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Somatosensory Modulation of Salivary Gene Expression and Oral Feeding in Preterm Infants: Randomized Controlled Trial
Steven Michael Barlow1, Jill Lamanna Maron2, Gil Alterovitz3
1Center for Brain, Biology, and Behavior, Department of Special Education and Communication Disorders, Biological Systems Engineering, University of Nebraska, Lincoln, NE, United States.
Insights
This study investigates pulsed orocutaneous stimulation to improve feeding skills in preterm infants. Analyzing salivary gene expression aims to personalize care and enhance long-term development for high-risk neonates.
Area of Science:
- Neonatal development and neurobiology
- Molecular biology and transcriptomics
- Clinical trials and medical interventions
Background:
- Oral feeding is a significant neurological challenge for preterm infants, necessitating advanced assessment tools and therapies.
- Pulsed pneumatic orocutaneous stimulation shows promise in improving nonnutritive sucking (NNS) skills in preterm infants with feeding difficulties.
- Salivary transcriptome analysis in neonates can identify biomarkers for successful oral feeding, offering a personalized approach.
Purpose of the Study:
- To conduct a multicenter RCT combining molecular and behavioral methods to assess pulsed somatosensory stimulation's effects on salivary gene expression in high-risk neonates.
- To improve oral feeding behavior and skills in extremely preterm infants (EPI) through noninvasive strategies and transcriptomic assessment.
- To personalize neonatal care by using gene expression data to individualize treatment strategies and improve long-term developmental outcomes.
Main Methods:
- 180 extremely preterm infants will be randomized to receive PULSED or SHAM orocutaneous intervention alongside tube feedings for 4 weeks.
- Infants will be assessed for NNS performance, and saliva samples collected weekly for transcriptomic analysis until full oral feeding is achieved.
- Neurodevelopmental follow-up testing at 18 months corrected age will correlate with feeding outcomes, gene expression, and intervention status.
Main Results:
- The NIH-funded RCT (R01HD086088) is actively recruiting participants.
- The study is expected to provide insights into the gene ontology of oral feeding pathways.
- Data will be used to correlate gene expression with intervention and feeding outcomes.
Conclusions:
- Differential salivary gene expression in response to orosensory stimulation is anticipated.
- This is expected to facilitate the development of individualized interventions for diagnosing and managing oral feeding issues in preterm infants.
- The study aims to improve feeding and long-term developmental outcomes for high-risk neonates.
Background:
Despite numerous medical advances in the care of at-risk preterm neonates, oral feeding still represents one of the first and most advanced neurological challenges facing this delicate population. Objective, quantitative, and noninvasive assessment tools, as well as neurotherapeutic strategies, are greatly needed in order to improve feeding and developmental outcomes. Pulsed pneumatic orocutaneous stimulation has been shown to improve nonnutritive sucking (NNS) skills in preterm infants who exhibit delayed or disordered nipple feeding behaviors. Separately, the study of the salivary transcriptome in neonates has helped identify biomarkers directly linked to successful neonatal oral feeding behavior. The combination of noninvasive treatment strategies and transcriptomic analysis represents an integrative approach to oral feeding in which rapid technological advances and personalized transcriptomics can safely and noninvasively be brought to the bedside to inform medical care decisions and improve care and outcomes.
Objective:
The study aimed to conduct a multicenter randomized control trial (RCT) to combine molecular and behavioral methods in an experimental conceptualization approach to map the effects of PULSED somatosensory stimulation on salivary gene expression in the context of the acquisition of oral feeding habits in high-risk human neonates. The aims of this study represent the first attempt to combine noninvasive treatment strategies and transcriptomic assessments of high-risk extremely preterm infants (EPI) to (1) improve oral feeding behavior and skills, (2) further our understanding of the gene ontology of biologically diverse pathways related to oral feeding, (3) use gene expression data to personalize neonatal care and individualize treatment strategies and timing interventions, and (4) improve long-term developmental outcomes.
Methods:
A total of 180 extremely preterm infants from three neonatal intensive care units (NICUs) will be randomized to receive either PULSED or SHAM (non-pulsing) orocutaneous intervention simultaneous with tube feedings 3 times per day for 4 weeks, beginning at 30 weeks postconceptional age. Infants will also be assessed 3 times per week for NNS performance, and multiple saliva samples will be obtained each week for transcriptomic analysis, until infants have achieved full oral feeding status. At 18 months corrected age (CA), infants will undergo neurodevelopmental follow-up testing, the results of which will be correlated with feeding outcomes in the neo-and post-natal period and with gene expression data and intervention status.
Results:
The ongoing National Institutes of Health funded randomized controlled trial R01HD086088 is actively recruiting participants. The expected completion date of the study is 2021.
Conclusions:
Differential salivary gene expression profiles in response to orosensory entrainment intervention are expected to lead to the development of individualized interventions for the diagnosis and management of oral feeding in preterm infants.
Trial Registration:
ClinicalTrials.gov NCT02696343; https://clinicaltrials.gov/ct2/show/NCT02696343 (Archived by WebCite at http://www.webcitation.org/6r5NbJ9Ym).
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