View clinical trials related to Premature Birth.
Filter by:Human cytomegalovirus (HCMV) is the leading cause of neonatal viral infection and can have a significant impact on the neurosensory development of newborns and especially preterm infants. HCMV infection may result from maternal-fetal transmission during pregnancy or postnatal transmission. While congenital HCMV infection affects about 2-5% of very preterm infants, the risk of postnatal infection, particularly through breast milk, is much higher in this population (prevalence of about 20%). Many learned societies wonder about the interest to inactivate HCMV (by freezing or pasteurization) in breast milk in order to reduce or eliminate contamination of these children. However, freezing is relatively inefficient to reduce contamination and pasteurization drastically alters the nutritional quality of the milk. Therefore, a systematic preventive treatment of breast milk for very preterm infants is not currently recommended. An alternative approach could consist in detecting HCMV in breast milk to target at-risk situations. This detection can be performed by PCR but its cost and the time required to obtain the result prohibits its use for a mass detection. Currently, viral status of breast milk is not explored in practice and, depending on the health centers, breastfeeding is continued as such or milk is systematically inactivated.The main objective of VIRUMILK is to study the feasibility of the CMV detection in breast milk from lactating mothers with a biochip.The ultimate goal is to prevent postnatal HCMV infection of preterm newborns less than 33 weeks.
This study aims to compare immunologic parameters of 60 patients who are 1-28 days-aged, below 1500-gram body weight, born before 32 weeks of gestational age and fed with eoprotin or olive-oil fortified breast milk. Cases will receive same amount of calorie intake either with eoprotin or olive oil fortified-breast milk. If investigators identify that olive oil doesn't increase proinflammatory cytokines and grant enough weight gain in premature infants at the end of the study, investigators will suggest olive oil to replace eoprotin which is a very costly breast milk-fortifier.
The purpose of this study is to explore the perinatal risk factors of encephalopathy of prematurity and the morbidity of the following neurodevelopmental impairments in preterm infants with gestational age <32 weeks in China.
Project summary Rationale Many NICU's replace their feeding tubes once a week or more rarely in order to avoid disturbing the infants. The researchers discovered that there are high concentrations of potentially pathogenic bacteria in the yield of resident nasogastric feeding tubes, even within one day of use (own data, manuscript submitted). Preterm infants are vulnerable to the colonization of the gut, and development of dysbiosis might lead to necrotizing enterocolitis. The researchers speculate if replacing the resident feeding tube every day and thereby decreasing the amount of potentially pathogenic bacteria given to the infants via the feeding tube will lead to fewer bacteria present in the upper part of the gastrointestinal tract of the infant and hence a reduced competition with probiotic colonization. Objectives The investigators plan to conduct an intervention study in premature infants receiving probiotics (< 32 weeks of gestation) where the feeding tube will be replaced every day in the intervention group and once a week (standard practice) in the control group. The main outcome will be bacterial concentration in the stomach after one week of life. Methods The study is a prospective, randomized controlled trial in preterm infants. Infants will be randomized to the intervention group in which the tube is replaced every day or the control group which will follow normal practice in the department. The intervention will last one week. The infants will be followed until discharge. The investigators plan to include 11 infants in each group. Primary outcome Concentration of bacteria in gastric aspirates on day seven.
Infection and inflammation is related to increased encephalopathy of prematurities.
Preterm birth alters the normal sequence of lung development with lasting respiratory consequences. It is still unclear whether observed respiratory morbidities in preterm born individuals reflect sequelae from a non-progressive lung disease that occurred early in life or result from ongoing active disease that, if left undiagnosed and untreated, could increase the risk of a COPD-like phenotype. We propose to examine micro-structural abnormalities of the lung using innovative non-invasive imaging technologies in relation to pulmonary function and markers of inflammation and oxidative stress in young adults born preterm.
The development of the retinal vascular network is generally complete during the 3rd trimester of pregnancy but may continue during the first 15 days of life. This late maturation may cause problems in pre-term births and may result in immature vascularization of the retina, a condition called retinopathy of prematurity. Among the different factors affecting the development of the retinal vasculature, the tissue level of omega-3 polyunsaturated fatty acids (PUFA) appears to be a crucial element, as does the form of the PUFA present in the tissues (nature of the phospholipids in their membranes). This project aims to show a possible association between levels of omega-3 PUFA and the onset of retinopathy of prematurity (ROP).
The objective of the study is to compare a new antibiotic protocol with the current prophylactic treatment in routine use and to evaluate obstetric and neonatal outcome: preterm labor, chorioamnionitis and early onset sepsis
The study includes preterm infants who are being screened for ROP between April 1,2016 and April 30, 2017 in 69 neonatal intensive care units (NICUs) in Turkey. Infants with birth weight (BW) of ≤1500 g or ≤32 weeks' gestation and those with a BW of greater than 1500 g or gestational age (GA) >32 weeks with an unstable clinical course are included. The incidence of any ROP, severe ROP and treatment modalities will be determined. The risk factors for ROP development will also be evaluated.
Extremely low birth weight (ELBW), birth weight less than or equal to 1000 g, infants are at high risk for developing brain injury in the first week of life. Intraventricular hemorrhage (IVH) and periventricular leukomalacia (PVL) are the most common injuries in this group of infants. Their incidence is inversely proportional to gestational age (GA) and birth weight (BW). These lesions are associated with neurodevelopmental delay, poor cognitive performance, visual and hearing impairment, epilepsy, and cerebral palsy; and instability of systemic hemodynamics during transition from intra- to extra-uterine life and during the early neonatal period is believed to be at their genesis. While the incidence of ultrasound- diagnosed cystic PVL has decreased dramatically over the last 2 decades, diffuse PVL detected by magnetic resonance imaging (MRI) is still prevalent in survivors of neonatal intensive care. Moreover, PVL, even when non-cystic, is associated with decreased cortical complexity and brain volume and eventual neurocognitive impairment. Currently, clinicians lack the tools to detect changes in cerebral perfusion prior to irreversible injury. Unfortunately, the incidence of brain injury in ELBW infants has remained relatively stable. Once translated to the bedside, the goal of this research is to develop a monitoring system that will allow researchers to identify infants most at risk for IVH and PVL and in the future, intervention studies will be initiated to use the changes in cerebral perfusion to direct hemodynamic management. The purpose of this study is to first understand the physiology of brain injury and then to eventually impact the outcomes in this high-risk group of infants by assessing the ability of the diastolic closing margin (DCM), a non-invasive estimate of brain perfusion pressure, to predict hemorrhagic and ischemic brain injury in ELBW infants. The information collected for this study will help develop algorithms or monitoring plans that will maintain the appropriate brain perfusion pressure and thereby, prevent severe brain injury.