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Haemoglobin A2 in newborn infants of different maturity
1Universitätskinderklinik, Dr. v. Haunerschen Kinderspital, München, Federal Republic of Germany.
Insights
Fetal hemoglobin (HbF) levels decrease with infant maturity, while adult hemoglobin (HbA) and HbA2 increase. Delta-globin chain synthesis lags behind beta-globin during development.
Area of Science:
- Biochemistry
- Neonatal Physiology
- Molecular Biology
Background:
- Hemoglobin composition changes significantly after birth.
- Fetal hemoglobin (HbF) is the primary hemoglobin during gestation.
- Adult hemoglobin (HbA) and HbA2 gradually replace HbF postnatally.
Purpose of the Study:
- To investigate the developmental changes in hemoglobin types in newborns.
- To quantify levels of HbF, HbA2, and calculate HbA in cord blood.
- To compare neonatal hemoglobin profiles with adult controls.
Main Methods:
- Analysis of cord blood from 70 infants (28-41 weeks gestation).
- Determination of HbF and HbA2 percentages.
- Calculation of HbA levels based on HbF and HbA2 measurements.
Main Results:
- HbF levels decreased with increasing gestational maturity.
- HbA and HbA2 levels increased with maturity.
- The percentage of non-fetal hemoglobin (HbA + HbA2) rose from 0.57% to 0.83% with maturity, remaining lower than adult levels (1.83%).
Conclusions:
- Neonatal hemoglobin development shows a lag in delta-globin chain synthesis compared to beta-globin.
- This finding is notable given the proximity of the delta- and beta-globin genes.
- The study highlights distinct developmental trajectories of globin chain production.
Abstract:
From 70 infants born after gestation periods of 28-41 weeks HbF and HbA2 were determined in the cord blood; HbA was calculated from the two values. HbF decreased with maturity, HbA and HbA2 increased. The percentage of HbA2 calculated from the sum of HbA + HbA2 (non-fetal Hb) increased from 0.57% to 0.83% with maturity. These values are much lower than those in adult controls (1.83%). The results show that during development the synthesis of the delta-globin chains lags behind that of the beta-globin chains. This is remarkable considering the location of the delta-globin gene within the beta-globin like gene cluster.
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