Postnatal fetal and adult hemoglobin synthesis is preterm infants whose birth weight was less than 1,000 grams

To determine if environmental factors could effect the switchover from fetal hemoglobin (HbF) to adult hemoglobin (HbA) synthesis, studies were carried out on blood samples from eight infants born at less than 1,000 g, when they had reached their postconceptional age corresponding to term. All of th...

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Veröffentlicht in:The Journal of clinical investigation 1982-07, Vol.70 (1), p.50-52
Hauptverfasser: Bard, H, Prosmanne, J
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Prosmanne, J
description To determine if environmental factors could effect the switchover from fetal hemoglobin (HbF) to adult hemoglobin (HbA) synthesis, studies were carried out on blood samples from eight infants born at less than 1,000 g, when they had reached their postconceptional age corresponding to term. All of these infants required prolonged intensive care, multiple blood transfusions, and two required exchange transfusions. Several were ventilated mechanically for 60 d and two infants had bronchopulmonary dysplasia at the time of the study. The blood samples were incubated in an amino acid mixture containing [14C]leucine followed by column chromatography on DEAE Sephadex for separation of radioactive HbA and HbF. In spite of the extreme prematurity and poor growth of these sick infants, the proportional synthesis of HbF and HbA, as determined by the incorporation of [14C]leucine during the erythrocyte incubations, was characteristic of the period of human development from which the erythrocytes were obtained.
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subjects Blood Transfusion
Bronchopulmonary Dysplasia - therapy
Erythrocyte Transfusion
Exchange Transfusion, Whole Blood
Female
Fetal Hemoglobin - biosynthesis
Hemoglobin A - biosynthesis
Humans
Infant, Low Birth Weight
Infant, Newborn
Infant, Premature
Jaundice, Neonatal - therapy
Mortality
Postnatal Care
Postpartum Period
Pregnancy
Respiration, Artificial
title Postnatal fetal and adult hemoglobin synthesis is preterm infants whose birth weight was less than 1,000 grams
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