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Detection of type IV collagen degradation in inflammatory bowel diseaseWheatcroft, Alison Clare January 1999 (has links)
No description available.
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282 |
Spatial periodicity of cell-cell contact : An interfacial instability approachHewison, L. A. January 1988 (has links)
No description available.
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283 |
The mechanisms whereby the sodium, potassium-ATPhase undergoes adaptive changes in human lymphocytes in response to lithiumJenkins, Richard J. January 1989 (has links)
No description available.
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284 |
Structural and functional studies of the erythrocyte anion exchanger, band 3Boulter, Jonathan Michael January 1995 (has links)
No description available.
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285 |
Molecular mechanisms of Na+-independent amino-acid transport in mammalian erthrocytesDyke, Joanne Clare January 1995 (has links)
No description available.
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286 |
Ionic basis of the negative chronotropic action of adenyl compounds : Radioisotope studies with cardiac pacemaker tissueRankin, A. C. January 1985 (has links)
No description available.
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287 |
Ion activity and membrane function in the lensBassnett, S. January 1987 (has links)
No description available.
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288 |
Regulation of insulin resistance by Cyp2c44-derived lipidsDieckmann, Blake Webster 22 November 2016 (has links)
Type 2 diabetes affects 10% of the United States population, and patients with diabetes have an increased risk for diseases such as atherosclerosis and hypertension. Since all these diseases are associated with insulin resistance, finding therapies to improve insulin sensitivity could be beneficial for many patients. Studies have shown CYP450 metabolites called epoxyeicosatrienoic acids (EETs) positively regulate insulin action. The purpose of this study is to provide further evidence to support endogenous EETs regulation of insulin action in vivo and to determine how EETs regulate insulin action. To study this in mice, endogenous production of EETs was disrupted by deleting a major EET-producing epoxygenase, Cyp2c44.Glucose tolerance tests (GTTs) were performed with global and liver-specific deletions [Cyp2c44(-/-) and hepCyp2c44(-/-)] to assess glucose homeostasis. Cyp2c44(-/-) mice had impaired glucose tolerance, while hepCyp2c44(-/- ) mice had no alteration. This suggests that EETs increase insulin action but shows disruption of liver-produced EETs, where Cyp2c44 is highly expressed, is not sufficient to alter glucose homeostasis. Therefore, production of EETs within other tissues (e.g., skeletal muscle, vascular endothelium, or adipocytes) must be contributing to decreased glucose tolerance in Cyp2c44(-/-) mice.
Insulin signaling in skeletal muscle has previously been shown to be impaired in Cyp2c44(-/-) mice. Therefore, we investigated the effect of endogenous EETs on a critical protein in the insulin signaling cascade, AKT, and a downstream effector, FoxO1. In the present studies, insulin-stimulated AKT and FoxO1 phosphorylation were unaltered in Cyp2c44(-/-) mice. Therefore the effect of EETs on insulin signaling in skeletal muscle could either occur at a different downstream AKT effector or within other insulin-stimulated pathways, like the MAP kinase pathway. Complementary studies will help determine the roles of gender, age, dietary modifications and other experimental conditions on these differences in insulin sensitivity.
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Effects of X-Irradiation on Na22 Efflux in Isolated NervesYang, Chui-hsu 01 1900 (has links)
The purpose of this study was twofold: 1) to present experimental data on changes in permeability of fibers during irradiation using Na22 as the tracer isotope, and 2) to attempt to correlate these findings with the electrical changes observed.
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Imagerie par microscopie à force atomique de toxines Cry1 de Bacillus thuringiensis interagissant avec des membranes apicales de l'intestin de Manduca sextaLaflamme, Eric January 2008 (has links)
Mémoire numérisé par la Division de la gestion de documents et des archives de l'Université de Montréal.
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