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Featured researches published by Wood Is.


British Journal of Cancer | 2002

Molecular changes in the expression of human colonic nutrient transporters during the transition from normality to malignancy.

Daniel W. Lambert; Wood Is; Soraya P. Shirazi-Beechey

Healthy colonocytes derive 60–70% of their energy supply from short-chain fatty acids, particularly butyrate. Butyrate has profound effects on differentiation, proliferation and apoptosis of colonic epithelial cells by regulating expression of various genes associated with these processes. We have previously shown that butyrate is transported across the luminal membrane of the colonic epithelium via a monocarboxylate transporter, MCT1. In this paper, using immunohistochemistry and in situ hybridisation histochemistry, we have determined the profile of MCT1 protein and mRNA expression along the crypt to surface axis of healthy human colonic tissue. There is a gradient of MCT1 protein expression in the apical membrane of the cells along the crypt-surface axis rising to a peak in the surface epithelial cells. MCT1 mRNA is expressed along the crypt-surface axis and is most abundant in cells lining the crypt. Analysis of healthy colonic tissues and carcinomas using immunohistochemistry and Western blotting revealed a significant decline in the expression of MCT1 protein during transition from normality to malignancy. This was reflected in a corresponding reduction in MCT1 mRNA expression, as measured by Northern analysis. Carcinoma samples displaying reduced levels of MCT1 were found to express the high affinity glucose transporter, GLUT1, suggesting that there is a switch from butyrate to glucose as an energy source in colonic epithelia during transition to malignancy. The expression levels of MCT1 in association with GLUT1 could potentially be used as determinants of the malignant state of colonic tissue.


Biochemical Society Transactions | 1994

DIETARY REGULATION OF THE INTESTINAL SODIUM-DEPENDENT GLUCOSE COTRANSPORTER (SGLT1)

Soraya P. Shirazi-Beechey; Gribble Sm; Wood Is; Tarpey Ps; Beechey Rb; Jane Dyer; Scott D; P. J. Barker


Biochemical Society Transactions | 1997

Changes in the levels of intestinal Na+/glucose co-transporter (SGLT1) in experimental diabetes.

Jane Dyer; A. Garner; Wood Is; A. K. Sharma; I. Chandranath; Soraya P. Shirazi-Beechey


Biochemical Society Transactions | 1997

MOLECULAR EVENTS INVOLVED IN GLUCOSE-INDUCED INTESTINAL NA+/D-GLUCOSE CO-TRANSPORTER (SGLT1) EXPRESSION

Soraya P. Shirazi-Beechey; Jane Dyer; K. Bagga; Simmonds R; Wood Is; Gordon G. Allison; Scott D; Timothy P. King


Biochemical Society Transactions | 1996

Nutrient regulation of intestinal sugar-transporter expression

Soraya P. Shirazi-Beechey; Jane Dyer; Gordon G. Allison; Wood Is


Biochemical Society Transactions | 1994

Cloning and sequencing of the ovine intestinal Na+/glucose transporter (SGLT1).

Wood Is; Scott D; Beechey Rb; Soraya P. Shirazi-Beechey


Biochemical Society Transactions | 1997

Expression of the Na+/glucose co-transporter (SGLT1) along the length of the avian intestine

Jane Dyer; A. Ritzhaupt; Wood Is; C. De La Horra; A. A. Illundain; Soraya P. Shirazi-Beechey


Biochemical Society Transactions | 1993

Regulation of sugar transport in chicken enterocytes.

Carmen M. Vázquez; Wood Is; Jane Dyer; J. Planas; Ilundain A; Soraya P. Shirazi-Beechey


Biochemical Society Transactions | 1996

Factors and molecular mechanisms involved in the regulation of chicken colonic luminal membrane Na(+)-linked transport systems.

Wood Is; Jane Dyer; de la Horra C; Ilundain A; M. Donowitz; Soraya P. Shirazi-Beechey; Gribble Sm; Tse Cm; Calonge Lm


Biochemical Society Transactions | 1997

Determination of the sequence of a mRNA from lactating sheep mammary gland that encodes a protein identical to the Na(+)-dependent glucose transporter (SGLT1).

Shillingford Jm; Wood Is; Shennan Db; Soraya P. Shirazi-Beechey; Beechey Rb

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Jane Dyer

University of Liverpool

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Scott D

Rowett Research Institute

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Beechey Rb

Aberystwyth University

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Gribble Sm

Aberystwyth University

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M. Donowitz

Aberystwyth University

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