Found 623 results
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Gene Expression Regulation, Neoplastic
Wang R, Kang Y, Löhr CV, Fischer KA, C Bradford S, Johnson G, Dashwood WMohaiza, Williams DE, Ho E, Dashwood RH.  2016.  Reciprocal regulation of BMF and BIRC5 (Survivin) linked to Eomes overexpression in colorectal cancer.. Cancer Lett. 381(2):341-8.
Palomera-Sanchez Z, Watson GW, Wong CP, Beaver LM, Williams DE, Dashwood RH, Ho E.  2017.  The phytochemical 3,3'-diindolylmethane decreases expression of AR-controlled DNA damage repair genes through repressive chromatin modifications and is associated with DNA damage in prostate cancer cells.. J Nutr Biochem. 47:113-119.
Beaver LM, Kuintzle R, Buchanan A, Wiley MW, Glasser ST, Wong CP, Johnson GS, Chang JH, Löhr CV, Williams DE et al..  2017.  Long noncoding RNAs and sulforaphane: a target for chemoprevention and suppression of prostate cancer.. J Nutr Biochem. 42:72-83.
Parasramka MA, W Dashwood M, Wang R, Abdelli A, Bailey GS, Williams DE, Ho E, Dashwood RH.  2012.  MicroRNA profiling of carcinogen-induced rat colon tumors and the influence of dietary spinach.. Mol Nutr Food Res. 56(8):1259-69.
Madeen EP, Löhr CV, You H, Siddens LK, Krueger SK, Dashwood RH, Gonzalez FJ, Baird WM, Ho E, Bramer L et al..  2017.  Dibenzo[def,p]chrysene transplacental carcinogenesis in wild-type, Cyp1b1 knockout, and CYP1B1 humanized mice.. Mol Carcinog. 56(1):163-171.
Wang R, Löhr CV, Fischer K, W Dashwood M, Greenwood JA, Ho E, Williams DE, Ashktorab H, Dashwood MR, Dashwood RH.  2013.  Epigenetic inactivation of endothelin-2 and endothelin-3 in colon cancer.. Int J Cancer. 132(5):1004-12.
Beaver LM, Yu T-W, Sokolowski EI, Williams DE, Dashwood RH, Ho E.  2012.  3,3'-Diindolylmethane, but not indole-3-carbinol, inhibits histone deacetylase activity in prostate cancer cells.. Toxicol Appl Pharmacol. 263(3):345-51.
Gastrointestinal Microbiome
Bouranis JA, Beaver LM, Wong CP, Choi J, Hamer S, Davis EW, Brown KS, Jiang D, Sharpton TJ, Stevens JF et al..  2024.  Sulforaphane and Sulforaphane-Nitrile Metabolism in Humans Following Broccoli Sprout Consumption: Inter-individual Variation, Association with Gut Microbiome Composition, and Differential Bioactivity.. Mol Nutr Food Res. 68(4):e2300286.
Ho E, Drake VJ, Michels AJ, Nkrumah-Elie YM, Brown LVL, Scott JM, Newman JW, Shukitt-Hale B, Soumyanath A, Chilton FH et al..  2023.  Perspective: Council for Responsible Nutrition Science in Session. Optimizing Health with Nutrition-Opportunities, Gaps, and the Future.. Adv Nutr. 14(5):948-958.
Jamieson PE, Smart EB, Bouranis JA, Choi J, Danczak RE, Wong CP, Paraiso IL, Maier CS, Ho E, Sharpton TJ et al..  2024.  Gut enterotype-dependent modulation of gut microbiota and their metabolism in response to xanthohumol supplementation in healthy adults.. Gut Microbes. 16(1):2315633.
Bouranis JA, Beaver LM, Choi J, Wong CP, Jiang D, Sharpton TJ, Stevens JF, Ho E.  2021.  Composition of the Gut Microbiome Influences Production of Sulforaphane-Nitrile and Iberin-Nitrile from Glucosinolates in Broccoli Sprouts.. Nutrients. 13(9)
Gaulke CA, Rolshoven J, Wong CP, Hudson LG, Ho E, Sharpton TJ.  2018.  Marginal Zinc Deficiency and Environmentally Relevant Concentrations of Arsenic Elicit Combined Effects on the Gut Microbiome.. mSphere. 3(6)
Bouranis JA, Beaver LM, Jiang D, Choi J, Wong CP, Davis EW, Williams DE, Sharpton TJ, Stevens JF, Ho E.  2022.  Interplay between Cruciferous Vegetables and the Gut Microbiome: A Multi-Omic Approach.. Nutrients. 15(1)

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