Passive and active overlay systems.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to S Troiani.
Explore the source record for details and available documents.
Intrapleural administration of fibrinolytic agents such as urokinase (UK) has been advocated as an alternative method to manage complicated pleural effusion (CPE). Despite the increasing number of empyemas successfully treated with UK in adults, the experience in children is limited to a few cases. We report the results of image-guided catheter drainage (IGCD) with intracavitary instillation of UK in six children with CPE. Urokinase (25,000-100, 000 IU) was diluted in 20 mL of normal saline and instilled into the pleural cavity via a percutaneously placed drainage catheter. After 4 hr, the clamped catheter was released and connected to water-seal suction at a negative pressure of 20 cm H(2)O. UK instillation was repeated daily until no further drainage occurred. During IGCD, repeated radiographic and ultrasound imaging determined the location and amount of any remaining pleural fluid. Mean duration of hospital stay before initiating UK therapy was 4.3 days. Mean duration of catheter drainage before initiating UK therapy was 3.5 days, and the mean total drainage was 86 mL. All patients had an increase in chest tube drainage within 24 hr after the first instillation of UK. The mean net total drainage after UK instillation was 281 mL, most of the drainage being occurring in the first 2 days of treatment. Mean hospital stay following UK treatment was 5.8 days, and the average total duration of hospital stay was 13.8 days. No complications and no adverse events occurred during treatment with UK. Complete resolution of the consequences of the pleural effusion was observed in all patients at follow-up. Our results suggest that IGCD with adjunctive UK therapy is a reliable, simple, and safe approach to treat CPE, and it can reduce the risks associated with thoracotomy and decortication.
We report the results of long-term cyclical clodronate therapy (200 mg IV infusion every 3 weeks) on 235 women with postmenopausal osteoporosis recruited over 6 years. A retrospective analysis of clinical and instrumental findings in 183 postmenopausal osteoporotic patients was used as control data. Clodronate was well-tolerated and compliance was good. Bone mineral density (BMD) increased significantly and the upward trend persisted for all 6 years of therapy (5.69 +/- 0.184%) vs. controls: -1.47% +/- 0.813%, p <0.0001). The increase in BMD was greater in the 145 patients without vertebral fractures before starting clodronate. From year 3 onward clodronate reduced the incidence of new vertebral fractures. In closed subsets of patients and controls monitored for 3 and 4 years, respectively, the number of patients developing new vertebral fractures fell significantly in the clodronate group (two-sided p value = 0.0671 and p <0.0026, respectively). This trend was more marked in patients who were fracture-free at the beginning of each year. Cyclical clodronate is a safe and effective therapy for established osteoporosis, but clinical trials are necessary to compare its efficacy versus continuous therapy and, as in the case of the other bisphosphonates, to investigate its mechanisms of action in depth.
GnRH analogs (GnRHa) arrest pubertal development and slow growth velocity (GV) and bone maturation, thus improving adult height in central precocious puberty (CPP). In some patients, however, GV decreases to such an extent that it compromises the improvement in predicted adult height (PAH). Fourteen children (10 girls and 4 boys) with idiopathic CPP whose GV during GnRHa treatment decreased below the 25th percentile for chronological age with no improvement in PAH received GH at a dose of 0.3 mg/kg week, sc, 6 days/week for 2-3 yr. Fourteen children (10 girls and 4 boys) with idiopathic CPP, matched for bone age (BA), chronological age, and duration of GnRHa treatment, who showed the same growth deceleration but refused GH treatment, served as the control group. In girls, GV as so score for BA improved from -3.4 +/- 0.5 to -2.5 +/- 0.5 after 3 yr of combined treatment; PAH significantly improved from 152.7 +/- 1.7 cm (before GnRHa) and 153.5 +/- 1.7 cm (before GnRHa and GH) to 167.1 +/- 3.0 cm after 3 yr of combined treatment (P < 0.01 vs. pretreatment with GnRHa plus GH). In boys, GV as SD score for BA remained unchanged from -2.0 +/- 1.0 to -2.2 +/- 1.2 after 2 yr of combined treatment; PAH increased from 166.6 +/- 4.8 cm (before GnRHa) and 166.2 +/- 4.9 (before GnRHa plus GH) to 171.1 +/- 6.1 cm after 2 yr (P = NS). In the control group, in girls after 6 yr of GnRHa treatment, height in SD score for BA improved from -1.0 +/- 0.3 to -0.1 +/- 0.4 (P = NS), and PAH significantly improved from 155.5 +/- 2.0 to 161.5 +/- 2.1 cm (P < 0.05); in boys after 4 yr of GnRHa treatment, height in SD score for BA improved from -1.1 +/- 0.3 to -0.3 +/- 0.4 (P = NS), and PAH changed from 172.6 +/- 3.6 to 170.3 +/- 3.6 cm (P = NS). Eight of 10 girls receiving GH plus GnRHa treatment had an actual height higher than PAH and their target height. The results of our long term study indicate that in children with CPP who show a marked decrease in GV during GnRHa treatment, GH administration remarkably improves growth velocity and predicted adult height, especially in girls.
OBJECTIVE: To identify, with the use of pretreatment clinical data, the children with idiopathic short stature responsive to treatment with growth hormone (GH). DESIGN: Open, prospective study in a university hospital. SUBJECTS: Patients admitted to the study met the following criteria: birth weight at least 2.5 kg, no sign of dysmorphic disease, stature less than the 3rd percentile for chronologic age (CA), linear growth velocity (GV) less than the 25th percentile for bone age (BA), no sign of puberty, maximal GH response to pharmacologic stimulation greater than 10 micrograms/L, no evidence of organic disease, treatment with daily subcutaneous administration of GH at a dose of 12 to 16 IU/m2 per week. MAIN OUTCOME MEASURES: Eight pretreatment growth variables and the increase of GV after 6 months of therapy were measured. Children with a change in GV that was greater than 2.5 cm/yr after 6 months of GH therapy were considered responders to GH. RESULTS: We studied 67 patients (44 boys). Forty patients (60%) were responders. With univariate analysis the variables found to have predictive value were GV (z score for gender and CA), bone age (z score for gender and CA), and percentage of ideal body weight. These variables were employed in a multivariate discriminant analysis. Growth velocity and BA showed the best independent discriminant analysis. Growth velocity and BA showed the best independent discriminant significance in predicting responsiveness to the initial 6 months of GH therapy. The obtained equation was as follows: Score = -0.40 + 0.92X1 - 0.87X2, where X1 is the GV z value for CA and X2 is the BA z value for CA). Using this scoring system, we obtained a specificity of 96.3% and a sensitivity of 92.5% in predicting responsiveness to GH (chi-square with Yates correction, 48.2; p < 0.001). CONCLUSIONS: Discriminant analysis may permit the pretreatment prediction of responsiveness to the initial 6 months of GH therapy in short children without GH deficiency.
CD3+/CD30+ circulating T lymphocytes were found to be increased in the blood of individuals with Down's syndrome (DS; trisomy 21). This finding appears to be related to age as the numbers of CD3+/CD30+ T cells were dramatically enhanced in the circulation of older DS subjects. Since CD30 antigen expression is considered to be a marker of T-helper-2 (Th-2) activation, and Th-2+ cells are associated with certain human pathologies, our data may in some way explain the enhanced susceptibility of DS patients to infections, malignant diseases and autoimmunity.