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Published on: February 7, 2025
Molecular and physiological responses to juvenile traumatic brain injury: focus on growth and metabolism
Talin Babikian1, Mayumi L Prins, Yan Cai
1Department of Psychiatry, David Geffen School of Medicine at UCLA, Los Angeles, Calif., USA.
Insights
Traumatic brain injury (TBI) in developing brains affects growth and metabolism. Molecular changes in these areas are key to understanding injury response and recovery in pediatric TBI survivors.
Area of Science:
- Pediatric neurology
- Developmental neuroscience
- Molecular biology
Background:
- Traumatic brain injury (TBI) is a major cause of long-term disability in children.
- Pediatric TBI presents unique challenges due to the developing brain's plasticity.
- Understanding molecular mechanisms in developmental TBI is crucial for effective treatment.
Purpose of the Study:
- To review normal and TBI-related changes in growth, development, and metabolism in juvenile rats.
- To analyze TBI-induced alterations in gene expression related to cerebral growth and metabolism.
- To contextualize these molecular changes with physiological and behavioral outcomes.
Main Methods:
- Comprehensive literature review of developmental TBI.
- Analysis of gene expression data (microarray) in juvenile rats.
- Integration of existing research on physiological and behavioral responses.
Main Results:
- TBI in juvenile rats alters gene expression related to cerebral growth and metabolism.
- Molecular responses in growth, development, and metabolism are critical for TBI injury and recovery.
- Metabolic substrate control may be regulated by transporters and enzymatic activity.
Conclusions:
- Molecular pathways involving growth, development, and metabolism are vital in pediatric TBI.
- Further research into cellular metabolism and neuroplasticity can guide therapeutic interventions for TBI.
- Translating experimental findings to clinical practice is essential for improving outcomes in pediatric TBI.
Abstract:
Traumatic brain injury (TBI), one of the most frequent causes of neurologic and neurobehavioral morbidity in the pediatric population, can result in lifelong challenges not only for patients, but also for their families. Survivors of a brain injury experienced during childhood - when the brain is undergoing a period of rapid development - frequently experience unique challenges as the consequences of their injuries are overlaid on normal developmental changes. Experimental studies have significantly advanced our understanding of the mechanisms and underlying molecular underpinnings of the injury response and recovery process following a TBI in the developing brain. In this paper, normal and TBI-related alterations in growth, development and metabolism are comprehensively reviewed in the postweanling/juvenile age range in the rat (postnatal days 21-60). As part of this review, TBI-related changes in gene expression are presented, with a focus on the injury-induced alterations related to cerebral growth and metabolism, and discussed in the context of existing literature related to physiological and behavioral responses to experimental TBI. Increasing evidence from the existing literature and from our own gene microarray data indicates that molecular responses related to growth, development and metabolism may play a particularly important role in the injury response and the recovery trajectory following developmental TBI. While gene expression analysis shows many of these changes occur at the level of transcription, a comprehensive review of other studies suggests that the control of metabolic substrates may preferentially be regulated through changes in transporters and enzymatic activity. The interrelation between cellular metabolism and activity-dependent neuroplasticity shows great promise as an area for future study for an optimal translation of experimental data to clinical TBI, with the ultimate goal of guiding therapeutic interventions.
Related Concept Videos
Traumatic Brain Injury l: Introduction
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