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Biomedical subjects

C A Sorbini

Publications and source records attributed to C A Sorbini.

At least 37 records · Page 2Linked to original sources

Ventilatory effects of selective beta 1-(prenalterol) or beta 2-(salbutamol) adrenoceptor agonism in man.

We compared the ventilatory effects of prenalterol (beta 1-selective adrenoceptor agonist) with those of salbutamol (beta 2-selective adrenoceptor agonist) in 6 healthy volunteers. Two intravenous doses of prenalterol (1 mg/60 min, 2 mg/60 min) and of salbutamol (300 micrograms/60 min, 600 micrograms/60 min) were given in random order in 4 separate sessions of 60 minutes each. Pulmonary ventilation per minute (V'E) increased only on the high dose of salbutamol. Mouth occlusion pressure (P0.1) did not vary either on prenalterol or on salbutamol. Only the high dose of salbutamol induced (1) an increase in tidal volume (VT) without changes in respiratory rate (RR), (2) an increase in mean inspiratory flow (VT/Ti) without changes in the fraction of inspiratory time to total cycle duration (Ti/Ttot). During forced expiration, salbutamol elicited a small bronchodilating effect at the level of both large (FEV1, FEF25-75, FEF50) and small (FEV3, FEF75-85, FEF75) airways. Prenalterol induced a very small dilatation of the large airways, and a somewhat more pronounced effect at the level of the small airways. Neither the indexes of ventilatory pattern nor those of bronchial tone showed any statistical or biological differences between values on prenalterol and values on salbutamol. However, both the former and the latter indexes showed a trend to be higher on salbutamol than on prenalterol. Results suggest that salbutamol-induced increase in pulmonary ventilation per minute in subjects without bronchial obstruction is likely the result of a reduced bronchomotor tone at rest, leading to an increase in tidal volume because of the rise in the VT/Ti ratio.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Agonists↗

Reference values for flow-volume curves during forced vital capacity breathing in male children and young adults.

127 non-smoking males aged 8-25 years were studied to obtain normal reference values for flow-volume (FV) curves. Analysis of variance (ANOVA) showed significant differences for all indices (PEF; MEF 25%, 50%, 75%; PIF; MIF 25%, 50%, 75%) in the first three age-groups (8-10, 11-13 and 14-16 years); the three last groups (17-19, 20-22 and 23-25 years) did not show any significant variation of FV curve data. Male subjects older than 16 years showed a negative correlation between maximal expiratory flow at 50% of forced vital capacity and standing height. Multiple regression equations relating FV curve indices to age and anthropometric data are calculated.

Adolescent↗

Circadian rhythms of respiratory functions in asthmatics.

35 subjects underwent pulmonary function tests, plasma cortisol and urinary catecholamine measurements at 4-hour intervals, during a period of 24 h. In healthy subjects a circadian variation was not demonstrated. In asthmatic subjects circadian variation of a large number of ventilatory variables and a normal circadian pattern for plasma cortisol were demonstrated. Asthmatic patients were divided into two groups: patients with intrinsic asthma and patients with extrinsic asthma. The former showed the most impressive circadian pattern; the most severe bronchospasm occurred between 12.00 and 00.00 h; patients with extrinsic asthma, older than 20 years became worse around 03.00 h. During this period their urinary catecholamines reached the lowest values. The younger patients with extrinsic asthma presented the highest TGV values at 12.50 h. From the clinical viewpoint, it is emphasized that chronobiologic criteria could be utilized for the chronotherapeutic management of asthmatics.

Adolescent↗

[Comparison of the bronchodilator action of fenoterol and salbutamol by aerosol administration in patients with bronchial asthma].

A comparison was made between the bronchodilatatory activity of phenoterol (hydroxyphenylorciprenaline) and salbutamol in patients with bronchial asthma. The results showed that both drugs had marked activity at therapeutic doses, though phenoterol was more rapid (within 10 min of inhalation) and more longlasting (up to 6-7 hr). Its loss of therapeutic effect was also slower than that of hitherto experimented drugs.

Adolescent↗