Issue Date | Title | Author(s) | Relation | scopus | WOS | Fulltext/Archive link |
2022 | Composition decipherment of Ficus pumila var. awkeotsang and its potential on COVID-19 symptom amelioration and in silico prediction of SARS-CoV-2 interference | Hu, Hao-Chun; Yu, Szu-Yin; Hung, Xiao-Shan; Su, Chun-Han; Yang, Yu-Liang ; Wei, Chien-Kei; Cheng, Yuan-Bin; Wu, Yang-Chang; Yen, Chia-Hung; Hwang, Tsong-Long; Chen, Shu-Li; Szatmári, István; Hunyadi, Attila; Tsai, Yi-Hong; Chang, Fang-Rong | Journal of Food and Drug Analysis 30(3), 9 | | | |
2007 | Compounds from Wedelia chinensis synergistically suppress androgen activity and growth in prostate cancer cells. | Lin, Feng-Min; Chen, Li-Ru; Lin, En-Hau; Ke, Ferng-Chun; Chen, Hsin-Yi; Tsai, Meng-Jen; Hsiao, Pei-Wen | CARCINOGENESIS 28(12): 2521-2529 | | | |
2022 | Concept of Fluorescent Transport Activity Biosensor for the Characterization of the Arabidopsis NPF1.3 Activity of Nitrate | Yen-Ning Chen; Cheng-Hsun Ho | SENSORS 22(3), 1198 | | | |
1996 | Conformational stability of outer membrane proteins from Neisseria meningitidis: comparison of class 2 and class 3 proteins. | Minetti, CASA; Tai, JY; Liang, SM ; Remeta, DP | | | | |
2011 | Connecting chemotypes and phenotypes of cultured marine microbial assemblages by imaging mass spectrometry. | Yang, YL ; Xu, Y; Kersten, RD; Liu, WT; Meehan, MJ; Moore, BS; Bandeira, N; Dorrestein, PC | Angewandte Chemie (International ed. in English) 50(26), 5839-5842 | | | |
2023 | Conservation of land plant-specific receptor-like cytoplasmic kinase subfamily XI possessing a unique kinase insert domain | Yayen, Joseph; Chan, Ching; Sun, Ching-Mei; Chiang, Su-Fen; Chiou, Tzyy-Jen | Frontiers in Plant Science 14, 1117059 | | | |
2020 | Construction and Evaluation of Chloroplast Expression Vectors in Higher Plants | Chen, Po-Yen; Tsai, Yung-Ting; To, Kin-Ying | Genetic Transformation in Crops (London, United Kingdom : IntechOpen) | | | |
2016 | Construction of chloroplast expression vectors and development of stable chloroplast transformation in spinach | P.-Y. Chen; K.-Y. To | | | | |
2015 | Coordinated activation of signaling network in prostate cancer cells toward metastasis. | Tsai, CH; Tzeng, SF; Hsiao, PW | | | | |
2012 | Copper chaperone antioxidant protein1 is essential for copper homeostasis | Shin, L. -J.; Lo, J. -C.; Yeh, K. -C. | PLANT PHYSIOLOGY 159, 1099-1110 | | | |
2016 | Copper supplementation amplifies the anti-tumor effect of curcumin in oral cancer cells. | Lee, H.-M.; Patela, V.; Shyur, L.-F. ; Lee, W. L. | Phytomedicine 23(12), 1535-1544 | | | |
1995 | Correlating structure, function, and stability of recombinant bacterial porins. | Minetti, CASA; Remeta, DP; Liang, SM ; Tai, JY | | | | |
2006 | Cosuppression of tobacco chalcone synthase using Petunia chalcone synthase construct results in white flowers | Wang, C. -K.; Chen, P. -Y.; Wang, H. -M.; To, K. -Y. | Botanical Studies 47, 71-82 | | | |
2007 | CpG ODN reduced amyloid-beta accumulation through up-regulated F-spondin on mouse BV2 microglial cell | Cheng, YC; Kuo, CC; Liang, SM | | | | |
2006 | CpG-B Oligodeoxynucleotide Promotes Cell Survival via Up-regulation of Hsp70 to Increase Bcl-xL and to Decrease Apoptosis-inducing Factor Translocation | Kuo, CC; Liang, SM ; Liang, CM | JOURNAL OF BIOLOGICAL CHEMISTRY 281(50), 38200-38207 | | | |
2004 | CpG-DNA up-regulates heat shock proteins in swine PBMC through TLR9 signaling pathway | Nagarajan, G; Kuo, CC; Liang, SM | | | | |
2005 | CpG-ODN induces NF-kappaB activation and anti-apoptosis by up-regulating Hsp90 or Hsp70 though the TLR9/P38 mark and/or TLR9/P13K pathway | Liang, SM ; Kuo, CC; Lai, CY | | | | |
2005 | CpG-ODN promotes NF-kappaB activation and/or cell survival via up-regulation of heat-shock protein 70 (Hsp70) and Hsp90 | Kuo, CC; Liang, CM; Lai, CY; Liang, SM | | | | |
2010 | CpG-ODNs induce up-regulated expression of chemokine CCL9 in mouse macrophages and microglia | Ravindran, C; Cheng, YC; Liang, SM | CELLULAR IMMUNOLOGY 260,113-118 | | | |
2008 | Critical role of Hsp70 and Hsp90b in CpG-B ODN-induced anti-apoptosis. | Kuo, CC; Liang, CM; Liang, SM | | | | |