Our objective is to understand the biological significance of the interaction between iron and the hormone gastrin. The project's significance to human health lies in the fact that gastrins stimulate growth of the lining of the stomach and colon, accelerate the development of gastrointestinal cancers, and may be involved in iron homeostasis. Recognition that iron is essential for the biological activity of gastrins may allow the development of novel therapies for colon cancer and iron overload.
Progastrin Derived Peptides: Biological Activities And Functions In The Gastrointestinal Tract
Funder
National Health and Medical Research Council
Funding Amount
$454,500.00
Summary
Gastrin is a hormone from the stomach which aids digestion by stimulating acid secretion. However too much acid can cause ulcers of the gastrointestinal tract. Gastrin also stimulates the growth of the lining of the stomach and intestines. This growth promoting effect is important for the development of the gastrointestinal tract before birth and may also be involved in a number of cancers especially colon cancer. Several different forms of gastrin are made by endocrine cells of the stomach and ....Gastrin is a hormone from the stomach which aids digestion by stimulating acid secretion. However too much acid can cause ulcers of the gastrointestinal tract. Gastrin also stimulates the growth of the lining of the stomach and intestines. This growth promoting effect is important for the development of the gastrointestinal tract before birth and may also be involved in a number of cancers especially colon cancer. Several different forms of gastrin are made by endocrine cells of the stomach and by cancers of the colon. It seems that the different types of gastrins have different effects and act through distinct receptors, but we do not know which are the most important forms and whether all forms are biologically active. The amount, type and activity of the different gastrins, and the regions of the molecule that are essential for biological activity, will be investigated using cell lines, animal models that overproduce too much gastrin, animal models of colon cancer and in patients with colon cancer. Colorectal carcinoma (cancer of the large bowel) is the second most common cause of cancer death. A successful outcome will result in the development of assays for the early diagnosis and monitoring of bowel cancer and the potential for novel treatments such as gastrin receptor antagonists and radiolabelled gastrin analogues for radiotherapy.Read moreRead less
The objective of this project is to understand the biological significance of the complex between ferric ions and non-amidated gastrins (NAGs). This laboratory has shown that NAGs selectively bind 2 ferric ions, and that ferric ion binding is essential for biological activity. Our unpublished data in mouse models indicates a previously unsuspected reciprocal relationship between plasma NAG concentrations and iron status. The significance of this project to human health lies in the facts that NAG ....The objective of this project is to understand the biological significance of the complex between ferric ions and non-amidated gastrins (NAGs). This laboratory has shown that NAGs selectively bind 2 ferric ions, and that ferric ion binding is essential for biological activity. Our unpublished data in mouse models indicates a previously unsuspected reciprocal relationship between plasma NAG concentrations and iron status. The significance of this project to human health lies in the facts that NAGs act as growth factors for the normal gastric and colonic mucosa, accelerate the development of both gastric and colorectal cancer, and may be involved in iron overload. The specific aims are: (1) to determine whether or not ferric ions are essential for the stimulation of colorectal carcinoma (CRC) development by NAGs in vivo, (2) to develop orally active NAG inhibitors and analogues, and (3) to confirm the relationship between NAGs and iron status in mice and extend these observations to humans. The research design mirrors the specific aims, and utilises the unique combination of skills of the chief and associate investigators. Firstly, agents (desferrioxamine and bismuth ions) known to block the binding of ferric ions to NAGs will be tested as NAG inhibitors in 4 animal models of CRC development. Secondly, orally active relatives of desferrioxamine and structurally modified gastrin fragments will be tested in CRC cells and in animal CRC models as NAG inhibitors and analogues, respectively. Thirdly, serum gastrins will be measured in mice with altered dietary iron uptake, and in patients with iron overload. These studies are expected to confirm the reciprocal relationship between gastrin concentrations and ferric ion homeostasis observed in mice, and to demonstrate that a similar connection exists in humans. Recognition that metal ions are essential for the biological activity of NAGs may permit the development of novel therapies for colon cancer and iron overload.Read moreRead less