Found 73 results
Author Keyword [ Title(Desc)] Type Year
Filters: Author is Ho, Emily and First Letter Of Keyword is C  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
R
Wang R, Yu Z, Sunchu B, Shoaf J, Dang I, Zhao S, Caples K, Bradley L, Beaver LM, Ho E et al..  2017.  Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism.. Aging Cell. 16(3):564-574.
Wang R, Yu Z, Sunchu B, Shoaf J, Dang I, Zhao S, Caples K, Bradley L, Beaver LM, Ho E et al..  2017.  Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism.. Aging Cell. 16(3):564-574.
Wang R, Yu Z, Sunchu B, Shoaf J, Dang I, Zhao S, Caples K, Bradley L, Beaver LM, Ho E et al..  2017.  Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism.. Aging Cell. 16(3):564-574.
Wang R, Yu Z, Sunchu B, Shoaf J, Dang I, Zhao S, Caples K, Bradley L, Beaver LM, Ho E et al..  2017.  Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism.. Aging Cell. 16(3):564-574.
Wang R, Yu Z, Sunchu B, Shoaf J, Dang I, Zhao S, Caples K, Bradley L, Beaver LM, Ho E et al..  2017.  Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism.. Aging Cell. 16(3):564-574.
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.
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.
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.
S
Beaver LM, Song Y, Philbrick KA, Wong CP, Olson DA, Branscum AJ, Turner RT, Ho E, Iwaniec UT.  2023.  Severe Zinc Deficiency Impairs Accrual of Bone in Rapidly Growing Rats That Is Partially Corrected Following Short-term Zinc Repletion.. Biol Trace Elem Res. 201(8):3834-3849.
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.
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.
Myzak MC, Hardin K, Wang R, Dashwood RH, Ho E.  2006.  Sulforaphane inhibits histone deacetylase activity in BPH-1, LnCaP and PC-3 prostate epithelial cells.. Carcinogenesis. 27(4):811-9.
Myzak MC, W Dashwood M, Orner GA, Ho E, Dashwood RH.  2006.  Sulforaphane inhibits histone deacetylase in vivo and suppresses tumorigenesis in Apc-minus mice.. FASEB J. 20(3):506-8.
Myzak MC, W Dashwood M, Orner GA, Ho E, Dashwood RH.  2006.  Sulforaphane inhibits histone deacetylase in vivo and suppresses tumorigenesis in Apc-minus mice.. FASEB J. 20(3):506-8.
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.
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.
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.

Pages