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Cited by in CrossRef
For: Lu ZJ, Deng SJ, Huang DG, He Y, Lei M, Zhou L, Jin P. Frontier of therapeutic antibody discovery: The challenges and how to face them. World J Biol Chem 2012; 3(12): 187-196 [PMID: 23275803 DOI: 10.4331/wjbc.v3.i12.187]
URL: https://www.wjgnet.com/1949-8454/full/v3/i12/187.htm
Number Citing Articles
1
Julius Grzeschik, Desislava Yanakieva, Lukas Roth, Simon Krah, Steffen C. Hinz, Adrian Elter, Tina Zollmann, Gerhard Schwall, Stefan Zielonka, Harald Kolmar. Yeast Surface Display in Combination with Fluorescence‐activated Cell Sorting Enables the Rapid Isolation of Antibody Fragments Derived from Immunized ChickensBiotechnology Journal 2019; 14(4) doi: 10.1002/biot.201800466
2
Starlynn C. Clarke, Biao Ma, Nathan D. Trinklein, Ute Schellenberger, Michael J. Osborn, Laure-Hélène Ouisse, Andrew Boudreau, Laura M. Davison, Katherine E. Harris, Harshad S. Ugamraj, Aarti Balasubramani, Kevin H. Dang, Brett Jorgensen, Heather Anne N. Ogana, Duy T. Pham, Payal P. Pratap, Preethi Sankaran, Ignacio Anegon, Wim C. van Schooten, Marianne Brüggemann, Roland Buelow, Shelley Force Aldred. Multispecific Antibody Development Platform Based on Human Heavy Chain AntibodiesFrontiers in Immunology 2019; 9 doi: 10.3389/fimmu.2018.03037
3
Alexander Jarasch, Hans Koll, Joerg T. Regula, Martin Bader, Apollon Papadimitriou, Hubert Kettenberger. Developability Assessment During the Selection of Novel Therapeutic AntibodiesJournal of Pharmaceutical Sciences 2015; 104(6): 1885 doi: 10.1002/jps.24430
4
Anizah Rahumatullah, Azimah Ahmad, Rahmah Noordin, Theam Soon Lim. Delineation of BmSXP antibody V-gene usage from a lymphatic filariasis based immune scFv antibody libraryMolecular Immunology 2015; 67(2): 512 doi: 10.1016/j.molimm.2015.07.040
5
Bruno Villoutreix, Melaine Kuenemann, David Lagorce, Olivier Sperandio, Maria Miteva. In Silico Drug Discovery and Design2015; : 441 doi: 10.1201/b18799-21
6
Shantanu V. Sule, Jason E. Fernandez, Vincent J. Mecozzi, Yana Kravets, William C. Yang, Pamela Feng, Suli Liu, Li Zang, Allan D. Capili, Tia B. Estey, Kapil Gupta. Assessing the Impact of Charge Variants on Stability and Viscosity of a High Concentration Antibody FormulationJournal of Pharmaceutical Sciences 2017; 106(12): 3507 doi: 10.1016/j.xphs.2017.08.016
7
Anizah Rahumatullah, Izzati Abdul Karim, Rahmah Noordin, Theam Lim. Antibody-Based Protective Immunity against Helminth Infections: Antibody Phage Display Derived Antibodies against BmR1 AntigenInternational Journal of Molecular Sciences 2017; 18(11): 2376 doi: 10.3390/ijms18112376
8
Casey K Hua, Albert T Gacerez, Charles L Sentman, Margaret E Ackerman, Yoonjoo Choi, Chris Bailey-Kellogg. Computationally-driven identification of antibody epitopeseLife 2017; 6 doi: 10.7554/eLife.29023
9
Nives Škrlj, Marko Dolinar. New engineered antibodies against prionsBioengineered 2014; 5(1): 10 doi: 10.4161/bioe.26069
10
Guiying Pang, Ruixue Wang, Hongxu Yang, Mengya Chai, Yanzhe Gao, Sisi Chen, Ting Mao, Luheng Du, Yujia Lan, Shu Li, Jiale Xu, Panpan Cui, Ruqing Cheng, Yuxin Huang, Xuncui Wang, Yi Yang. A synthetic heavy chain variable domain antibody library (VHL) provides highly functional antibodies with favorable developabilityProtein Science 2025; 34(4) doi: 10.1002/pro.70090
11
Weizao Chen, Wei Li, Tianlei Ying, Yanping Wang, Yang Feng, Dimiter S. Dimitrov. Germlining of the HIV-1 broadly neutralizing antibody domain m36Antiviral Research 2015; 116: 62 doi: 10.1016/j.antiviral.2015.02.001
12
Yoonjoo Choi, Christian Ndong, Karl E. Griswold, Chris Bailey-Kellogg. Computationally driven antibody engineering enables simultaneous humanization and thermostabilizationProtein Engineering Design and Selection 2016; 29(10): 419 doi: 10.1093/protein/gzw024
13
Andreas Lehmann, Josephine H F Wixted, Maxim V Shapovalov, Heinrich Roder, Roland L Dunbrack, Matthew K Robinson. Stability engineering of anti-EGFR scFv antibodies by rational design of a lambda-to-kappa swap of the VLframework using a structure-guided approachmAbs 2015; 7(6): 1058 doi: 10.1080/19420862.2015.1088618
14
Natalia Ponomarenko, Spyros D. Chatziefthimiou, Inna Kurkova, Yuliana Mokrushina, Yuliana Mokrushina, Anastasiya Stepanova, Ivan Smirnov, Marat Avakyan, Tatyana Bobik, Azad Mamedov, Vladimir Mitkevich, Alexey Belogurov, Olga S. Fedorova, Michael Dubina, Andrey Golovin, Victor Lamzin, Alain Friboulet, Alexander A. Makarov, Matthias Wilmanns, Alexander Gabibov. Role of κ→λ light-chain constant-domain switch in the structure and functionality of A17 reactibodyActa Crystallographica Section D Biological Crystallography 2014; 70(3): 708 doi: 10.1107/S1399004713032446
15
Lukas Roth, Simon Krah, Janina Klemm, Ralf Günther, Lars Toleikis, Michael Busch, Stefan Becker, Stefan Zielonka. Genotype Phenotype CouplingMethods in Molecular Biology 2020; 2070: 173 doi: 10.1007/978-1-4939-9853-1_10
16
Dimitrios Vlachakis, Sophia Kossida. Antibody Drug Conjugate Bioinformatics: Drug Delivery through the LetterboxComputational and Mathematical Methods in Medicine 2013; 2013: 1 doi: 10.1155/2013/282398
17
James R. Apgar, Michelle Mader, Rita Agostinelli, Susan Benard, Peter Bialek, Mark Johnson, Yijie Gao, Mark Krebs, Jane Owens, Kevin Parris, Michael St. Andre, Kris Svenson, Carl Morris, Lioudmila Tchistiakova. Beyond CDR-grafting: Structure-guided humanization of framework and CDR regions of an anti-myostatin antibodymAbs 2016; 8(7): 1302 doi: 10.1080/19420862.2016.1215786
18
Patrice Douillard, Michael Freissmuth, Gerhard Antoine, Michael Thiele, Daniel Fleischanderl, Peter Matthiessen, Dirk Voelkel, Randolf J. Kerschbaumer, Friedrich Scheiflinger, Nicolas Sabarth. Optimization of an Antibody Light Chain Framework Enhances Expression, Biophysical Properties and PharmacokineticsAntibodies 2019; 8(3): 46 doi: 10.3390/antib8030046
19
Jan P. Bogen, Julius Grzeschik, Simon Krah, Stefan Zielonka, Harald Kolmar. Genotype Phenotype CouplingMethods in Molecular Biology 2020; 2070: 289 doi: 10.1007/978-1-4939-9853-1_16
20
Stefan Zielonka, Martin Empting, Julius Grzeschik, Doreen Könning, Caroline J Barelle, Harald Kolmar. Structural insights and biomedical potential of IgNAR scaffolds from sharksmAbs 2015; 7(1): 15 doi: 10.4161/19420862.2015.989032
21
Yaswanth Kuthati, Ranjith Kumar Kankala, Chia-Hung Lee. Layered double hydroxide nanoparticles for biomedical applications: Current status and recent prospectsApplied Clay Science 2015; : 100 doi: 10.1016/j.clay.2015.04.018
22
Yoonjoo Choi, Casey Hua, Charles L Sentman, Margaret E Ackerman, Chris Bailey-Kellogg. Antibody humanization by structure-based computational protein designmAbs 2015; 7(6): 1045 doi: 10.1080/19420862.2015.1076600
23
Xiaofeng Li, Qiana Mendez, Cassandra Chapados, Felicity Acca, Holly Driscoll, Jason Oliveira, Jun Liu, Kezzia Jones, Mary Ferguson, Ryan L. Wallace, Sergei Bibikov, Troy Lionberger, Kevin J. Harvey, Michael P. Weiner, Greg Mirando. Site-directed antibodies targeting driver mutations of the KRAS proteinNew Biotechnology 2025; 87: 112 doi: 10.1016/j.nbt.2025.04.003
24
Bruno O. Villoutreix, Melaine A. Kuenemann, Jean‐Luc Poyet, Heriberto Bruzzoni‐Giovanelli, Céline Labbé, David Lagorce, Olivier Sperandio, Maria A. Miteva. Drug‐Like ProteinProtein Interaction Modulators: Challenges and Opportunities for Drug Discovery and Chemical BiologyMolecular Informatics 2014; 33(6-7): 414 doi: 10.1002/minf.201400040
25
Achim Doerner, Laura Rhiel, Stefan Zielonka, Harald Kolmar. Therapeutic antibody engineering by high efficiency cell screeningFEBS Letters 2014; 588(2): 278 doi: 10.1016/j.febslet.2013.11.025