Related Experiment Videos
IGF-I and GH post-receptor signaling mechanisms for pancreatic beta-cell replication
1Pacific Northwest Research Institute and Department of Pharmacology, University of Washington, Seattle, Washington 98122, USA. cjr@pnri.org
Abstract:
Certain nutrients, pharmacological agents and growth factors can stimulate pancreatic beta-cell proliferation; however, mitogenic signal transduction pathways in beta-cells have not been particularly well characterized. As a model system we have focussed on characterizing the signal transduction pathways immediately downstream of the IGF-I and GH receptors in beta-cells. The original idea was to gain an idea of important elements in mitogenic signaling pathways which might then be exploited to generate a marked increase in beta-cell proliferation. Such an approach could eventually reveal a means to increase the number of human pancreatic endocrine cells in vitro, in order to obtain an abundant source of beta-cells for routine transplantation therapy of type-I diabetes. However, in the course of our studies, we have also unveiled an unexpected insight into the pathogenesis of obesity-linked type-II diabetes. It has been observed that free fatty acids inhibit glucose- and glucose-dependent IGF-I/GH-induced beta-cell proliferation. We hypothesize that a gradual accumulation of intracellular fat in beta-cells during obesity can eventually lead to an inhibition of beta-cell mass expansion and hence failure to compensate for peripheral insulin resistance, so that type-II diabetes ensues.
Insights
Growth factors like IGF-I and GH stimulate pancreatic beta-cell proliferation. However, obesity-linked free fatty acids inhibit this growth, potentially causing type-II diabetes.
Area of Science:
- Endocrinology
- Molecular Biology
- Diabetes Pathogenesis
Background:
- Pancreatic beta-cell proliferation is crucial for glucose homeostasis.
- Mitogenic signaling pathways in beta-cells are not fully understood.
- Understanding these pathways could aid type-I diabetes transplantation therapy.
Purpose of the Study:
- Characterize signal transduction pathways downstream of IGF-I and GH receptors in beta-cells.
- Identify key elements in mitogenic signaling for beta-cell proliferation.
- Investigate the role of free fatty acids in beta-cell function and diabetes.
Main Methods:
- Focused on signal transduction pathways immediately downstream of Insulin-like Growth Factor I (IGF-I) and Growth Hormone (GH) receptors in beta-cells.
- Studied the effects of free fatty acids on glucose- and growth factor-induced beta-cell proliferation.
Main Results:
- Free fatty acids were observed to inhibit glucose- and glucose-dependent IGF-I/GH-induced beta-cell proliferation.
- Unexpected insights into the pathogenesis of obesity-linked type-II diabetes were uncovered.
Conclusions:
- Accumulation of intracellular fat in beta-cells during obesity may inhibit beta-cell mass expansion.
- This inhibition could lead to a failure to compensate for insulin resistance, resulting in type-II diabetes.