Cysteine-rich Secretory Protein Regulation Of Ion Channels In Male Fertility And Prostate Cancer
Funder
National Health and Medical Research Council
Funding Amount
$474,309.00
Summary
Diagnosis of the precise causes of male infertility and the development of male contraceptives requires improved understanding of sperm function. The Cysteine-Rich Secretory Proteins (CRISPs) are produced in the male reproductive tract where they regulate sperm function. Our project will demonstrate the essential requirement for CRISPs in sperm function and investigate their role in other tissues of the reproductive tract, including the prostate where they may be involved in prostate cancer.
Effects Of Leptin On Follicle Growth And Ovulation
Funder
National Health and Medical Research Council
Funding Amount
$196,470.00
Summary
Leptin is a recently discovered hormone which is very important in controlling body weight. Extremely obese, or extremely underweight women, find it difficult to become pregnant, and leptin is probably the connection between weight and fertility. This may be a particularly important factor in polycystic ovary syndrome (PCOS), a distressing condition which affects 5% of women and causes both obesity and infertility. Exciting new research suggests that leptin also affects the immune system, and pr ....Leptin is a recently discovered hormone which is very important in controlling body weight. Extremely obese, or extremely underweight women, find it difficult to become pregnant, and leptin is probably the connection between weight and fertility. This may be a particularly important factor in polycystic ovary syndrome (PCOS), a distressing condition which affects 5% of women and causes both obesity and infertility. Exciting new research suggests that leptin also affects the immune system, and previous NH and MRC funding has enabled us to demonstrate that the immune system plays a crucial role in maintaining normal ovarian function. The nutritional status of the body, the immune system and the reproductive system all interact, and leptin appears to be the connecting link between these three major systems. We propose that leptin plays a major role in the ovary, and wish to determine how leptin mediates the effects of bodyweight and the immune system on ovarian function. Laboratory rats will be treated with leptin, their food intake and weight recorded, and a few weeks later the rats will have their ovaries removed. We will find out whether ovaries respond to leptin, or whether the ovarian response changes according to the menstrual cycle: perhaps leptin is very important just before ovulation, but it does not affect menstruation? Do any ovarian cells make leptin? Will leptin stimulate ovaries to produce more oestrogen or progesterone, or ovulate more eggs? We will also identify immune system cells in the ovary, and note whether leptin affects them. We will be able to relate all this data to weight and diet. Increased understanding of leptins' effect on the ovary has the potential to lead to new, improved treatments for PCOS or for unexplained cases of infertility. It is also possible that in the future a weight-loss regime might be developed which takes a womans monthly cycle into account, therefore making weight-loss more efficient and attainable.Read moreRead less
Sex Differences In The Mechanisms By Which Stress Inhibits The Secretion And Actions Of GnRH
Funder
National Health and Medical Research Council
Funding Amount
$408,055.00
Summary
It is well known that stress can impair reproduction in humans and animals but it is not understood how this occurs. Consequently there are no therapies available to overcome the detrimental effects of stress on reproduction. Stress can take many forms, such as psychological stress, surgical trauma, strenuous exercise, undernutrition, all of which may inhibit reproduction. We now know that males and females respond differently to stress and we have shown that stress is also likely to have differ ....It is well known that stress can impair reproduction in humans and animals but it is not understood how this occurs. Consequently there are no therapies available to overcome the detrimental effects of stress on reproduction. Stress can take many forms, such as psychological stress, surgical trauma, strenuous exercise, undernutrition, all of which may inhibit reproduction. We now know that males and females respond differently to stress and we have shown that stress is also likely to have different effects on reproduction in males and females. In this project we aim to determine how stress impairs reproduction in males and females. A major effect of stress appears to be to inhibit the secretion of a substance produced by the brain that is necessary for the regulation of reproduction. This substance is called gonadotrophin releasing hormone (GnRH) and it acts on a small gland at the base of the brain to cause the release of hormones that are essential for reproduction in both males and females. It is also possible that stress may inhibit the actions of GnRH. Our research suggests that there may be differences between males and females in the extent to which stress inhibits the secretion of GnRH from the brain and its actions to cause the release of other reproductive hormones. In this project we will determine how stress acts in the brain to affect the secretion and actions of GnRH in males and females. Our research will make a major contribution to our knowledge of the way that stress inhibits reproduction in males and females. This information is essential in order to develop specific remedies to overcome reproductive disorders caused by stress and to improve reproductive health in both sexes.Read moreRead less
Combination Methotrexate And Gefitinib To Cure Ectopic Pregnancies: Phase I-II Clinical Trials
Funder
National Health and Medical Research Council
Funding Amount
$235,875.00
Summary
Ectopic pregnancies are dangerous emergencies that can cause fatal bleeding. Most require surgery. We plan to test a novel medication-based treatment that could be used to cure most ectopics. If successful, it could revolutionise current management.
Neuroendocrine Mechanisms By Which Leptin Regulates Reproduction
Funder
National Health and Medical Research Council
Funding Amount
$447,750.00
Summary
The reproductive system is sensitive to alterations in body weight. In particular, low body weight causes the reproductive system to cease functioning. This is because the brain 'senses' metabolic status and responds by ceasing to secrete the brain hormone that drives the reproductive process. This hormone is gonadotropin releasing hormone that acts on the pituitary gland to control the release of gonadotropins. These, in turn, act on the gonads. How the brain perceives metabolic status is not k ....The reproductive system is sensitive to alterations in body weight. In particular, low body weight causes the reproductive system to cease functioning. This is because the brain 'senses' metabolic status and responds by ceasing to secrete the brain hormone that drives the reproductive process. This hormone is gonadotropin releasing hormone that acts on the pituitary gland to control the release of gonadotropins. These, in turn, act on the gonads. How the brain perceives metabolic status is not known. Leptin is a hormone that is produced by fat and acts on the brain. This appears to be one of the means by which the reproductive system is regulated. Leptin also regulates food intake and other brain processes. Leptin acts on specific cell types in the brain. Some of these may have dual function to regulated appetite as well as reproduction. The present proposal is for work to determine mechanisms within the brain that are altered by leptin. We will also determine which specific mechanisms relate to the regulation of gonadotropin releasing hormone. The work will provide information on how putative appetite regulators might affect the reproductive axis. Such work will provide a platform for design of pharmaceutical means to manipulate the reproductive axis and will impact on the design of drugs that regulate obesity. It is possible that drugs that developed to control obesity may affect the reproductive axis and the project will identify these.Read moreRead less
ELF5 Integrates Prolactin And Progestin Control Of Mammary Gland Development Via Regulation Of Progenitor Cells.
Funder
National Health and Medical Research Council
Funding Amount
$720,515.00
Summary
Elf5 may act as a master-regulator of mammary cell growth during pregnancy. We will demonstrate that Elf5 can replace the requirement for prolactin and progesterone to trigger mammary development and we will determine the stem or progenitor cells Elf5 acts on. Finally we will apply this knowledge to breast cancer cell lines to discover what role Elf5 plays in breast cancer. These experiments have the potential to establish Elf5 as a new therapeutic target for the treatment of breast cancer.