For: | He YJ, Liu BH, Xiang DB, Qiao ZY, Fu T, He YH. Inhibitory effect of caffeic acid phenethyl ester on the growth of SW480 colorectal tumor cells involves β-catenin associated signaling pathway down-regulation. World J Gastroenterol 2006; 12(31): 4981-4985 [PMID: 16937493 DOI: 10.3748/wjg.v12.i31.4981] |
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URL: | https://www.wjgnet.com/1007-9327/full/v12/i31/4981.htm |
Number | Citing Articles |
1 |
Ying-Yu Kuo, Wai-Tim Jim, Liang-Cheng Su, Chi-Jung Chung, Ching-Yu Lin, Chieh Huo, Jen-Chih Tseng, Shih-Han Huang, Chih-Jen Lai, Bo-Chih Chen, Bi-Juan Wang, Tzu-Min Chan, Hui-Ping Lin, Wun-Shaing Chang, Chuang-Rung Chang, Chih-Pin Chuu. Caffeic Acid Phenethyl Ester Is a Potential Therapeutic Agent for Oral Cancer. International Journal of Molecular Sciences 2015; 16(5): 10748 doi: 10.3390/ijms160510748
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2 |
Harue Akasaka, Fuyuki Sato, Satoko Morohashi, Yunyan Wu, Yang Liu, Jun Kondo, Hiroki Odagiri, Kenichi Hakamada, Hiroshi Kijima. Anti-apoptotic effect of claudin-1 in tamoxifen-treated human breast cancer MCF-7 cells. BMC Cancer 2010; 10(1) doi: 10.1186/1471-2407-10-548
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3 |
Ricardo Silva-Carvalho, Fátima Baltazar, Cristina Almeida-Aguiar. Propolis: A Complex Natural Product with a Plethora of Biological Activities That Can Be Explored for Drug Development. Evidence-Based Complementary and Alternative Medicine 2015; 2015: 1 doi: 10.1155/2015/206439
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4 |
Rizwan Mahmood, Jawaad Ahmed Asif, Wan Nazatul Shima Shahidan. Stingless-bee (Trigona itama) honey adversely impacts the growth of oral squamous cell carcinoma cell lines (HSC-2). European Journal of Integrative Medicine 2020; 37: 101162 doi: 10.1016/j.eujim.2020.101162
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5 |
Fei Xing, Ning Liu, Can Wang, Xu-Dong Wang. Caffeic acid phenethyl ester promotes oxaliplatin sensitization in colon cancer by inhibiting autophagy. Scientific Reports 2024; 14(1) doi: 10.1038/s41598-024-65409-2
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6 |
Sumeyya Akyol, Gulfer Ozturk, Zeynep Ginis, Ferah Armutcu, M. Ramazan Yigitoglu, Omer Akyol. In Vivo and In Vitro Antıneoplastic Actions of Caffeic Acid Phenethyl Ester (CAPE): Therapeutic Perspectives. Nutrition and Cancer 2013; 65(4): 515 doi: 10.1080/01635581.2013.776693
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7 |
Ana Rita Caetano, Rafaela Dias Oliveira, Sónia Pires Celeiro, Ana Sofia Freitas, Susana M. Cardoso, M. Sameiro T. Gonçalves, Fátima Baltazar, Cristina Almeida-Aguiar. Phenolic Compounds Contribution to Portuguese Propolis Anti-Melanoma Activity. Molecules 2023; 28(7): 3107 doi: 10.3390/molecules28073107
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8 |
Junsei Taira, Masatsugu Uehara, Eito Tsuchida, Wakana Ohmine. Inhibition of the β-Catenin/Tcf Signaling by Caffeoylquinic Acids in Sweet Potato Leaf through down Regulation of the Tcf-4 Transcription. Journal of Agricultural and Food Chemistry 2014; 62(1): 167 doi: 10.1021/jf404411r
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9 |
Meral KEKEÇOĞLU, Merve KESKİN, Ceren BİRİNCİ, Esra BİRİNCİ, Sevgi KOLAYLI. EFFECTS OF HONEY BEE RACE AND SEASON ON PROPOLIS COMPOSITION. Tarım Bilimleri Dergisi 2021; doi: 10.15832/ankutbd.619996
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10 |
Namrata Pramod Kulkarni, Bhupesh Vaidya, Acharan S. Narula, Shyam Sunder Sharma. Caffeic Acid Phenethyl Ester (CAPE) Attenuates Paclitaxel-induced
Peripheral Neuropathy: A Mechanistic Study. Current Neurovascular Research 2022; 19(3): 293 doi: 10.2174/1567202619666220829104851
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11 |
Guanli Huang, Hua Zhu, Yixiong Shi, Wenzhi Wu, Huajie Cai, Xiangjian Chen, Yifeng Zhou. cir-ITCH Plays an Inhibitory Role in Colorectal Cancer by Regulating the Wnt/β-Catenin Pathway. PLOS ONE 2015; 10(6): e0131225 doi: 10.1371/journal.pone.0131225
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12 |
Latifah Saiful Yazan, Muhamad Firdaus Shyfiq Muhamad Zali, Razana Mohd Ali, Nurul Amira Zainal, Nurulaidah Esa, Sarah Sapuan, Yong Sze Ong, Yin Sim Tor, Banulata Gopalsamy, Fui Ling Voon, Sharifah Sakinah Syed Alwi. Chemopreventive Properties and Toxicity of Kelulut Honey inSprague DawleyRats Induced with Azoxymethane. BioMed Research International 2016; 2016: 1 doi: 10.1155/2016/4036926
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13 |
Yang Liu, Liang Wang, Xu-Yong Lin, Jian Wang, Juan-Han Yu, Yuan Miao, En-Hua Wang. Anti-apoptotic effect of claudin-1 on TNF-α-induced apoptosis in human breast cancer MCF-7 cells. Tumor Biology 2012; 33(6): 2307 doi: 10.1007/s13277-012-0493-1
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14 |
Paolo Onori, Sharon DeMorrow, Eugenio Gaudio, Antonio Franchitto, Romina Mancinelli, Julie Venter, Shelley Kopriva, Yoshiyuki Ueno, Domenico Alvaro, Jennifer Savage, Gianfranco Alpini, Heather Francis. Caffeic acid phenethyl ester decreases cholangiocarcinoma growth by inhibition of NF‐κB and induction of apoptosis. International Journal of Cancer 2009; 125(3): 565 doi: 10.1002/ijc.24271
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15 |
Hui-Ping Lin, Shih Sheng Jiang, Chih-Pin Chuu, Irina Agoulnik. Caffeic Acid Phenethyl Ester Causes p21Cip1 Induction, Akt Signaling Reduction, and Growth Inhibition in PC-3 Human Prostate Cancer Cells. PLoS ONE 2012; 7(2): e31286 doi: 10.1371/journal.pone.0031286
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16 |
William Leonard, Pangzhen Zhang, Danyang Ying, Zhongxiang Fang. Hydroxycinnamic acids on gut microbiota and health. Comprehensive Reviews in Food Science and Food Safety 2021; 20(1): 710 doi: 10.1111/1541-4337.12663
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17 |
Lili Lv, Honghua Cui, Zhiming Ma, Xin Liu, Longfei Yang. Recent progresses in the pharmacological activities of caffeic acid phenethyl ester. Naunyn-Schmiedeberg's Archives of Pharmacology 2021; 394(7): 1327 doi: 10.1007/s00210-021-02054-w
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18 |
Gabriela Gajek, Beata Marciniak, Jarosław Lewkowski, Renata Kontek. Antagonistic Effects of CAPE (a Component of Propolis) on the Cytotoxicity and Genotoxicity of Irinotecan and SN38 in Human Gastrointestinal Cancer Cells In Vitro. Molecules 2020; 25(3): 658 doi: 10.3390/molecules25030658
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19 |
Polyana das Graças Figueiredo Vilela, Jonatas Rafael de Oliveira, Patrícia Pimentel de Barros, Mariella Vieira Pereira Leão, Luciane Dias de Oliveira, Antonio Olavo Cardoso Jorge. In vitro effect of caffeic acid phenethyl ester on matrix metalloproteinases (MMP-1 and MMP-9) and their inhibitor (TIMP-1) in lipopolysaccharide-activated human monocytes. Archives of Oral Biology 2015; 60(9): 1196 doi: 10.1016/j.archoralbio.2015.04.009
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20 |
Un-Ho Jin, Kwon-Ho Song, Muneo Motomura, Ikukatsu Suzuki, Yeun-Hwa Gu, Yun-Jeong Kang, Tae-Chul Moon, Cheorl-Ho Kim. Caffeic acid phenethyl ester induces mitochondria-mediated apoptosis in human myeloid leukemia U937 cells. Molecular and Cellular Biochemistry 2008; 310(1-2): 43 doi: 10.1007/s11010-007-9663-7
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21 |
Samira Torki, Amin Soltani, Hedayatollah Shirzad, Nafiseh Esmaeil, Mahdi Ghatrehsamani. Synergistic antitumor effect of NVP-BEZ235 and CAPE on MDA-MB-231 breast cancer cells. Biomedicine & Pharmacotherapy 2017; 92: 39 doi: 10.1016/j.biopha.2017.05.051
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22 |
Hui-Ping Lin, Ching-Yu Lin, Chun-Chieh Liu, Liang-Cheng Su, Chieh Huo, Ying-Yu Kuo, Jen-Chih Tseng, Jong-Ming Hsu, Chi-Kuan Chen, Chih-Pin Chuu. Caffeic Acid Phenethyl Ester as a Potential Treatment for Advanced Prostate Cancer Targeting Akt Signaling. International Journal of Molecular Sciences 2013; 14(3): 5264 doi: 10.3390/ijms14035264
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23 |
Yu Zhang, Wei Liang, Peng Zhang, Jingyan Chen, Hui Qian, Xu Zhang, Wenrong Xu. Circular RNAs: emerging cancer biomarkers and targets. Journal of Experimental & Clinical Cancer Research 2017; 36(1) doi: 10.1186/s13046-017-0624-z
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24 |
Lyvia Eloiza de Freitas Meirelles, Maria Vitória Felipe de Souza, Lucimara Rodrigues Carobeli, Fabrício Morelli, Natália Lourenço Mari, Edilson Damke, Cristiane Suemi Shinobu Mesquita, Jorge Juarez Vieira Teixeira, Marcia Edilaine Lopes Consolaro, Vânia Ramos Sela da Silva. Combination of Conventional Drugs with Biocompounds Derived from Cinnamic Acid: A Promising Option for Breast Cancer Therapy. Biomedicines 2023; 11(2): 275 doi: 10.3390/biomedicines11020275
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25 |
Hany A. Omar, Mai F. Tolba. Caffeic acid phenethyl ester guards against benign prostate hypertrophy in rats: Role of IGF‐1R/protein kinase‐B (Akt)/β‐catenin signaling. IUBMB Life 2018; 70(6): 519 doi: 10.1002/iub.1743
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26 |
Chih-Pin Chuu, Hui-Ping Lin, Mark F. Ciaccio, John M. Kokontis, Ronald J. Hause, Richard A. Hiipakka, Shutsung Liao, Richard Baker Jones. Caffeic Acid Phenethyl Ester Suppresses the Proliferation of Human Prostate Cancer Cells through Inhibition of p70S6K and Akt Signaling Networks. Cancer Prevention Research 2012; 5(5): 788 doi: 10.1158/1940-6207.CAPR-12-0004-T
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27 |
Ricardo Silva-Carvalho, Vera Miranda-Gonçalves, Ana Margarida Ferreira, Susana M. Cardoso, Abílio J.F.N. Sobral, Cristina Almeida-Aguiar, Fátima Baltazar. Antitumoural and antiangiogenic activity of Portuguese propolis in in vitro and in vivo models. Journal of Functional Foods 2014; 11: 160 doi: 10.1016/j.jff.2014.09.009
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28 |
Yu-Jun He, Wan-Ling Li, Bao-Hua Liu, Hui Dong, Zhi-Rong Mou, Yu-Zhang Wu. Identification of differential proteins in colorectal cancer cells treated with caffeic acid phenethyl ester. World Journal of Gastroenterology 2014; 20(33): 11840-11849 doi: 10.3748/wjg.v20.i33.11840
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29 |
Çığır Biray Avcı, Cumhur Gündüz, Yusuf Baran, Fahri Şahin, Sunde Yılmaz, Zeynep Ozlem Dogan, Güray Saydam. Caffeic acid phenethyl ester triggers apoptosis through induction of loss of mitochondrial membrane potential in CCRF-CEM cells. Journal of Cancer Research and Clinical Oncology 2011; 137(1): 41 doi: 10.1007/s00432-010-0857-0
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30 |
Jia Wang, Priyanshu Bhargava, Yue Yu, Anissa Nofita Sari, Huayue Zhang, Noriyuki Ishii, Kangmin Yan, Zhenya Zhang, Yoshiyuki Ishida, Keiji Terao, Sunil C. Kaul, Eijiro Miyako, Renu Wadhwa. Novel Caffeic Acid Phenethyl Ester-Mortalin Antibody Nanoparticles Offer Enhanced Selective Cytotoxicity to Cancer Cells. Cancers 2020; 12(9): 2370 doi: 10.3390/cancers12092370
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31 |
Sureerat Buahorm, Songchan Puthong, Tanapat Palaga, Kriengsak Lirdprapamongkol, Preecha Phuwapraisirisan, Jisnuson Svasti, Chanpen Chanchao. Cardanol isolated from Thai Apis mellifera propolis induces cell cycle arrest and apoptosis of BT-474 breast cancer cells via p21 upregulation. DARU Journal of Pharmaceutical Sciences 2015; 23(1) doi: 10.1186/s40199-015-0138-1
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32 |
Ancheng Qin, Qiang Yu, Yuan Gao, Jifu Tan, Hai Huang, Zhiming Qiao, Weifeng Qian. Inhibition of STAT3/cyclinD1 pathway promotes chemotherapeutic sensitivity of colorectal caner. Biochemical and Biophysical Research Communications 2015; 457(4): 681 doi: 10.1016/j.bbrc.2015.01.048
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33 |
Kartick C. Pramanik, Shashi K. Kudugunti, Neel M. Fofaria, Majid Y. Moridani, Sanjay K. Srivastava. Caffeic acid phenethyl ester suppresses melanoma tumor growth by inhibiting PI3K/AKT/XIAP pathway. Carcinogenesis 2013; 34(9): 2061 doi: 10.1093/carcin/bgt154
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34 |
Suhib Altabbal, Khawla Athamnah, Aaesha Rahma, Adil Farooq Wali, Ali H. Eid, Rabah Iratni, Yusra Al Dhaheri. Propolis: A Detailed Insight of Its Anticancer Molecular Mechanisms. Pharmaceuticals 2023; 16(3): 450 doi: 10.3390/ph16030450
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35 |
Huaiqiong Chen, Yongguang Guan, Seung Joon Baek, Qixin Zhong. Caffeic Acid Phenethyl Ester Loaded in Microemulsions: Enhanced In Vitro Activity against Colon and Breast Cancer Cells and Possible Cellular Mechanisms. Food Biophysics 2019; 14(1): 80 doi: 10.1007/s11483-018-9559-y
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36 |
Hongliang Li, Fan Wu, Jing Tan, Kai Wang, Cuiping Zhang, Huoqing Zheng, Fuliang Hu. Caffeic acid phenethyl ester exhibiting distinctive binding interaction with human serum albumin implies the pharmacokinetic basis of propolis bioactive components. Journal of Pharmaceutical and Biomedical Analysis 2016; 122: 21 doi: 10.1016/j.jpba.2016.01.040
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