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A Behavioral Epigenetics Model to Predict Oral Feeding Skills in Preterm Infants
Thao Griffith1, Rosemary White-Traut, Linda Witek Janusek
1Department of Health Promotion, Marcella Niehoff School of Nursing, Loyola University Chicago, Maywood, Illinois (Drs Griffith and Janusek); Nursing Research, Children's Hospital of Wisconsin, Milwaukee (Dr White-Traut); and Department of Women, Children, and Family Health Science, College of Nursing, University of Illinois at Chicago (Dr White-Traut).
Insights
Cumulative stress in preterm infants may impair oral feeding skills through epigenetic changes affecting stress response. Understanding these epigenetic modifications is key to improving infant development and care.
Area of Science:
- Neonatal Development
- Behavioral Epigenetics
- Developmental Pediatrics
Background:
- Preterm infants face significant stress, impacting developmental milestones like oral feeding.
- Up to 70% of preterm infants struggle with oral feeding due to challenges in neonatal intensive care units.
- Cumulative stress exposure can lead to epigenetic modifications in glucocorticoid-related genes, affecting neurobehavioral development.
Purpose of the Study:
- To present a conceptual model based on Preterm Behavioral Epigenetics.
- To explain how cumulative stress impacts neurobehavioral development and oral feeding skills via epigenetic modification of glucocorticoid-related genes.
Main Methods:
- Utilizing the Preterm Behavioral Epigenetics framework.
- Reviewing supporting scientific literature.
- Developing a conceptual model linking stress, epigenetics, and feeding outcomes.
Main Results:
- Early-life cumulative stress, indicated by DNA methylation and altered cortisol reactivity, disrupts neurobehavioral development.
- This disruption is critical for the achievement of oral feeding skills in preterm infants.
Conclusions:
- The conceptual model provides a framework for future research in preterm infant oral feeding.
- Epigenetic-based approaches can enhance assessment and monitoring of feeding skills.
- This model can guide the development of interventions to improve clinical outcomes and innovate neonatal care.
Background:
Preterm infants experience a multitude of prenatal and postnatal stressors, resulting in cumulative stress exposure, which may jeopardize the timely attainment of developmental milestones, such as achieving oral feeding. Up to 70% of preterm infants admitted to the neonatal intensive care unit experience challenges while initiating oral feeding. Oral feeding skills require intact neurobehavioral development. Evolving evidence demonstrates that cumulative stress exposure results in epigenetic modification of glucocorticoid-related genes. Epigenetics is a field of study that focuses on phenotypic changes that do not involve alterations in the DNA sequence. Epigenetic modification of glucocorticoid-related genes alters cortisol reactivity to environmental stimuli, which may influence neurobehavioral development, and is the essence of the evolving field of Preterm Behavioral Epigenetics. It is plausible that early-life cumulative stress exposure and the ensuing epigenetic modification of glucocorticoid-related genes impair neurobehavioral development required for achievement of oral feeding skills in preterm infants.
Purpose:
The purpose of this article is to build upon the evolving science of Preterm Behavioral Epigenetics and present a conceptual model that explicates how cumulative stress exposure affects neurobehavioral development and achievement of oral feeding skills through epigenetic modification of glucocorticoid-related genes.
Methods/Results:
Using the Preterm Behavioral Epigenetics framework and supporting literature, we present a conceptual model in which early-life cumulative stress exposure, reflected by DNA methylation of glucocorticoid-related genes and altered cortisol reactivity, disrupts neurobehavioral development critical for achievement of oral feeding skills.
Implications For Practice And Research:
Future investigations guided by the proposed conceptual model will benefit preterm infant outcomes by introducing epigenetic-based approaches to assess and monitor preterm infant oral feeding skills. Furthermore, the proposed model can guide future investigations that develop and test epigenetic protective interventions to improve clinical outcomes, representing an innovation in neonatal care.
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