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BMC Physiology|January 25, 2013
Genomic homeostasis is dysregulated in favour of apoptosis in the colonic epithelium of the azoxymethane treated ratCaroline A Kerr, Barney M Hines, Janet M Shaw, et al.
International Journal of Molecular Sciences|June 29, 2013
Colorectal carcinogenesis: a cellular response to sustained risk environmentKim Y C Fung, Cheng Cheng Ooi, Michelle H Zucker, et al.
Proteomics|February 1, 2011
A combined free-flow electrophoresis and DIGE approach to identify proteins regulated by butyrate in HT29 cellsKim Y C Fung, Chris Cursaro, Tanya Lewanowitsch, et al.
Nutrition and Cancer|July 18, 2013
Molecular size fractions of bay leaf (Laurus nobilis) exhibit differentiated regulation of colorectal cancer cell growth in vitroLouise Bennett, Mahinda Abeywardena, Sharon Burnard, et al.
Contemporary Clinical Trials Communications|February 28, 2023
Can butyrate prevent colon cancer? The AusFAP study: A randomised, crossover clinical trialJulie Clarke, Alex Boussioutas, Brooke Flanders, et al.
Cancer Prevention Research (Philadelphia, Pa.)|October 28, 2011
Screening practices of unaffected people at familial risk of colorectal cancerDriss Ait Ouakrim, Alex Boussioutas, Trevor Lockett, et al.
Cancer Causes & Control : CCC|September 27, 2012
Screening practices of Australian men and women categorized as "at or slightly above average risk" of colorectal cancerDriss Ait Ouakrim, Trevor Lockett, Alex Boussioutas, et al.
Journal of Proteome Research|February 7, 2009
Proteomic analysis of butyrate effects and loss of butyrate sensitivity in HT29 colorectal cancer cellsKim Y C Fung, Tanya Lewanowitsch, Steven T Henderson, et al.
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