Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Therese E. Fazio Coles"'
Autor:
John B. Furness, Enie Lei, Billie Hunne, Cameron D. Adams, Alan J. Burns, Jill Wykosky, Therese E. Fazio Coles, Linda J. Fothergill, Juan C. Molero, Ruslan V. Pustovit, Lincon A. Stamp
Publikováno v:
Disease Models & Mechanisms, Vol 16, Iss 6 (2023)
Externí odkaz:
https://doaj.org/article/55ac24c3524e4630becd2935e6965f80
Autor:
Adam G Testro, Billie Hunne, Therese E Fazio Coles, John B. Furness, Brid Callaghan, Linda J Fothergill, Mehrdad Nikfarjam, Rachel M McQuade
Publikováno v:
Cell Tissue Res
Recent studies reveal substantial species and regional differences in enteroendocrine cell (EEC) populations, including differences in patterns of hormone coexpression, which limit extrapolation between animal models and human. In this study, jejunal
Autor:
Giorgia Galiazzo, Josiane Fakhry, Linda J Fothergill, Martin J. Stebbing, Therese E Fazio Coles, John B. Furness, Billie Hunne, Frank Weissenborn
Publikováno v:
Cell Tissue Res
Although the pig is an accepted model species for human digestive physiology, no previous study of the pig gastric mucosa and gastric enteroendocrine cells has investigated the parallels between pig and human. In this study, we have investigated mark
Autor:
Efstathia Sioras, Linda J Fothergill, Therese E Fazio Coles, Mitchell T Ringuet, Billie Hunne, John B. Furness, Patrícia Rocha Martins
Publikováno v:
Cell and Tissue Research. 375:359-369
We use a monoclonal antibody against the C-terminal of oxyntomodulin (OXM) to investigate enteroendocrine cells (EEC) in mouse, rat, human and pig. This antibody has cross-reactivity with the OXM precursor, glicentin (Gli) but does not recognise gluc
Autor:
Therese E Fazio Coles, Rachel M McQuade, Haihan Jiao, Alicia Sl Lim, Holly R Chinnery, John B. Furness
Publikováno v:
Experimental Eye Research. 201:108298
Purpose The highly innervated cornea is susceptible to nerve loss secondary to systemic diseases such as diabetes and metabolic disturbances caused by high-fat diet. In this study, we characterize the effect of high-fat diet on the mouse corneal neur