Found 623 results
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Filters: Author is Ho, Emily  [Clear All Filters]
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Cell Line, Tumor
Dashwood RH, Ho E.  2008.  Dietary agents as histone deacetylase inhibitors: sulforaphane and structurally related isothiocyanates.. Nutr Rev. 66 Suppl 1:S36-8.
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.
Rajendran P, Kidane AI, Yu T-W, Dashwood W-M, Bisson WH, Löhr CV, Ho E, Williams DE, Dashwood RH.  2013.  HDAC turnover, CtIP acetylation and dysregulated DNA damage signaling in colon cancer cells treated with sulforaphane and related dietary isothiocyanates.. Epigenetics. 8(6):612-23.
Abbas A, J Hall A, Patterson WL, Ho E, Hsu A, Al-Mulla F, Georgel PT.  2016.  Sulforaphane modulates telomerase activity via epigenetic regulation in prostate cancer cell lines.. Biochem Cell Biol. 94(1):71-81.
Thomson CA, Ho E, Strom MB.  2016.  Chemopreventive properties of 3,3'-diindolylmethane in breast cancer: evidence from experimental and human studies.. Nutr Rev. 74(7):432-43.
Watson GW, Wickramasekara S, Fang Y, Maier CS, Williams DE, Dashwood RH, Perez VI, Ho E.  2016.  HDAC6 activity is not required for basal autophagic flux in metastatic prostate cancer cells.. Exp Biol Med (Maywood). 241(11):1177-85.
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.
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.
Nian H, Delage B, Ho E, Dashwood RH.  2009.  Modulation of histone deacetylase activity by dietary isothiocyanates and allyl sulfides: studies with sulforaphane and garlic organosulfur compounds.. Environ Mol Mutagen. 50(3):213-21.
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.
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.
Watson GW, Wickramasekara S, Fang Y, Palomera-Sanchez Z, Maier CS, Williams DE, Dashwood RH, Perez VI, Ho E.  2015.  Analysis of autophagic flux in response to sulforaphane in metastatic prostate cancer cells.. Mol Nutr Food Res. 59(10):1954-61.
Cation Transport Proteins
Ho E, Song Y.  2009.  Zinc and prostatic cancer.. Curr Opin Clin Nutr Metab Care. 12(6):640-5.
Carcinoma, Intraductal, Noninfiltrating
Atwell LL, Zhang Z, Mori M, Farris P, Vetto JT, Naik AM, Oh KY, Thuillier P, Ho E, Shannon J.  2015.  Sulforaphane Bioavailability and Chemopreventive Activity in Women Scheduled for Breast Biopsy.. Cancer Prev Res (Phila). 8(12):1184-1191.

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