Macrophages In Developmental Programming Of Reproductive Health
Funder
National Health and Medical Research Council
Funding Amount
$532,386.00
Summary
Programming of reproductive health in women begins long before sexual maturity. Development during childhood, puberty and adulthood produces a fully functional reproductive system capable of conceiving, gestating and nurturing a child. This project will investigate the role of immune cells known as macrophages in the reproductive system, and investigate how their disruption might influence developmental programming and have lifetime consequences for the reproductive health of the individual.
Seminal Fluid As A Determinant Of Reproductive Health In Women
Funder
National Health and Medical Research Council
Funding Amount
$511,294.00
Summary
Healthy reproductive function is essential for conception and pregnancy. We have discovered that male seminal fluid can influence the female reproductive system after coitus. This project will define the actions of seminal fluid in the cervix and uterus, and the impact on fertility and defence against sexually transmitted infection. The findings will provide new insight on how men contribute to reproductive health in women, and lead to improved treatments for infertility and miscarriage.
Redox Cycling Of Quinones By Human Spermatozoa: A Potential Strategy For The Dual Regulation Of Fertility And STDs
Funder
National Health and Medical Research Council
Funding Amount
$314,625.00
Summary
The purpose of this research project is to develop a novel form of contraception that could meet the dual objectives of fertility regulation and prevention of sexually transmitted disease (STD). A particularly novel feature of this proposed spermicide-microbicide is that it has to be activated by spermatozoa i.e the formulation comprises a pro-spermicide that only generates the active principle on contact with sperm. This aspect of the method sets it apart from all other forms of topical contrac ....The purpose of this research project is to develop a novel form of contraception that could meet the dual objectives of fertility regulation and prevention of sexually transmitted disease (STD). A particularly novel feature of this proposed spermicide-microbicide is that it has to be activated by spermatozoa i.e the formulation comprises a pro-spermicide that only generates the active principle on contact with sperm. This aspect of the method sets it apart from all other forms of topical contraception because unlike barrier methods and vaginal creams or foams, its use will not be coitus related. Ultimately it is envisaged that the product could be incorporated into a soft pliable vaginal sponge and left in situ until such time as it becomes activated following intercourse. Such a method should be particularly acceptable to young women who are vulnerable to both STDs and unwanted pregnancy as indicated by (a) the relatively high rates of STDs in adolescent girls, particularly in the indigenous community, and (b) the fact that 50% of all recorded pregnancies to Australian women under 19 years of age end in abortion. The method exploits the susceptibility of human spermatozoa and pathogenic organisms responsible for STDs to oxidative stress and, in effect, mimics a naturally occurring cause of male infertility. If successful, this project would produce a female centred method of contraception and STD prevention that would revolutionize reproductive health care for young women worldwide, as well as generating intellectual property of considerable potential value to the nation.Read moreRead less
This study is aiming to develop an unique mouse model in which to study the question whether testosterone plays an essential role in female reproductive and general health. It will develop a genetic mouse model for a biological state of complete resistance to the effects of androgens. Such mice and humans are well known among genetic males but this cannot occur naturally among genetic female mammals. By creating such a mouse line, this project will be able to test for the first time indetail whe ....This study is aiming to develop an unique mouse model in which to study the question whether testosterone plays an essential role in female reproductive and general health. It will develop a genetic mouse model for a biological state of complete resistance to the effects of androgens. Such mice and humans are well known among genetic males but this cannot occur naturally among genetic female mammals. By creating such a mouse line, this project will be able to test for the first time indetail whether testosterone has an impotant role in the development and function of the ovary and of other female tissues such as bone, muscle and the brain.Read moreRead less
Interleukin 11 And Leukemia Inhibitory Factor: Pivotal Regulators Of Uterine Receptivity And Placental Function
Funder
National Health and Medical Research Council
Funding Amount
$511,294.00
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 mechanisms of action in women are not well defined. We 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.
We propose to determine if a recently discovered biological mechanism plays crucial roles in the development of eggs and sperm. To achieve this, we will remove or mutate this pathway specifically in developing eggs and sperm , then examine the effect. Preliminary results indicate that the mechanism does play important roles mutated eggs fail to complete maturation. These studies will tell us more about what makes a healthy egg and sperm, and are relevant to female and male fertility.
Follicle-stimulating hormone (FSH) is vital for egg development, female fertility and health, and is widely used in assisted reproduction technology. But high levels of FSH are associated with premature infertility and menopause, and may lead to diseases like ovarian cancer. Understanding the biological pathways activated by elevated FSH may lead to new treatments for infertility and ovarian diseases (eg. cancer), as well as advancing new strategies for contraception.
Cumulus Cell Invasive Migration: Clearing A Path For The Oocyte
Funder
National Health and Medical Research Council
Funding Amount
$409,684.00
Summary
Ovulation is the process by which the egg is released from a female�s ovary, but it is not known how this process is controlled. We found that cells surrounding the egg are motile and similar to cancer cells; thus we hypothesize that this enables the egg to _invade� its way out of the ovary. We will test this idea in mice and determine whether similar processes are happening in women. The results will provide new information about how to stop ovulation and aid women who experience infertility.
Role Of The Anaphase-Promoting Complex Activator Cdh1 In Oocyte Maturation And Meiotic Aneuploidy
Funder
National Health and Medical Research Council
Funding Amount
$526,878.00
Summary
Eggs containing an incorrect number of chromosomes are described as aneuploid. This project sets out to examine the molecular causes of aneuploidy and why it increases with female age. We focus on the protective role of the protein Cdh1 in this process. The outcome would be to better understand the origins of aneuploidy so as to find methods of decreasing it as women age. This is highly significant given aneuploidy is the leading cause of early embryo loss and produces Down Syndrome babies.
Role Of Stem-progenitor Cells In Endometrial Regeneration And Endometriosis
Funder
National Health and Medical Research Council
Funding Amount
$437,720.00
Summary
We have discovered 2 types of adult stem cells in the lining of the uterus (endometrium) that are likely responsible for its ability to grow a new lining each month. This project aims to determine if endometrial stem cells are shed into the pelvic cavity during menstruation to cause endometriosis, a common, chronic disorder affecting 6-15% of women during their reproductive years and for which treatments are suboptimal. This knowledge may change how endometriosis will be treated in the future.