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Cited by in CrossRef
For: Yu B, Ni M, Li WH, Lei P, Xing W, Xiao DW, Huang Y, Tang ZJ, Zhu HF, Shen GX. Human scFv antibody fragments specific for hepatocellular carcinoma selected from a phage display library. World J Gastroenterol 2005; 11(26): 3985-3989 [PMID: 15996020 DOI: 10.3748/wjg.v11.i26.3985]
URL: https://www.wjgnet.com/1007-9327/full/v11/i26/3985.htm
Number Citing Articles
1
Olga I. Guliy, Stella S. Evstigneeva, Lev A. Dykman. Recombinant antibodies by phage display for bioanalytical applicationsBiosensors and Bioelectronics 2023; 222: 114909 doi: 10.1016/j.bios.2022.114909
2
Arnik Shah, Dipanwita Batabyal, Dayong Qiu, Weidong Cui, John Harrahy, Alexander R. Ivanov. Mapping conformational changes on bispecific antigen-binding biotherapeutic by covalent labeling and mass spectrometryJournal of Pharmaceutical Analysis 2024; : 100966 doi: 10.1016/j.jpha.2024.100966
3
Kimia Karimi, Sarah Mojtabavi, Pooya M. Tehrany, Melina Maghsodlou Nejad, Aryan Rezaee, Shahab Mohtashamian, Erfan Hamedi, Farnaz Yousefi, Farshid Salmani, Mohammad Arad Zandieh, Noushin Nabavi, Navid Rabiee, Yavuz Nuri Ertas, Shokooh Salimimoghadam, Mohsen Rashidi, Parham Rahmanian, Kiavash Hushmandi, Wei Yu. Chitosan-based nanoscale delivery systems in hepatocellular carcinoma: Versatile bio-platform with theranostic applicationInternational Journal of Biological Macromolecules 2023; 242: 124935 doi: 10.1016/j.ijbiomac.2023.124935
4
Preeyanat Vongchan, Yupanan Wutti-In, Warayuth Sajomsang, Pattarapond Gonil, Suchart Kothan, Robert J. Linhardt. N,N,N-Trimethyl chitosan nanoparticles for the delivery of monoclonal antibodies against hepatocellular carcinoma cellsCarbohydrate Polymers 2011; 85(1): 215 doi: 10.1016/j.carbpol.2011.02.018
5
Ryan M Williams, Cyrus J Hajiran, Sara Nayeem, Letha J Sooter. Identification of an antibody fragment specific for androgen-dependent prostate cancer cellsBMC Biotechnology 2014; 14(1) doi: 10.1186/1472-6750-14-81
6
Catherine L. Bair, Amos Oppenheim, Andrei Trostel, Gali Prag, Sankar Adhya. A phage display system designed to detect and study protein–protein interactionsMolecular Microbiology 2008; 67(4): 719 doi: 10.1111/j.1365-2958.2007.06077.x
7
Pennapa Mungchan, Kittirat Glab-ampai, Nuttapol Chruewkamlow, Kongtana Trakarnsanga, Chatchawan Srisawat, Kytai T. Nguyen, Wanpen Chaicumpa, Primana Punnakitikashem. Targeted Nanoparticles for the Binding of Injured Vascular Endothelium after Percutaneous Coronary InterventionMolecules 2022; 27(23): 8144 doi: 10.3390/molecules27238144
8
Ryan M. Williams, Letha J. Sooter. In VitroSelection of Cancer Cell-Specific Molecular Recognition Elements from Amino Acid LibrariesJournal of Immunology Research 2015; 2015: 1 doi: 10.1155/2015/186586
9
Sergey A. Staroverov, Sergey V. Kozlov, Fedor A. Brovko, Ksenia K. Fursova, Vitaly V. Shardin, Alexander S. Fomin, Konstantin P. Gabalov, Dmitry A. Soldatov, Elena G. Zhnichkova, Lev A. Dykman, Olga I. Guliy. Phage antibodies against heat shock proteins as tools for in vitro cancer diagnosisBiosensors and Bioelectronics: X 2022; 11: 100211 doi: 10.1016/j.biosx.2022.100211
10
David Sánchez-Martín, Morten Dræby Sørensen, Simon Lykkemark, Laura Sanz, Peter Kristensen, Erkki Ruoslahti, Luis Álvarez-Vallina. Selection strategies for anticancer antibody discovery: searching off the beaten pathTrends in Biotechnology 2015; 33(5): 292 doi: 10.1016/j.tibtech.2015.02.008
11
Ming Ni, Bing Yu, Yu Huang, Zhenjie Tang, Ping Lei, Xin Shen, Wei Xin, Huifen Zhu, Guanxin Shen. Homology modelling and bivalent single-chain Fv construction of anti-HepG2 single-chain immunoglobulin Fv fragments from a phage display libraryJournal of Biosciences 2008; 33(5): 691 doi: 10.1007/s12038-008-0089-5
12
Hong Xu, Binrui Cao, Yan Li, Chuanbin Mao. Phage nanofibers in nanomedicine: Biopanning for early diagnosis, targeted therapy, and proteomics analysisWIREs Nanomedicine and Nanobiotechnology 2020; 12(4) doi: 10.1002/wnan.1623
13
Honglin Jiang, Yan Li, Serge Cosnier, Mingying Yang, Weilian Sun, Chuanbin Mao. Exploring phage engineering to advance nanobiotechnologyMaterials Today Nano 2022; 19: 100229 doi: 10.1016/j.mtnano.2022.100229