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教育部委託研究計畫      計畫執行:國立臺灣大學圖書館
 
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機構 日期 題名 作者
中山醫學大學 2021 Cetyltrimethylammonium Bromide Attenuates the Mesenchymal Characteristics of Hypopharyngeal Squamous Cell Carcinoma Through Inhibiting the EGFR/PI3K/AKT Signaling Pathway Wu, TK; Ou, YC; Chen, YP; Huang, FM; Pan, YR; Lee, CJ
中山醫學大學 2021 Cetyltrimethylammonium Bromide Disrupts Mesenchymal Characteristics of Human Tongue Squamous Cell Carcinoma SCC4 Cells Through Modulating Canonical TGF-beta/Smad/miR-181b/TIMP3 Signaling Pathway Yue, CH; Chen, CH; Pan, YR; Chen, YP; Huang, FM; Lee, CJ
中山醫學大學 2021 Rutin-protectedBisGMA-induced cytotoxicity, genotoxicity, and apoptosis in macrophages through the reduction of the mitochondrial apoptotic pathway and induction of antioxidant enzymes Huang, FM; Chang, YC; Su, CH; Wu, SW; Lee, SS; Lee, MW; Yeh, KL; Chiang, CY; Tu, DG; Lu, YC; Kuan, YH
中山醫學大學 2020 Dental Amalgam Fillings and Multiple Sclerosis: A Nationwide Population-Based Case-Control Study in Taiwan Tseng, CF; Chen, KH; Yu, HC; Huang, FM; Chang, YC
中山醫學大學 2020 Cetyltrimethylammonium Bromide Disrupts the Mesenchymal Characteristics of HA22T/VGH Cells Via Inactivation of c-Met/PI3K/Akt/mTOR Pathway Yue, CH; Chen, CH; Lee, WT; Su, TF; Pan, YR; Chen, YP; Huang, FM; Lee, CJ
中山醫學大學 2020 Cetyltrimethylammonium Bromide Suppresses the Migration and Invasion of Hepatic Mahlavu Cells by Modulating Fibroblast Growth Factor Signaling Wu, TK; Chen, CH; Lee, WT; Su, TF; Pan, YR; Huang, FM; Lee, CJ
中山醫學大學 2015-05 Cytotoxicity and genotoxicity of triethyleneglycol-dimethacrylate in macrophages involved in DNA damage and caspases activation. Huang FM;Kuan YH;Lee SS;Chang YC
中山醫學大學 2014-08 The regulation of cytotoxicity and cyclooxygenase-2 expression by 2-hydroxy-ethyl methacrylate in human osteoblasts are related to intracellular glutathione levels. Ho YC;Huang FM;Lee SS;Chang YC
中山醫學大學 2014 Cytotoxicity and genotoxicity of chlorhexidine on macrophages in vitro. Li, YC; Kuan, YH; Lee, SS; Huang, FM; Chang, YC
中山醫學大學 2013 The upregulation of transglutaminase-2 by cyclosporin a in human gingival fibroblasts is augmented by oxidative stress. Lee, SS; Tsai, CH; Kuan, YH; Huang, FM; Chang, YC

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