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Impact of Delayed Cord Clamping and Minimally Invasive Surfactant Administration on Outcomes in Premature Infants Less Than 30 Weeks Gestation

Impact of Delayed Cord Clamping and Minimally Invasive Surfactant Administration on Outcomes in Premature Infants With Neonatal Respiratory Distress Syndrome at Less Than 30 Weeks Gestation: A NICU Quality Improvement Study

Status
Not yet recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07092319
Enrollment
518
Registered
2025-07-29
Start date
2025-08-30
Completion date
2027-10-31
Last updated
2025-07-29

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

Conditions

NRDS

Keywords

Delayed cord clamping, minimally invasive surfactant administration, preterm infants

Brief summary

Background: Preventing early exposure to invasive mechanical ventilation in premature infants is crucial for reducing the incidence of bronchopulmonary dysplasia (BPD) and improving overall outcomes. Compared to immediate cord clamping (ICC) and tracheal intubation for pulmonary surfactant administration at birth, delayed cord clamping (DCC) combined with minimally invasive surfactant administration (MISA) has been shown to enhance early respiratory and circulatory stability in premature infants, thereby decreasing the need for invasive mechanical ventilation. The investigators hypothesize that for preterm infants under 30 weeks gestation diagnosed with respiratory distress syndrome (RDS), the combination of DCC and MISA will more effectively reduce the incidence of BPD. Methods and Design: The investigators will conduct a single-center ambispective cohort study to compare three treatment regimens in premature infants diagnosed with neonatal respiratory distress syndrome (NRDS) at less than 30 weeks gestation: Delayed cord clamping (DCC) combined with minimally invasive surfactant administration (MISA) (n=74); Immediate cord clamping (ICC) combined with tracheal intubation for pulmonary surfactant administration (n=222); Immediate cord clamping (ICC) combined with MISA (n=222). The study aims to evaluate the incidence of bronchopulmonary dysplasia (BPD), short-term treatment effects, safety, and long-term outcomes associated with each regimen, providing valuable evidence for clinical treatment decisions. Discussion: Current research indicates that both delayed cord clamping (DCC) and minimally invasive surfactant administration (MISA) positively impact the prognosis of very premature infants and help reduce the incidence of bronchopulmonary dysplasia (BPD). However, there is limited research on whether the combined use of DCC and MISA can further enhance survival rates and decrease BPD incidence in this vulnerable population. The investigators NICU has gradually implemented MISA in respiratory management since 2017 and adopted cord management with DCC since 2023. This study retrospectively analyzes data from previous groups: those receiving immediate cord clamping (ICC) with MISA, and those receiving ICC with tracheal intubation. The investigators will compare this with prospective data from the DCC combined with MISA group to assess differences in BPD occurrence, other complications and overall outcomes. Through this study, the investigators aim to determine whether the combination of DCC and MISA offers greater benefits in improving the prognosis of very premature infants, ultimately providing a stronger foundation for early respiratory and circulatory management strategies for infants born before 30 weeks.

Detailed description

With the rapid advancement of neonatal intensive care technology, the survival rate of premature infants born at less than 30 weeks gestation continues to rise. However, the immaturity of various organ systems leads to a high incidence of complications, and long-term outcomes can often be less than optimistic\[1\]. Consequently, enhancing both short-term and long-term prognoses for these infants through quality improvement initiatives has become a prominent focus in recent clinical research. Bronchopulmonary dysplasia (BPD) is a critical complication in very premature infants, significantly affecting their future survival, as well as their respiratory and neurological development. Preventing and reducing the incidence of BPD is crucial for improving the overall prognosis of these infants\[2\]. Ensuring postpartum respiratory and circulatory stability while minimizing exposure to early invasive mechanical ventilation is essential for preventing and reducing the incidence of BPD. The management of respiratory and circulatory conditions in preterm infants begins with delayed umbilical cord clamping (DCC) in the delivery room. Compared to immediate cord clamping (ICC), DCC facilitates the transfer of blood from the placenta to the infant, enhancing the adaptability of vital organs such as the heart, brain, and lungs. This practice supports a smoother transition from intrauterine to extrauterine life, promotes the conversion of respiratory circulation, and can reduce preterm infant mortality by 30%. Additionally, DCC decreases the incidence of complications such as intraventricular hemorrhage, necrotizing enterocolitis, and late-onset sepsis. It also increases blood volume, minimizes the need for blood transfusions, enhances iron storage, and lowers the risk of long-term neurodevelopmental issues. Therefore, DCC emerges as a viable strategy to enhance the perinatal prognosis of preterm infants\[4-8\]. However, there are limited reports in China regarding the implementation of DCC in premature infants born at less than 30 weeks gestation. The investigators hospital began adopting DCC for preterm infants in 2023 and has developed and standardized the operational procedures for this practice. However, relevant clinical studies have yet to be conducted. Neonatal respiratory distress syndrome (NRDS) is a condition resulting from a deficiency of pulmonary surfactant (PS) in the alveoli. It is the most common respiratory issue encountered by very premature infants, who often experience progressively worsening respiratory distress shortly after birth. Treatment for NRDS involves respiratory support and the administration of exogenous PS. Traditionally, this is done through tracheal intubation. However, recent clinical studies have demonstrated that minimally invasive surfactant administration (MISA) offers several advantages over tracheal intubation. MISA effectively reduces the need for invasive mechanical ventilation within the first 72 hours and plays a significant role in lowering the incidence of bronchopulmonary dysplasia (BPD)\[9\]. With advancements in DCC and MISA technology in NICU settings, these approaches have become the preferred options for very premature infants who are breathing spontaneously at birth. To further assess the safety and effectiveness of DCC combined with MISA in the investigators hospital's NICU for premature infants born at less than 30 weeks gestation, the investigators propose this quality improvement study. The study aims to compare the incidence and prognosis of bronchopulmonary dysplasia (BPD) and other complications before and after the implementation of DCC and MISA in the NICU. The investigators hospital has been implementing MISA since 2017 and has gained extensive clinical experience in treating NRDS in premature infants using this method. The investigators previously conducted a prospective multicenter study comparing MISA with tracheal intubation for surfactant administration shortly after birth. The results indicated that the incidence of bronchopulmonary dysplasia (BPD) and hemodynamically significant patent ductus arteriosus (hsPDA) was lower in the MISA group, highlighting its suitability for premature infants born at less than 30 weeks gestation\[10-11\]. The investigators hospital has gradually implemented DCC for premature infants prior to this research and has established a comprehensive protocol for its application in the delivery room and during surgical procedures. As a result, the investigators NICU is well-equipped to perform DCC combined with MISA for infants born at less than 30 weeks gestation. Based on previous research findings, this study specifically targets premature infants under 30 weeks, a group that exhibits a relatively high incidence of bronchopulmonary dysplasia (BPD). By monitoring the respiratory and overall health outcomes of these infants following the application of DCC combined with MISA, the investigators aim to evaluate the effectiveness of this NICU quality improvement measure in enhancing the prognosis of very premature infants.

Interventions

DCC: deferred cord clamping successfully for 60 seconds;MISA: Surfactant administration by minimally invasive methods that allow for spontaneous breathing.

Sponsors

Peking University Third Hospital
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Healthy volunteers
No

Inclusion criteria

① Infants of 23 to 29+6 weeks GA. ② Born in Peking University Third Hospital, having spontaneous breathing after birth; ③ Diagnosed as NRDS; NRDS is defined as progressive dyspnea that occurs after birth, with or without imaging evidence, excluding other causes of dyspnea.

Exclusion criteria

* Premature infants who have received tracheal intubation prior to the use of PS due to resuscitation or other reasons shortly after birth; ② Premature infants with identified or confirmed congenital abnormalities (such as fetal edema, chylothorax, or neuromuscular disease) or severe birth complications (including hemorrhagic shock, air leakage, or early-onset sepsis) that impact respiratory function.; ③ Newborns who discontinue treatment or have incomplete information; ④ Newborns involved in other intervention research studies.

Design outcomes

Primary

MeasureTime frameDescription
incidence of bronchopulmonary dysplasiaAt 36 weeks PMAThe primary outcome is the incidence of bronchopulmonary dysplasia (BPD) at a corrected gestational age of 36 weeks.

Secondary

MeasureTime frameDescription
Rate of air leakage, pulmonary hemorrhage, infectious pneumoniaThrough study completion and up to corrected three monthsRate of air leakage, pulmonary hemorrhage, infectious pneumonia
Rate of late onset sepsis with positive blood cultureThrough study completion and up to corrected three monthsRate of late onset sepsis with positive blood culture
Rate of retinopathy of prematurityThrough study completion and up to corrected three monthsRate of retinopathy of prematurity onset before correcting gestational age for 50 weeks
Rate of III-IV ° periventricular intraventricular hemorrhage and periventricular leukomalaciaThrough study completion and up to corrected three monthsRate of III-IV ° periventricular intraventricular hemorrhage and periventricular leukomalacia
Rate of patent ductus arteriosus with hemodynamic changesFrom enrollment to 30 days after birthRate of patent ductus arteriosus with hemodynamic changes
Length of hospital stayFrom enrollment to the end of treatment at an average of 8 weeksLength of hospital stay
In-hospital mortalityThrough study completion and up to corrected three monthsIn-hospital mortality
Rate of hyperbilirubinemiaThrough study completion and up to corrected three monthsRate of hyperbilirubinemia
First time of blood transfusion during hospitalizationThrough study completion and up to corrected three monthsFirst time of blood transfusion during hospitalization
Rate of neonatal necrotizing enterocolitis IIa or aboveThrough study completion and up to corrected three monthsRate of neonatal necrotizing enterocolitis IIa or above

Countries

China

Contacts

Primary ContactTongyan Han
tongyanhan@bjmu.edu.cn+8615611963386

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026