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A Di Somma

Publications and source records attributed to A Di Somma.

3 recordsLinked to original sources

Susceptibility of fungi isolated from the respiratory tract of falcons to amphotericin B, itraconazole and voriconazole.

The minimum inhibitory concentrations (mics) of fungi isolated from the air sacs of falcons before (group 1), and during antifungal treatment with amphotericin B nebulisation and oral itraconazole or voriconazole (group 2), or with itraconazole alone (group 3) or voriconazole alone (group 4) were determined. Before treatment, 95 per cent of the isolates, including Aspergillus fumigatus, Aspergillus flavus, Aspergillus niger and Aspergillus terreus, were susceptible to voriconazole at mics up to 0.38 microg/ml, and all the isolates were susceptible at mics up to 1 microg/ml. Before treatment, 21 per cent of the isolates, including A fumigatus (27.6 per cent), A flavus (16.6 per cent), A niger (100 per cent) and A terreus (23 per cent), were resistant (mic > or =1 microg/ml) to itraconazole; 51 per cent of the isolates, including A fumigatus (31 per cent), A flavus (78 per cent), A niger (14 per cent) and A terreus (77 per cent), had mics of over 1 microg/ml to amphotericin B, and after treatment their mics increased significantly. In contrast, there were no significant differences between the mics of voriconazole and itraconazole for the different Aspergillus species before and during treatment with these antifungal agents.

Air Sacs↗

Assessment of a commercial sandwich ELISA in the diagnosis of aspergillosis in falcons.

A commercial sandwich elisa (Platelia Aspergillus EIA; Bio-Rad) developed for the detection of galactomannan, a major cell wall constituent of Aspergillus species, was tested for its efficacy in the diagnosis of aspergillosis in falcons. Ninety serum samples from 50 aspergillosis-positive falcons and 182 samples from 142 aspergillosis-negative falcons were tested. The sensitivity of the test was only 12 per cent and its specificity was 95 percent. The test was therefore unsatisfactory for detecting galactomannan in the serum samples and cannot be used as a screening test for aspergillosis in falcons.

Animals↗

[Respiratory function abnormalities in uremic patients].

Patients with end-stage renal disease treated by hemodialysis are exposed to continuous pulmonary insults of multifactorial origin. Alterations in respiratory drive, mechanics, muscle function and gas exchange are frequent in hemodialysis patients. Pulmonary dysfunction may be the direct consequence of circulating uraemic toxins or may result indirectly from volume overload, anaemia, immune suppression, extraosseous calcification, malnutrition, electrolyte disorders, and/or acid-base imbalances. We have emphasised how derangement of diffusing capacity represents the most frequent and important respiratory abnormality in haemodialysed patients. It has been postulated that some forms of selective damage in the alveolo-capillary wall interferes with alveolar gas exchange.

Humans↗