.80 vs. 0.41 ng/mL in saliva, and 9.74 vs. 5.30 ng/mL in urine). Self-reported ETS exposure was significantly related to biochemical exposure [odds ratio 2.99, (95% CI 2.40-3.72) for plasma; 1.90 (1.51-2.39) for saliva; and 2.67 (2.14-3.34) for urine]. Cotinine significantly increased with increasing exposure level, regardless of the exposure source. Among self-reported exposed subjects, higher percentages of cotinine level above the cut-off, i.e., indicating exposure, were found in saliva (76%) and urine (75%) than in plasma (52%). CONCLUSIONS: In general, women correctly reported their ETS exposure status. Both non-invasive salivary and urinary cotinine determinations seem preferable in epidemiological studies, in view of their higher sensitivity, when compared to plasma cotinine.

Adolescent↗

Indoor exposures and acute respiratory effects in two general population samples from a rural and an urban area in Italy.

A study of indoor air exposures and acute respiratory effects in adults was conducted in the Po Delta (rural) and Pisa (urban) areas of Italy. Indoor exposures were monitored for nitrogen dioxide (NO(2)) and particulate matter <2.5 microm (PM(2.5)) for 1 week during the winter or summer in a total of 421 houses (2/3 in Pisa). Information on house characteristics, subjects' daily activity pattern and presence of acute respiratory symptoms was collected by a standardized questionnaire. Peak expiratory flow (PEF) maneuvers were performed by adult subjects four times daily; maximum amplitude and diurnal variation were taken into account. Indices of NO(2) and PM(2.5) exposures were computed as the product of weekly mean pollutant concentration by the time of daily exposure. Mean levels of pollutants were significantly higher in winter than in summer, regardless of the area. The relationship between exposure indices and acute respiratory symptoms was investigated only in winter. In spite of a slightly lower indoor level in the urban than in the rural area in winter (NO(2): 15 vs. 22 ppb; PM(2.5): 67 vs. 76 microg/m(3)), prevalence rates of acute respiratory symptoms were significantly higher in the urban than in the rural area. Acute respiratory illnesses with fever were significantly associated with indices of NO(2) (odds ratio (OR)=1.66; 95% CI=1.08-2.57) and PM(2.5) exposures (OR=1.62; 95% CI=1.04-2.51), while bronchitic/asthmatic symptoms were associated only with PM(2.5) (OR=1.39; 95% CI=1.17-1.66). PEF variability was positively related only to PM(2.5) exposure index (OR=1.38; 95% CI=1.24-1.54, for maximum amplitude; OR=1.37; 95% CI=1.23-1.53, for diurnal variation). In conclusion, indoor pollution exposures were associated with the presence of acute respiratory symptoms and mild lung function impairment in a rural and an urban area of Northern-Central Italy.

Activities of Daily Living↗

[Epidemiology of chronic obstructive pulmonary disease].

Chronic obstructive pulmonary disease (COPD) is an important cause of morbidity and mortality, all over the world. COPD, which was the sixth leading cause of death worldwide in 1990, will become the third one in 2020. COPD is a complex disease, influenced by genetic, behavioral, and environmental factors. The most important factor for developing COPD is tobacco smoke. Also environmental conditions represents risk for developing COPD. Furthermore, diet and a low socioeconomic status are correlated to the disease. Genetic factors, familial history, and childhood lower respiratory tract infections play an important role in the etiology of COPD. Burden of COPD is very high for community. Furthermore, the disease often is under-diagnosed and treated only at advanced stages, whilst it is a substantial health problem even among young adults. This needs to be taken into account by health personnel and decision-makers.

Adult↗