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Institution Date Title Author
國立臺灣大學 2011 Sulfonic acid-functionalized platelet SBA-15 materials as efficient catalysts for biodiesel synthesis Chen, Shih-Yuan; Yokoi, Toshiyuki; Tang, Chih-Yuan; Jang, Ling-Yun; Tatsumi, Takashi; Chan, Jerry C.C.; Cheng, Soofin
臺大學術典藏 2018-09-10T08:35:19Z Sulfonic acid-functionalized platelet SBA-15 materials as efficient catalysts for biodiesel synthesis Chen, S.-Y.;Yokoi, T.;Tang, C.-Y.;Jang, L.-Y.;Tatsumi, T.;Chan, J.C.C.;Cheng, S.; Chen, S.-Y.; Yokoi, T.; Tang, C.-Y.; Jang, L.-Y.; Tatsumi, T.; Chan, J.C.C.; Cheng, S.; Chen, Shih-Yuan; SOO-FIN CHENG; CHUN-CHUNG CHAN
國家衛生研究院 2022-11-15 Sulfonylurea use in patients with type 2 diabetes and COPD: A nationwide population-based cohort study Yen, FS;Wei, JCC;Yu, TS;Hsu, CY;Hsu, CC;Hwu, CM
國家衛生研究院 2020-12-14 Sulfonylureas may be useful for glycemic management in patients with diabetes and liver cirrhosis Yen, FS;Lai, JN;Wei, JC;Chiu, LT;Hwu, CM;Hou, MC;Hsu, CC
中山醫學大學 2020 Sulfonylureas may be useful for glycemic management in patients with diabetes and liver cirrhosis Yen, FS; Lai, JN; Wei, JCC; Chiu, LT; Hwu, CM; Hou, MC; Hsu, CC
中國醫藥大學 2010-05 Sulforaphane and α-Lipoic acid Up-Regulate the Expression of the Pi Class of Glutathione S-Transferase through c-Jun and Nrf2 Activation 李宗貴(Chong-Kuei Lii); (Kai-Li Liu); (Yi-Ping Cheng); (Ai-Hsuan Lin); 陳暉雯(Haw-Wen Chen)*; 蔡佳文(Chia-Wen Tsai)*
中山醫學大學 2010 Sulforaphane and α-Lipoic Acid Upregulate the Expression of the π Class of Glutathione S-Transferase through c-Jun and Nrf2 Activation Chong-Kuei Lii ;Kai-Li Liu ; Yi-Ping Cheng ; Ai-Hsuan Lin ; Haw-Wen Chen ;Chia-Wen Tsai
國立臺灣大學 2016 Sulforaphane Improves Ischemia Induced Detrusor Overactivity by Downregulating the Enhancement of Associated Endoplasmic Reticulum Stress, Autophagy, and Apoptosis in Rat Bladder Tai, Huai-Ching; Chung, Shiu-Dong; Chien, Chiang-Ting; Yu, Hong-Jeng; 戴槐青; 余宏政
臺大學術典藏 2021-02-02T00:42:58Z Sulforaphane Improves Ischemia-Induced Detrusor Overactivity by Downregulating the Enhancement of Associated Endoplasmic Reticulum Stress, Autophagy, and Apoptosis in Rat Bladder Tai H.-C.; Chung S.-D.; Chien C.-T.; HONG-JENG YU
義守大學 2013-06 Sulforaphane induced cell cycle arrest in the G2/M phase via the blockade of cyclin B1/CDC2 in human ovarian cancer cells Chi-Chang Chang;Chao-Ming Hung;Yun-Ru Yang;Mon-Juan Lee;Yi-Chiang Hsu
義守大學 2016-09 Sulforaphane Induces Cell Death Through G2/M Phase Arrest and Triggers Apoptosis in HCT 116 Human Colon Cancer Cells Kuo-Ching Liu;Ting-Ying Shih;Chao-Lin Kuo;Yi-Shih Ma;Jiun-Long Yang;Ping-Ping Wu;Yi-Ping Huang;Kuang-Chi Lai;Jing-Gung Chung
中山醫學大學 2013 Sulforaphane inhibits smooth muscle cell proliferation and migration by reducing MMP-9 activity via the Ras and RhoA/ROCK pathways Hung, Chi-Nan; Huang, Hui-Pei; Lii, Chong-Kuei; Liu, Kai-Li; Wang, Chau-Jong
亞洲大學 2014-10 Sulforaphane Inhibits TNF-a-Induced Adhesion Molecule Expression Through the Rho A/ROCK/NF-kB Signaling Pathway Hung, Chi-Nan;Hung, Chi-Nan;Huan, Hui-Pei;Huang, Hui-Pei;Wa, Chau-Jong;Wang, Chau-Jong;Liu, Kai-Li;Liu, Kai-Li;李宗貴;Lii, Chong-Kuei;*
中國醫藥大學 2014-10 Sulforaphane Inhibits TNF-a-Induced Adhesion Molecule Expression Through the Rho A/ROCK/NF-kB Signaling Pathway (Chi-Nan Hung);(Hui-Pei Huang);(Chau-Jong Wang);(Kai-Li Liu);李宗貴(Chong-Kuei Lii)*
臺北醫學大學 2012 Sulforaphane Potentiates the Efficacy of Imatinib against Chronic Leukemia Cancer Lin, LC;Yeh, CT;Kuo, CC;Lee, CM;Yen, GC;Wang, LS;Wu, CH;Yang, WC;ATH, Wu
亞洲大學 2016-05 Sulforaphane promotes immune responses in a WEHI?3?induced leukemia mouse model through enhanced phagocytosis of macrophages and natural killer cell activities in vivo 施勇綸;Shih, Yung-Luen;Wu, Lung-Yuan;Wu, Lung-Yuan;Ching-Hsiao;Lee, Ching-Hsiao;Yung-Liang, C;Chen, Yung-Liang;Hs, Shu-Ching;Hsueh, Shu-Ching;Lu, Hsu-Feng;Lu, Hsu-Feng;Nien-Chieh, L;Liao, Nien-Chieh;鍾景光*
元培科技大學 2016-01 Sulforaphane promotes immune responses in a WEHI‑3‑induced leukemia mouse model through enhanced phagocytosis of macrophages and natural killer cell activities in vivo 陳媛孃
國立成功大學 2016-03 Sulforaphane Suppresses Hepatitis C Virus Replication by Up-Regulating Heme Oxygenase-1 Expression through PI3K/Nrf2 Pathway Yu, Jung-Sheng; Chen, Wei-Chun; Tseng, Chin-Kai; Lin, Chun-Kuang; Hsu, Yao-Chin; Chen, Yen-Hsu; Lee, Jin-Ching
國立交通大學 2019-04-03T06:42:12Z Sulforaphane Suppresses Hepatitis C Virus Replication by Up-Regulating Heme Oxygenase-1 Expression through PI3K/Nrf2 Pathway Yu, Jung-Sheng; Chen, Wei-Chun; Tseng, Chin-Kai; Lin, Chun-Kuang; Hsu, Yao-Chin; Chen, Yen-Hsu; Lee, Jin-Ching
中山醫學大學 2016-02-12 Sulforaphane targets cancer stemness and tumor initiating properties in oral squamous cell carcinomas via miR-200c induction. CM, Liu;CY, Peng;YW, Liao;MY, Lu;ML, Tsai;JC, Yeh;CH, Yu;CC, Yu
國立成功大學 2016-09 Sulforaphane, a Dietary Isothiocyanate, Induces G(2)/M Arrest in Cervical Cancer Cells through CyclinB1 Downregulation and GADD45/CDC2 Association Cheng, Ya-Min; Tsai, Ching-Chou; Hsu, Yi-Chiang
元培科技大學 2016-02 Sulforaphane-Induced Apoptosis in Human Leukemia HL-60 Cells Through Extrinsic and Intrinsic Signal Pathways and Altering Associated Genes Expression Assayed by cDNA Microarray 陳媛孃(Chen, Yung-Liang)
高雄醫學大學 2014 Sulforaphane促進前列腺素之抗血小板活性探討 楊怡萱; Yang, Yi-Hsuan
高雄醫學大學 2014 Sulforaphane在人類乳癌細胞調控AKT/mTOR/S6K路徑之探討 連喬瑩; Lien, Chiao-Ying
高雄醫學大學 2002 Sulforaphane誘發對人肝癌細胞株之細胞毒殺效應與遏止細胞週期  林俊清;吳淑靜;蔣連財;吳耀崑 

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