Docosahexaenoic Acid For The Reduction Of Bronchopulomonary Dysplasia In Preterm Infants Born At Less Than 29 Weeks Gestational Age: A Randomised Controlled Trial
Funder
National Health and Medical Research Council
Funding Amount
$1,929,854.00
Summary
A major challenge in the care of very preterm babies, is dealing with the fact that the baby has very immature lungs. They are prone to an inflammatory condition known as BPD (broncho-pulmonary dysplasia) that prevents an infant from breathing, much like asthma in older children. This can result in poor health outcomes for life. Our study will test the effect of the omega 3 fat known as DHA in reducing this inflammation in the lung and result in better outcomes for the baby.
A Pre-clinical Trial Of Early Blood Transfusion For Improving Cerebral Oxygen Delivery In Very Preterm Neonates
Funder
National Health and Medical Research Council
Funding Amount
$970,603.00
Summary
Long-term disability is common in babies born prematurely. This may be due to insufficient delivery of oxygen to the brain, but currently there is no treatment that increases oxygen delivery to the brain. We will determine if blood transfusion is more effective than current treatments given to prevent brain injury in preterm babies. Transfusion has two benefits. It will increase the amount of blood going to the brain. It will also increase the amount of oxygen carried by the blood.
Rationale For Non-invasive Treatment Of Retinopathy Of Prematurity: Dark Rearing As A Means Of Mimicking Physiological Vascularisation
Funder
National Health and Medical Research Council
Funding Amount
$413,900.00
Summary
We aim to develop a new, non-invasive and cost-effective treatment for the disease Retinopathy of Prematurity, the leading cause of childhood blindness across the globe. We intend to test our hypothesis that raising neonates in conditions of total darkness and high oxygen will closely mimic conditions for inducing normal retinal vascular development, and thus prevent the initiating event of the disease. Ultimately, the project intends to lay the groundwork for a translation to the human conditio ....We aim to develop a new, non-invasive and cost-effective treatment for the disease Retinopathy of Prematurity, the leading cause of childhood blindness across the globe. We intend to test our hypothesis that raising neonates in conditions of total darkness and high oxygen will closely mimic conditions for inducing normal retinal vascular development, and thus prevent the initiating event of the disease. Ultimately, the project intends to lay the groundwork for a translation to the human condition.Read moreRead less
Novel Strategies For Improving Respiratory Support And Outcomes For Very Preterm Babies
Funder
National Health and Medical Research Council
Funding Amount
$8,381,820.00
Summary
Very premature birth is the commonest cause of illness and death in newborn babies, making it one of the most serious and costly issues in perinatal medicine. The major problem suffered by very premature babies is lung immaturity and its associated harmful effects on brain development. Most very premature babies require resuscitation followed by ventilatory support,often for several weeks. This is extremely expensive and places an enormous financial burden on health care systems. Furthermore, it ....Very premature birth is the commonest cause of illness and death in newborn babies, making it one of the most serious and costly issues in perinatal medicine. The major problem suffered by very premature babies is lung immaturity and its associated harmful effects on brain development. Most very premature babies require resuscitation followed by ventilatory support,often for several weeks. This is extremely expensive and places an enormous financial burden on health care systems. Furthermore, it increases the risks of respiratory illnesses, including bronchopulmonary dysplasia and chronic lung disease which can impair breathing and increase susceptibility to respiratory disease such as asthma later in life. The overall aim of this program is to improve outcomes for very premature babies, including less lung injury, better respiratory health and shorter stays in hospitals. In order to reduce the health burden caused by very premature birth on the community we need to know more about how it alters the normal development of the lungs in the newborn period and into later life. In particular, we need to understand the cellular and molecular processes involved in lung development so that we can identify gene networks and developmental processes that are disrupted by severe premature birth. Such knowledge is necessary to provide a more rational, scientific basis for managing and treating the alterations in lung structure and function caused by premature birth. We also need to develop better ways of resuscitating and ventilating these infants so that lung injury is minimized.The research team is led by two neonatologists and three biomedical research scientists with a proven record of effective collaboration. This team is internationally unique in that it includes practicing neonatologists, respiratory physiologists and molecular biologists who have collaborated together productively and are regarded as world leaders in their respective fields. New talents have been brought into the team to provide expertise in pulmonary stem cell biology, the design of novel steroid drugs, and clinical follow-up. Together, this team has the potential (a) to greatly enhance the understanding of the impact of very premature birth on the developing lung, (b) to improve resuscitation and ventilation techniques, and (c) to translate the new knowledge into clinical practice to improve the outcome for prematurely born babies. Using well characterized animal models we will determine gene networks involved in fetal lung development and how these are altered by premature birth. The successful transition from fetal to postnatal life is critical for survival at birth but more information is needed. Using newborn lambs and rabbits, we will trial novel strategies for enhancing the transformation of the immaturelung into an effective gas exchange organ at birth. New data on lung aeratioRead moreRead less
Premature babies often need assistance to breathe but this can injure the lung and lead to abnormal lung development and long-term lung disease. We have recently identified 3 factors that we believe are fundamental to initiating this abnormal lung development. We will demonstrate that these 3 factors mediate abnormal lung development following lung injury at birth. This information can then be used to reduce the incidence and severity of chronic lung disease of the newborn.
We are an international team committed to clinical trials to improve survival without disability in newborn babies. We plan a randomised trial to confirm if bovine lactoferrin, an inexpensive dairy protein, reduces death or major morbidity and increases total breast milk intake in 1,500 very low birthweight babies in neonatal intensive care units
The Use Of Probiotics To Reduce The Incidence Of Sepsis In Premature Infants.
Funder
National Health and Medical Research Council
Funding Amount
$808,733.00
Summary
Currently, premature infants are born without the normal immune defenses of infants born at the correct time because the protective factors that normally pass from the mother to the baby during the last few months of pregnancy have not had time to do so. In addition the tiny premature infants are at risk because they need the expertise of intensive care and are therefore separated from their parents and their parents' organisms which healthy term infants normally pick up from the birth canal and ....Currently, premature infants are born without the normal immune defenses of infants born at the correct time because the protective factors that normally pass from the mother to the baby during the last few months of pregnancy have not had time to do so. In addition the tiny premature infants are at risk because they need the expertise of intensive care and are therefore separated from their parents and their parents' organisms which healthy term infants normally pick up from the birth canal and their parents skin. The infants commonly develop infections from organisms living on their skin surfaces or inside their lungs, stomach or bowels. The babies are living in a hospital environment which they need to survive, but they may pick up particularly unhealthy organisms (pathogens) that produce toxins, which are difficult to treat even with antibiotics. These infections are so severe that one-fifth of the babies die, even in Australia where facilities for premature infants are excellent. Two recent studies overseas have shown that giving premature babies special preparations of certain probiotic organisms decreases the chance of babie developing infections. Probiotics are organisms that have health benefits. Probiotics tighten the spaces between cells to stop bacteria getting into the body, produce substances that kill other bacteria and promote the production of immunoglobulin A by the baby's own cells. Immunoglobulin A is a substance that lines the bowel wall and protects the baby from invasion by bacteria. This study will offer this probiotic product to very premature babies in a trial to see if it produces additional benefits for our babies in Victoria. Around five hundred babies will be given the product and five hundred will be given the placebo ( a harmless inert product which will look just like the real probiotic). Currently 23% of our babies get the serious infections and this study is powerful enough to see if we can reduce the number by one third.Read moreRead less
Best Fed: Implementing Evidence Based Clinical Practice Guidelines To Improve Breast Milk Use And The Feeding Management Of Infants Born
Funder
National Health and Medical Research Council
Funding Amount
$177,197.00
Summary
Breast milk is the best food for babies born prematurely. There are challenges for women in providing breast milk and challenges for clinicians in managing the feeds of preterm babies, including when to start feeds and how quickly to progress. Sometimes research evidence doesn’t translate into practice and in this project I will support clinicians to implement the best evidence so that more preterm babies are receiving breast milk on discharge home.
A Randomised Controlled Trial Of Enhanced Parenting Capacity To Improve Developmental Outcomes In Preterm Infants
Funder
National Health and Medical Research Council
Funding Amount
$1,045,141.00
Summary
In Australia there are 2, 600 very preterm survivors each year. 50% will have education/behavioural difficulties and 10% major disability. We aim to optimise the development of infants born very preterm through a tailored Positive Parenting Program. We predict reductions in child behavioural and emotional problems at 2 years corrected age.
Bronchopulmonary Dysplasia – A Regenerative Medicine Approach
Funder
National Health and Medical Research Council
Funding Amount
$480,406.00
Summary
Bronchopulmonary dysplasia is a major leading cause of morbidity and mortality in premature babies. There is no cure. We have previously shown that amnion epithelial cells can reduce the extent of lung damage during early stages of lung development. We aim to understand how amnion cells can promote repair by interacting with existing cell types in order to restore normal lung structure and function. The outcomes from this study will help design clinical trials and develop new therapies.