[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100511296":3},{"organization":4,"armGroups":7,"interventions":14,"overallOfficials":20,"centralContacts":25,"locations":32,"responsibleParty":47,"collaborators":50,"id":54,"slug":55,"hasResults":56,"nctId":57,"briefTitle":58,"officialTitle":59,"acronym":10,"eligibilityCriteria":60,"healthyVolunteers":56,"sex":61,"minAge":62,"maxAge":63,"enrollmentInfo":64,"targetDuration":10,"studyType":67,"phases":10,"briefSummary":68,"conditions":69,"keywords":72,"overallStatus":35,"whyStopped":10,"lastUpdateSubmitDate":78,"lastUpdatePostDateStruct":79,"startDateStruct":82,"completionDateStruct":84,"leadSponsor":86,"locationsCount":87},{"fullName":5,"class":6},"Milton S. Hershey Medical Center","OTHER",[8],{"label":9,"type":10,"description":11,"interventionNames":12},"Infants exposed to in utero opiates",null,"Infants that meet IRB-approved inclusion\u002Fexclusion criteria.",[13],"Genetic: Buccal swab saliva for further genetic testing",[15],{"type":16,"name":17,"description":18,"armGroupLabels":19,"otherNames":10},"GENETIC","Buccal swab saliva for further genetic testing","Genetic testing. Whole saliva RNA will be isolated for downstream microRNA quantification.",[9],[21],{"name":22,"affiliation":23,"role":24},"Steven D. Hicks, MD, PhD","Associate Professor of Pediatrics","PRINCIPAL_INVESTIGATOR",[26],{"name":27,"role":28,"phone":29,"phoneExt":30,"email":31},"Rhea E Sullivan, B.S.","CONTACT","717-531-0003","321585","rsullivan2@pennstatehealth.psu.edu",[33],{"facility":34,"status":35,"city":36,"state":37,"zip":38,"country":39,"countryCode":40,"cosmosGeoPoint":41,"geoPoint":46,"contacts":10},"Penn State Milton S. Hershey Medical Center","RECRUITING","Hershey","Pennsylvania","17033","United States","US",{"type":42,"coordinates":43},"Point",[44,45],-76.65025,40.28592,{"lat":45,"lon":44},{"type":24,"investigatorFullName":48,"investigatorTitle":23,"investigatorAffiliation":49,"oldNameTitle":10,"oldOrganization":10},"Steven Hicks","Penn State University",[51],{"name":52,"class":53},"National Institute on Drug Abuse (NIDA)","NIH","100511296","microrna-biomarkers-for-neonatal-opioid-withdrawal-syndrome-100511296",false,"NCT05937594","MicroRNA Biomarkers for Neonatal Opioid Withdrawal Syndrome","Understanding the microRNA Response to Opioid Withdrawal and Their Uses as Potential Biomarkers for Neonatal Abstinence Syndrome","Inclusion Criteria:\n\n* Newborns ≥35weeks gestation with chronic in-utero opioid exposure (\\>1month of gestation exposure). Maternal exposure will be determined by evaluating the medical records for maternal medication use, maternal urine toxicology and neonatal meconium toxicology results per standard clinical care\n* Neonates born at Penn State Hershey Medical Center or transferred at \\\u003C48 hours after birth\n* Mothers with chronic in-utero opioid use during pregnancy ( ≥1month of gestation)\n\nExclusion Criteria:\n\n* \\\u003C35 week gestation\n* Infant required mechanical ventilation or non-invasive mechanical support\n* Infant exposure to magnesium sulfate\n* Opioid-exposed neonates who are actively receiving dextrose infusion for persistent neonatal hypoglycemia at the time of enrollment (\\\u003C48hours after birth).\n* Infant with major congenital anomalies\n* Parent or guardian unable to provide consent\n* Mothers and neonates without history of opioid exposure\u002Fdependence","ALL","1 Day","5 Days",{"count":65,"type":66},50,"ESTIMATED","OBSERVATIONAL","Infants with neonatal abstinence syndrome (NAS) experience prolonged hospital stays and poor neurodevelopmental outcomes, in-part because of the lack of accurate, individualized, biologic assessments available to manage this increasingly common medical condition. The proposed study will define the molecular mechanisms that regulate the response to opioid withdrawal in the developing brain by focusing on three candidate microRNAs (let-7a, miR-146a, miR-192) that have been shown to respond to opioid exposure in animal models and adults, and are impacted in both my preliminary study of infants with NAS, and my human neural progenitor cell (NPC) design of opioid withdrawal. By determining the mechanism through which microRNAs impact NPC differentiation in opioid withdrawal, and determining whether exosomal salivary microRNA levels predict treatment dose and neurodevelopmental outcomes in infants with NAS, this study will enhance our knowledge of NAS-related biology and identify potential biomarkers that could improve medical care for this important medical condition.",[70,71],"Neonatal Opioid Withdrawal Syndrome","Neonatal Abstinence Syndrome",[73,74,75,76,77],"microRNA","saliva","neurodevelopmental","exosomes","infant","2026-02-06",{"date":80,"type":81},"2026-02-10","ACTUAL",{"date":83,"type":81},"2020-01-15",{"date":85,"type":66},"2027-04-10",{"name":5,"class":6},1]