Search PubMed⌕ Search

Biomedical subjects

G Dinari

Publications and source records attributed to G Dinari.

93 records · Page 6Linked to original sources

Thiamine deficiency in children with congenital heart disease before and after corrective surgery.

BACKGROUND: Malnutrition is common in children with congenital heart disease, while thiamine deficiency (TD) is common in malnutrition, in critically ill children, and in adults with congestive heart failure treated with loop diuretics. Our goal was to determine whether children with congenital heart disease had TD and whether treatment with loop diuretics is related to TD in these patients. METHODS: Twelve children with ventricular septal defect (VSD) treated with furosemide, and 10 children with tetralogy of Fallot (TOF) referred for corrective surgery were consecutively enrolled into a prospective study. Data were collected 24 hours before surgery and 5 days after surgery for nutrition evaluation, medications used, anthropometric measurements, and laboratory markers of malnutrition. Thiamine and pyridoxine deficiencies were evaluated using activated enzyme assays. RESULTS: Seven children (32% of patients) did not meet the recommended daily allowance (RDA) for calories and 18% of patients did not meet the RDA for thiamine intake. Anthropometric measurements were low in both groups, more so in those with VSD, although the difference did not reach statistical significance. Overall, 18% (1/12 with VSD and 3/10 with TOF) of children with congenital heart disease had thiamine deficiency before surgery. Three of the four children with TD had adequate intake of thiamine. Six children (27%) had TD 5 days postsurgery (3 children with VSD and 3 children with TOF). CONCLUSIONS: TD is common in children with congenital heart disease (CHD) referred for corrective surgery both before and after surgery. Our results suggest that neither diuretic treatment nor malnutrition can fully explain the development of TD in these children.

Anthropometry↗

Effect of parenteral nutrition on oral intake.

Oral intake following a high density oral supplement (preload) is lower than that after a low density preload. We studied a similar effect of parenteral nutrition on oral intake. Twelve neurologically intact children (8-16 yr) with orthopedic problems and no concurrent illness were included in the study. As part of the inclusion criteria, all patients had documented energy intake for breakfast of +/- 10% on 3 consecutive days. On the fourth day parenteral nutrition equal to 50% of the mean energy intake for breakfast was provided for 4 hours before breakfast and energy intake measured. The composition of the parenteral energy was matched with that of the oral intake. The mean oral energy intake without (470 +/- 90 kcal) and with (458 +/- 64 kcal) parenteral nutrition preload was comparable (p > 0.05). Our conclusion is that parenteral nutrition does not affect oral intake in patients without underlying gastrointestinal disease.

Adolescent↗

Parenteral nutrition-associated cholestasis in preterm neonates: evaluation of ursodeoxycholic acid treatment.

BACKGROUND/OBJECTIVE: Parenteral nutrition is an integral part of the care of premature infants. Cholestatic liver disease is a frequent complication of prolonged parenteral nutrition, especially in premature infants. It has been suggested that ursodeoxycholic acid may alter the course of parenteral nutrition-associated cholestasis in children and adults. We attempted to determine the efficacy of ursodeoxycholic acid in premature infants with parenteral nutrition-associated cholestasis. METHODS: Retrospective chart review of all infants receiving ursodeoxycholic acid for parenteral nutrition-associated cholestasis in a 40 bed neonatal intensive care unit. Efficacy of ursodeoxycholic acid was evaluated by response of bilirubin, alanine aminotransferase, aspartate aminotransferase, and alkaline phosphatase over a treatment period of at least 1 month. RESULTS: Six infants with parenteral nutrition-associated cholestasis who had received ursodeoxycholic acid for one month were identified. Doses of ursodeoxycholic acid ranged from 15-30 mg/kg/day. Cholestasis appeared at a mean age of 47 +/- 17 (mean +/- SD) days after a mean of 42 +/- 15 days of parenteral nutrition. Transaminase levels decreased in three, and either increased or did not change in the other three infants. Bilirubin levels decreased in all infants. Alkaline phosphatase showed a non significant trend to decreased levels. Consistent improvement in all infants was noted only after 10 days of full enteral nutrition. No toxicity was found during ursodeoxycholic acid treatment. CONCLUSIONS: Ursodeoxycholic acid treatment in premature infants appears to be safe, and leads to an early sustained decrease in bilirubin levels by two weeks of therapy. The response of transaminase levels was not sustained in our small cohort.

Alanine Transaminase↗