| For: | Lu YY, Jing DD, Xu M, Wu K, Wang XP. Anti-tumor activity of erlotinib in the BxPC-3 pancreatic cancer cell line. World J Gastroenterol 2008; 14(35): 5403-5411 [PMID: 18803351 DOI: 10.3748/wjg.14.5403] |
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| URL: | https://www.wjgnet.com/1007-9327/full/v14/i35/5403.htm |
| Number | Citing Articles |
| 1 |
LIN WANG, ZHI-XIA ZHU, WEN-YING ZHANG, WEI-MIN ZHANG. Schedule-dependent cytotoxic synergism of pemetrexed and erlotinib in BXPC-3 and PANC-1 human pancreatic cancer cells. Experimental and Therapeutic Medicine 2011; 2(5) doi: 10.3892/etm.2011.293
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| 2 |
Rakesh Pahwa, Swati Saini, Jatin Chhabra, Rajat Goyal, Shobhit Kumar, Rajendra Awasthi, Harish Dureja. Harnessing nanotechnology for enhanced delivery of erlotinib: a dynamic duo in cancer treatment. Beni-Suef University Journal of Basic and Applied Sciences 2024; 13(1) doi: 10.1186/s43088-024-00528-3
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| 3 |
Jakob Brandstetter, Lea Goldstein, Tim Schreiber, Rupert Palme, Tobias Lindner, Markus Joksch, Bernd Krause, Brigitte Vollmar, Simone Kumstel, Yoshihiro Sowa. Targeting pancreatic cancer with combined inhibition of EGFR and RAF. PLOS One 2026; 21(4) doi: 10.1371/journal.pone.0347843
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| 4 |
Jasmine G. Lee, Reen Wu. Erlotinib-Cisplatin Combination Inhibits Growth and Angiogenesis through c-MYC and HIF-1α in EGFR-Mutated Lung Cancer In Vitro and In Vivo. Neoplasia 2015; 17(2) doi: 10.1016/j.neo.2014.12.008
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| 5 |
Jana Jandova, Jean‐Philippe Galons, David L. Dettman, Georg T. Wondrak. Systemic deuteration of SCID mice using the water‐isotopologue deuterium oxide (D2O) inhibits tumor growth in an orthotopic bioluminescent model of human pancreatic ductal adenocarcinoma. Molecular Carcinogenesis 2023; 62(5) doi: 10.1002/mc.23509
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| 6 |
Sandy Vrignaud, José Hureaux, Séverine Wack, Jean-Pierre Benoit, Patrick Saulnier. Design, optimization and in vitro evaluation of reverse micelle-loaded lipid nanocarriers containing erlotinib hydrochloride. International Journal of Pharmaceutics 2012; 436(1-2) doi: 10.1016/j.ijpharm.2012.06.026
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| 7 |
M. Noorani, N. Azarpira, K. Karimian, H. Heli. Erlotinib-loaded albumin nanoparticles: A novel injectable form of erlotinib and its in vivo efficacy against pancreatic adenocarcinoma ASPC-1 and PANC-1 cell lines. International Journal of Pharmaceutics 2017; 531(1) doi: 10.1016/j.ijpharm.2017.08.102
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| 8 |
Tianxiao Wang, Jingxuan Yang, Jianwei Xu, Jian Li, Zhe Cao, Li Zhou, Lei You, Hong Shu, Zhaohui Lu, Huihua Li, Min Li, Taiping Zhang, Yupei Zhao. CHIP is a novel tumor suppressor in pancreatic cancer and inhibits tumor growth through targeting EGFR. Oncotarget 2014; 5(7) doi: 10.18632/oncotarget.1890
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| 9 |
Jin Jiang, Zuguo Yuan, Yiqing Sun, Yuan Bu, Wenfeng Li, Zhenghua Fei. Ginsenoside Rg3 enhances the anti-proliferative activity of erlotinib in pancreatic cancer cell lines by downregulation of EGFR/PI3K/Akt signaling pathway. Biomedicine & Pharmacotherapy 2017; 96 doi: 10.1016/j.biopha.2017.10.043
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| 10 |
Davoud Asgari, Ayuob Aghanejad, Javid Shahbazi Mojarrad. An Improved Convergent Approach for Synthesis of Erlotinib, a Tyrosine Kinase Inhibitor, via a Ring Closure Reaction of Phenyl Benzamidine Intermediate. Bulletin of the Korean Chemical Society 2011; 32(3) doi: 10.5012/bkcs.2011.32.3.909
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| 11 |
Kexun Zhou, Yingping Liu, Chuanyun Tang, Hong Zhu. Pancreatic Cancer: Pathogenesis and Clinical Studies. MedComm 2025; 6(4) doi: 10.1002/mco2.70162
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| 12 |
Shannon M. Gallagher-Colombo, Joann Miller, Keith A. Cengel, Mary E. Putt, Sergei A. Vinogradov, Theresa M. Busch. Erlotinib Pretreatment Improves Photodynamic Therapy of Non–Small Cell Lung Carcinoma Xenografts via Multiple Mechanisms. Cancer Research 2015; 75(15) doi: 10.1158/0008-5472.CAN-14-3304
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| 13 |
Xiaoyu Yang, Yi Xu, Amanda Brooks, Bin Guo, Keith W. Miskimins, Steven Y. Qian. Knockdown delta-5-desaturase promotes the formation of a novel free radical byproduct from COX-catalyzed ω-6 peroxidation to induce apoptosis and sensitize pancreatic cancer cells to chemotherapy drugs. Free Radical Biology and Medicine 2016; 97 doi: 10.1016/j.freeradbiomed.2016.06.028
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