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Lower hypothalamus subunit volumes link with impaired long-term body weight gain after preterm birth
Tobias Ruzok1,2, Benita Schmitz-Koep1,2, Aurore Menegaux1,2
1Department of Neuroradiology, Klinikum rechts der Isar, School of Medicine, Technical University of Munich, Munich, Germany.
Insights
Preterm birth is linked to smaller brain regions controlling weight, affecting long-term body weight gain. These changes in hypothalamic nuclei correlate with distinct weight development patterns into adulthood.
Area of Science:
- Neuroscience
- Developmental Biology
- Endocrinology
Background:
- Preterm birth increases risks for impaired body weight gain.
- Brain's role in body weight control after preterm birth is not fully understood.
- Hypothalamic structure alterations may impact long-term weight development.
Purpose of the Study:
- To investigate structural changes in hypothalamic nuclei related to body weight control in adults born very preterm.
- To associate these structural changes with body weight trajectories from birth to adulthood.
Main Methods:
- Assessed 101 very preterm/very low birth weight adults and 110 full-term born adults.
- Utilized T1-weighted MRI and deep learning for hypothalamus segmentation.
- Analyzed body weight data from birth into adulthood.
Main Results:
- Reduced volumes of hypothalamus subunits involved in body weight control were observed in very preterm/very low birth weight adults.
- These volume reductions correlated with gestational age, neonatal treatment intensity, birth weight, and adult body weight.
- Specific hypothalamic subunits (lateral, infundibular/ventromedial) were associated with catch-up growth and small-for-gestational-age status.
Conclusions:
- Preterm birth is associated with smaller volumes of body weight-regulating hypothalamic nuclei.
- These structural changes are linked to long-term body weight gain patterns.
- Hypothalamic nuclei development in preterm individuals corresponds with distinct adult weight trajectories.
Introduction:
Preterm birth is associated with an increased risk for impaired body weight gain. While it is known that in prematurity several somatic and environmental factors (e.g., endocrine factors, nutrition) modulate short- and long-term body weight gain, the contribution of potentially impaired body weight control in the brain remains elusive. We hypothesized that the structure of hypothalamic nuclei involved in body weight control is altered after preterm birth, with these alterations being associated with aberrant body weight development into adulthood.
Materials And Methods:
We assessed 101 very preterm (i.e., <32 weeks of gestational age) and/or very low birth weight (i.e., <1500g; VP/VLBW) and 110 full-term born (FT) adults of the population-based Bavarian Longitudinal Study with T1-weighted MRI, deep learning-based hypothalamus subunit segmentation, and multiple body weight assessments from birth into adulthood.
Results:
Volumes of the whole hypothalamus and hypothalamus subunits relevant for body weight control were reduced in VP/VLBW adults and associated with birth variables (i.e., gestational age and intensity of neonatal treatment), body weight (i.e., weight at birth and adulthood), and body weight trajectories (i.e., trajectory slopes and cluster/types such as long-term catch-up growth). Particularly, VP/VLBW subgroups, whose individuals showed catch-up growth and/or were small for gestational age, were mostly associated with volumes of distinct hypothalamus subunits such as lateral or infundibular/ventromedial hypothalamus.
Conclusion:
Results demonstrate lower volumes of body weight control-related hypothalamus subunits after preterm birth that link with long-term body weight gain. Data suggest postnatal development of body weight -related hypothalamic nuclei in VP/VLBW individuals that corresponds with distinct body weight trajectories into adulthood.
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