Optimising Female Fertility: Controlling Ovulation And Promoting Embryo Developmental Potential
Funder
National Health and Medical Research Council
Funding Amount
$459,270.00
Summary
A good quality egg at the right time is required to make a healthy embryo, influencing its lifetime health trajectory. My research aims to determine how the female ovary produces a good quality egg and releases it at the right time. This is essential for improving reproductive health in women and will identify how maternal health influences egg quality and the earliest stages of embryo growth, providing the healthiest start to life.
Interleukin 11 And Leukaemia Inhibitory Factor: Important Regulators Of Embryo Implantation And Placentation
Funder
National Health and Medical Research Council
Funding Amount
$346,117.00
Summary
Infertility, spontaneous abortion and pre-eclampsia are major clinical problems. Interleukin (IL)-11 and leukemia inhibitory factor (LIF) are critical for embryo implantation in mice but their roles in women are unknown. I will define their roles in the establishment of pregnancy and provide new critical information on their potential as targets for diagnostic and therapeutic tools for infertility and major diseases associated with pregnancy.
The Ethics And Politics Of Pharmaceutical Innovation And Translation
Funder
National Health and Medical Research Council
Funding Amount
$476,728.00
Summary
I lead a research program on the ethics and politics of pharmaceutical innovation and translation: how medicines are developed, regulated, funded and taken up into practice. I aim to help policymakers to deal with conflicts among stakeholders. Over the next 4 years I will conduct a suite of research projects on topics of immediate significance to Australian policymakers; develop a new framework for pharmaceutical ethics and create a “Pharmaceutical Ethics and Politics Network.”
The Role Of The Zinc Finger Transcriptional Repressor Znf238 During Nerve Cell Maturation
Funder
National Health and Medical Research Council
Funding Amount
$394,264.00
Summary
Proper foetal brain assembly is critical for brain function, but the underlying genetic mechanisms remain poorly defined. In this study, I will investigate a family of proteins that “turn on” neural gene expression in combination with another protein that “turns off” their expression during nerve cell development. Understanding this novel on/off mechanism for controlling gene expression in newborn nerve cells will further our understanding of how the brain is assembled.