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Biomedical subjects

V Charlton

Publications and source records attributed to V Charlton.

12 recordsLinked to original sources

Effect of magnitude and timing of maternal pregnancy blood lead (Pb) levels on birth outcomes.

OBJECTIVE: Associations between magnitude and timing of maternal pregnancy blood lead (Pb) levels (BLLs), birth weight, and total days of gestation were examined, as well as associations with related clinical diagnoses of low birth weight (LBW), preterm, and small-for-gestational-age (SGA) birth. STUDY DESIGN: Among a sample of 262 mother-infant pairs studied retrospectively, one-way analysis of variance and regression statistics were used to measure the relationship between level of maternal pregnancy BLLs and birth outcomes while controlling for key maternal and newborn factors. RESULTS: Women with maximum pregnancy BLLs (max-PBLLs) > or =10 microg/dl tended to give birth earlier and their babies were at substantially increased risk for preterm and SGA birth. By holding other explanatory factors constant, each unit increase in max-PBLL above 10 mug/dl was found to be associated with a decrease of -0.3 in total days of gestation. Compared to women with lower levels, women with max-PBLLs > or =10 microg/dl were at a threefold increased risk for preterm birth (adjusted OR=3.2, 95% CI 1.2-7.4) and more than a fourfold increased risk for having an SGA infant (adjusted OR=4.2, 1.3-13.9). Second trimester maximum BLLs > or =10 microg/dl were associated with a steep decrease in total days of gestation (a decrease of -1.0 days per each unit increase above 10 microg/dl). CONCLUSIONS: These data provide evidence of the adverse effects of maternal pregnancy BLLs, particularly when levels are > or =10 microg/dl. Prenatal Pb exposure at these levels was associated with significant decreases in total days of gestation and an increased risk of preterm and SGA birth.

Adult↗

Selected indications for and applications of magnetic resonance angiography in children.

The purpose of this study was to investigate the efficacy and practicality of magnetic resonance angiography (MRA) in evaluating pediatric cerebrovascular disorders. A retrospective evaluation was performed of MR angiograms in 20 pediatric patients with cerebrovascular pathology. When appropriate, comparisons were made with duplex ultrasonography or conventional catheter angiography. MRA accurately assessed the patency of carotid reanastomoses in 8 babies who had previously undergone extracorporeal membrane oxygenation (ECMO). In 6 patients with moyamoya syndrome, MRA accurately evaluated stenotic intracranial carotid and circle of Willis arteries and progressive enlargement of the superficial temporal and middle cerebral arteries after revascularization procedures, and thus obviated the need for sequential angiograms. Thrombi and emboli were identified in 4 of 5 patients with symptoms and imaging evidence of an acute stroke. Two-dimensional time-of-flight MR venograms, acquired in both axial and coronal planes, were useful for preoperative venous mapping in a patient with an occipital encephalocele and detecting venoocclusive disease. MRA provided diagnostically useful information in a spectrum of pediatric cerebrovascular disorders. It can be used as the initial vascular imaging modality for patients with imaging evidence of acute cerebrovascular event, to evaluate progression of chronic vasoocclusive disease, to evaluate vessel patency following intracranial revascularization surgery, and for visualization of the venous circulation.

Adolescent↗

Effects of antipyrine on umbilical and regional metabolism in late gestation in the fetal lamb.

OBJECTIVE: Antipyrine has been used extensively in fetal metabolic studies and is now known to inhibit prostaglandin synthesis; therefore we wished to determine the effects of antipyrine on fetal umbilical and regional metabolism. STUDY DESIGN: Chronically catheterized fetal lambs were randomly assigned to antipyrine (n = 6) or control (n = 5) groups. Animals in the antipyrine group were infused with antipyrine (mean +/- SD 9.6 +/- 0.9 mg/min for 165 +/- 38 minutes), and control group animals were not infused. Measurements were made of fetal blood gases, oxygen content, glucose, lactate, lower-body blood flow, upper-body flow distribution, and substrate uptakes across the umbilical and hind limb circulations. The unpaired t test, correlation coefficient, and regression analysis were used for comparisons. RESULTS: There were no differences in antipyrine and control group animals with respect to blood gases, metabolite levels, umbilical blood flow, or umbilical uptakes. Hind limb blood flow (p < 0.10) and oxygen uptake (p < 0.05) were lower and lactate production was higher (p < 0.01) in antipyrine animals than in control group animals. Duration of antipyrine exposure correlated directly with hind limb lactate production (r = 0.85, p < 0.001) and inversely with hind limb oxygen uptake (r = -0.65, p < 0.05). The distribution of blood flow within the fetal upper body also differed between groups, with higher cardiac distribution in the antipyrine group (p < 0.025). CONCLUSIONS: Antipyrine does not affect umbilical metabolism but does affect carcass metabolism and fetal blood flow distribution.

Animals↗

Fetal intravenous nutritional supplementation ameliorates the development of embolization-induced growth retardation in sheep.

Since decreased transfer of nutrients into the fetus has been documented in many forms of intrauterine growth retardation, we evaluated whether increasing fetal nutrient availability would prevent the development of experimental growth retardation in fetal lambs. Fetuses were separated into three groups: E, animals growth retarded by repetitive uteroplacental embolization (n = 8); ES, animals treated as in E and given fetal femoral venous infusions of 5% glucose and 6.8% amino acids (n = 7); and C, controls (n = 8). The duration and density of embolization were the same in E and ES; initial physical and metabolic characteristics and gestation at delivery were similar in all groups. E birth weight was reduced 26% compared to C (2888 +/- 373 SEM g versus 3880 +/- 277 g, p less than 0.05); fetal/maternal weight ratio was decreased 35% (p less than 0.005) and ponderal index decreased 22% (p less than 0.005). Asymmetric growth retardation was indicated in E by an increased brain/body weight ratio (p less than 0.05). ES fetuses, in contrast, showed no differences from C in birth weight (3601 +/- 190 g) or body proportions. ES were larger than E, with a greater fetal/maternal weight ratio and ponderal index (p less than 0.05 for both). In E and ES, size at birth showed a positive relation to the amount of supplements received. The average daily supplementation rate correlated with the fetal/maternal weight ratio and with the ponderal index (for both r = 0.62, p less than 0.02).(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Effects of intrauterine nutritional supplementation on fetal growth retardation.

The effects of fetal nutritional supplementation on experimentally induced growth retardation were investigated in third-trimester sheep. The control group, C, was fed ad libitum (n = 8). Group R received a protein- and calorie-restricted diet over the last 3 weeks of gestation (n = 8). Group RS was given the same restricted diet as group R, and fetal, intragastric supplements of amino acids and glucose (n = 7). Over the experimental period, maternal weight increased 4.1 +/- 0.6 kg in C but was stable in R and RS (p less than 0.01). R and RS ewes and fetuses showed biochemical evidence of malnutrition but the changes were less severe in the RS group (p less than 0.05). Nutrient levels did not change in group C ewes and fetuses. At delivery, R lambs were smaller in weight and length than RS or C (p less than 0.05); gestational ages were the same. Weights were: R, 2,702 +/- 182 g; RS, 3,235 +/- 121 g; and C, 3,290 +/- 297 g. R also had lower fetal to maternal weight ratios and higher brain to body weight ratios than RS or C (p less than or equal to 0.05). Placental size was reduced 28% in R compared to C (p less than 0.05) and was intermediate in RS. The disparity in fetal size was explained by differences in nutrient acquisition between groups. Over the experimental period, caloric intake rose 24% in C fetuses; near delivery, they had the highest umbilical uptakes of carbohydrate and alpha-amino nitrogen. After maternal diet was limited, R and RS fetuses had dramatic decreases in umbilical uptake of alpha-amino nitrogen and static umbilical uptakes of carbohydrate. Caloric intake fell 42% in R. RS fetuses, however, were receiving sufficient gastric supplementation so that umbilical + gastrointestinal carbohydrate uptake equalled that of controls, and entry of alpha-amino nitrogen and calories was intermediate, between those of R and C. Fetal oxygen consumption reflected the differences in nutrient uptake, being greatest in C, lowest in R and intermediate in RS. Fetal supplementation lessened the drain on maternal nutrients and promoted more normal fetal growth and metabolism.

Amino Acids↗

Nutrient and waste product concentration differences in upper and lower body arteries of fetal sheep.

Well oxygenated blood returning from the placenta is preferentially shunted into the left side of the fetal heart and the ascending aorta. This results in higher oxygen saturation in arterial blood supplying the fetal upper body than in blood supplying the lower body. Since the placenta is also the site of nutrient and waste exchange, we evaluated differences in arterial concentrations of nutrients and waste products in fetal upper and lower body. Studies were carried out on ten, chronically catheterized, third trimester, fetal sheep. Blood samples, drawn simultaneously from the carotid and femoral arteries, were analyzed for glucose, oxygen saturation, oxygen content, total amino acids, lactate, urea nitrogen, and hydrogen ion concentration. Carotid arterial blood had higher levels of glucose (1.4 +/- 0.1 mg/dl (SEM); P less than 0.001), of alpha-amino nitrogen (0.4 +/- 0.1 mg/dl, equivalent to amino acid concentration difference of 2.5 mg/dl, P less than 0.025), of oxygen saturation (9.9 +/- 0.5%, P less than 0.001), and of oxygen content (1.0 +/- 0.1 ml/dl; P less than 0.001). Carotid values exceeded femoral by an average of 10% for glucose, 4% for amino nitrogen, 29% for oxygen saturation and 23% for oxygen content. Carotid arterial blood had lower urea nitrogen, (-0.5 +/- 0.2 mg/dl; P less than 0.05) and hydrogen ion (-1.1 +/- 0.1 nM/L; P less than 0.001) concentrations, but these differences averaged only 2% between vessels. Lactate concentration in the carotid and femoral arteries was the same. Fetal glucose and oxygen levels were closely related.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Gluten challenge in treated coeliac disease.

Thirty-two children with a past diagnosis of coeliac disease were reinvestigated by means of gluten challenge. They had received a gluten-free diet for a mean period of 6-5 years (range 0-25-11-0) before gluten challenge, and had a mean age of 9-9 years (range 3-0-15-3) at the onset of challenge. Small intestinal biopsies were performed before and after the gluten challenge (at least 10 g natural gluten per day for 3 months in the majority) and, as judged by light microscopy and morphometric techniques, coeliac disease was confirmed in 25 (78%) of the 32 patients; challenge was continued in the remaining 7 for a total period of 2 years when biopsies were repeated in 6 children and all were normal. Serum and RBC folate, serum iron, Hb level, and clinical symptoms were unpredictable variables in identifying children who developed gluten-induced enteropathies. The social and emotional effects of gluten challenge are discussed. The results highlight the importance of gluten challenge and intestinal biopsy in the diagnosis of coeliac disease and strongly suggest that a normal biopsy after a 3-month gluten challenge (as described above) excludes coeliac disease.

Adolescent↗