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Genomic Sequencing and Personalized Treatment for Birth Defects in Neonatal Intensive Care Units

Genomic Sequencing and Personalized Treatment for Birth Defects in Neonatal Intensive Care Units

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT02551081
Enrollment
2000
Registered
2015-09-16
Start date
2015-10-01
Completion date
2025-12-30
Last updated
2025-09-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Congenital Malformation, Genetic Disease, Multiple Malformation

Brief summary

The purpose of study is to evaluate the benefits of using the Next Generation Sequencing Technology to diagnose birth defects and genetic diseases. The results from genomic sequencing can also significantly shorten the time of examination, improve the diagnosis rate, guide the clinical treatments. So the ultimate goal is individualized or personalized therapy and promote prognosis.

Detailed description

Neonatal congenital malformation is one of the most frequent cause of infant death in the western world and major cities of China. There are many different types of congenital malformations, and some of these can be caused by changes in gene mutation. Next generation sequencing (NGS) is a high-throughput parallel sequencing that can provide genetic information with high accuracy. It is a faster and cost-effective method to detect gene mutations compared to Sanger sequencing. We hope to couple genomic techniques with more traditional methods involved in genetic discovery in order to investigate a broad range of conditions for which there is strong evidence that genetic factors are involved. So In this study, we evaluated the clinical role of NGS testing for neonatal genetic disease in newborns compared to Sanger sequencing to observe whether this new technology can significantly shorten the time of examination, improve the diagnosis rate, guide the intervention treatments and promote prognosis. These neonates who have an undiagnosed illness, and partial families, will be eligible to participate in the study. The study population will be recruited from Children's Hospital of Fudan University inpatient population, primarily the neonatal intensive care unit (NICU), with a subpopulation presenting to other hospitals in China. All affected study participants will receive a genetic screening according to their clinical symptom. All subjects will have blood drawn for DNA isolation and genomic sequencing at the time of enrollment in the study. All blood sample volumes will adhere to the Fudan procedure on maximum blood in pediatric patients. In addition, cerebrospinal fluid and tissue samples may be collected and stored in the bank of biosamples. DNA will be isolated and prepared for NGS or Sanger with Fudan protocols at the Translational Medicine Center of Children's Hospital of Fudan University. Partial familial samples will also be obtained, and nucleic acids will also be sequenced, as indicated, to assist in diagnosis of the genetic disease in the newborn. All sequencing data will be stored in the Genome Center Biorepository. In the case of positive study findings that may be diagnostic, our investigator will perform confirmatory clinical diagnostic testing and, if confirmed, a standard clinical diagnostic report will be placed in the patient's medical record. Follow up with the patient's family will be guided by the clinical care team. Both molecular diagnoses results and duration to diagnosis will be recorded as primary outcomes. In addition, this information will help alleviate anxiety on the part of the family, and also provides a mechanism for patient crossover into the rapid NGS arm if the patient is clinically deteriorating, and at the clinical care team's request. Each time a study participant is enrolled, the clinician and parents will be asked to fill out a survey prior to NGS testing and after return of results. We will also review the patient's medical record and collect clinical variables including laboratory testing, radiology results, medications and other treatments received to further analyze the effect NGS has on clinical care. So the ultimate goal is individualized or personalized therapy. We plan to follow up with families annually up to 18 months post enrollment and record clinical outcomes related to this study.

Interventions

None listed

Sponsors

Xiamen Children's Hospital, Fujian of China
CollaboratorOTHER
Maternal and Child Health Hospital of Guangxi Zhuang Autonomous Region
CollaboratorOTHER
Guangzhou Women and Children's Medical Center
CollaboratorOTHER
Second Affiliated Hospital of Wenzhou Medical University
CollaboratorOTHER
Maternal and Child Health Hospital of Hubei Province
CollaboratorOTHER
The Maternal & Children Health Hospital of Dehong, Yunnan of China
CollaboratorOTHER
Children's Hospital of Fudan University
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
No minimum to 28 Days
Healthy volunteers
No

Inclusion criteria

One of the following criteria required. 1. Neonates admitted to the Neonatal Intensive Care Units in one of the study hospitals 2. Clinical genetic testing or a genetic consult is ordered 3. Subject has one major structural anomaly or three or more minor anomalies 4. Abnormal laboratory testing suggestive of a genetic disease 5. Abnormal response to standard therapy for a major underlying condition

Exclusion criteria

1. Previously performed exome/genome sequencing on patient 2. Any infant in which clinical considerations preclude drawing 1.0 ml of blood 3. Has features pathognomonic for a large chromosomal aberration (Trisomy 13, 18, 21 or other) 4. Parents are unwilling to have genomic reports placed in the medical record or sent to their primary care pediatrician 5. Parents refuse consent

Design outcomes

Primary

MeasureTime frameDescription
MortalityAt corrected age of 18 monthsThe relative frequency of deaths in each group.
Gene MutationIn 30 days after receipt of the sampleTo detect the mutation and characterize the genetic architecture and risk variants of neonatal malformation using different genomic methods.
Disability RateAt corrected age of 18 monthsDisability, defined as a physical or mental handicap, especially one that prevents a person from living a full, normal life or from holding a gainful job.

Secondary

MeasureTime frameDescription
Respiratory SupportIn 14 days after results disclosureTo observe whether the clinical mornitoring will be changed after results disclosure
Neurodevelopment(Bayley Scores)At corrected age of 18 monthsTo evaluate neurodevelopmental function by Bayley Scores of Infant Development Mental Development Index (MDI), gain Incidence of MDI\<70(Severe) or MDI\<85(Moderate)
Care LevelIn 14 days after results disclosureTo observe whether the care level will be changed after results disclosure

Other

MeasureTime frameDescription
Average days of hospitalizationAt corrected age of 18 monthsFrom hospital to discharge.
Parents' recall of study resultsAt corrected age of 3 monthsAssessed in parent surveys via questions assessing: results recall
Parents' understanding of study resultsAt corrected age of 3 monthsAssessed in parent surveys via questions assessing: subjective understanding, importance of understanding.
The total cost for hospitalizationAt corrected age of 18 monthsDetermination of utilization of healthcare resources in hospital charges in both arms.

Countries

China

Contacts

Primary ContactWenhao Zhou, Doctor
zwhchfu@126.com
Backup ContactGuoqiang Cheng, Doctor
gqchengcm@163.com

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 3, 2026