Abstract
Therapeutic antibodies are implicated into the very promising and fast growing area of pharmaceutics. Human hybridoma technology, allowing generation of natural human antibodies in a native form, seems to be the most direct way that require no additional modifications for production of therapeutic antibodies. However, technical difficulties in human hybridoma creation discovered in the 80s of the last century have switched the mainstream therapeutic antibody development into new directions like display and transgenic mice techniques. These approaches have provided remarkable achievements in antibody engineering within last 15 years, but also revealed other limitations. Thus, it is time to turn back to forgotten human hybridoma technology. In this review, we describe new advances in all components of human hybridoma technology and discuss challenges in generating novel therapeutic mABs based on hybridoma technologies.
Keywords: Therapeutic antibodies, hybridoma, fusion partner, B cells, EBV transformation, miR transformation.
Current Pharmaceutical Design
Title:Updates on the Production of Therapeutic Antibodies Using Human Hybridoma Technique
Volume: 22 Issue: 7
Author(s): Xenia A. Glukhova, Olga V. Prusakova, Julia A. Trizna, Michael M. Zaripov, Gaida V. Afanas’eva, Anatoly S. Glukhov, Rimma A. Poltavtseva, Alexei A. Ivanov, Marco Avila-Rodriguez, George E. Barreto, Gjumrakch Aliev and Igor P. Beletsky
Affiliation:
Keywords: Therapeutic antibodies, hybridoma, fusion partner, B cells, EBV transformation, miR transformation.
Abstract: Therapeutic antibodies are implicated into the very promising and fast growing area of pharmaceutics. Human hybridoma technology, allowing generation of natural human antibodies in a native form, seems to be the most direct way that require no additional modifications for production of therapeutic antibodies. However, technical difficulties in human hybridoma creation discovered in the 80s of the last century have switched the mainstream therapeutic antibody development into new directions like display and transgenic mice techniques. These approaches have provided remarkable achievements in antibody engineering within last 15 years, but also revealed other limitations. Thus, it is time to turn back to forgotten human hybridoma technology. In this review, we describe new advances in all components of human hybridoma technology and discuss challenges in generating novel therapeutic mABs based on hybridoma technologies.
Export Options
About this article
Cite this article as:
Glukhova A. Xenia, Prusakova V. Olga, Trizna A. Julia, Zaripov M. Michael, Afanas’eva V. Gaida, Glukhov S. Anatoly, Poltavtseva A. Rimma, Ivanov A. Alexei, Avila-Rodriguez Marco, Barreto E. George, Aliev Gjumrakch and Beletsky P. Igor, Updates on the Production of Therapeutic Antibodies Using Human Hybridoma Technique, Current Pharmaceutical Design 2016; 22 (7) . https://dx.doi.org/10.2174/1381612822666151223102845
DOI https://dx.doi.org/10.2174/1381612822666151223102845 |
Print ISSN 1381-6128 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-4286 |
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Novel VEGF-independent Strategies Targeting Tumor Vasculature: Clinical Aspects
Current Pharmaceutical Design Neurotransmitters and Chemokines Regulate Tumor Cell Migration: Potential for a New Pharmacological Approach to Inhibit Invasion and Metastasis Development
Current Pharmaceutical Design α(N)-Heterocyclic Thiosemicarbazones: Iron Chelators that are Promising for Revival of Gallium in Cancer Chemotherapy
Anti-Cancer Agents in Medicinal Chemistry Interferon Treatment in Patients with Hypereosinophilia
Current Drug Targets Theranostic Radiopharmaceuticals Targeting Cancer-Associated Fibroblasts
Current Radiopharmaceuticals Selumetinib in Advanced Non Small Cell Lung Cancer (NSCLC) Harbouring KRAS Mutation: Endless Clinical Challenge to KRAS-mutant NSCLC.
Reviews on Recent Clinical Trials Nitroimidazole Radiopharmaceuticals in Hypoxia: Part II Cytotoxicity and Radiosensitization Applications
Current Radiopharmaceuticals Nanotechnology and Radiopharmaceuticals: Diagnostic and Therapeutic Approaches
Current Drug Delivery Inflammation-Mediating Proteases: Structure, Function in (Patho) Physiology and Inhibition
Protein & Peptide Letters Stem Cell Transplantation for Hematological Malignancies: Prospects for Personalized Medicine and Co-therapy with Mesenchymal Stem Cells
Current Pharmacogenomics and Personalized Medicine Therapeutic Potential of Janus Kinase 3 (JAK3) Inhibitors
Current Pharmaceutical Design New Perspectives of HIV/AIDS Therapy Study
Recent Patents on Anti-Infective Drug Discovery Unorthodox Inhibitors of HIV Protease: Looking Beyond Active-site-directed Peptidomimetics
Current Pharmaceutical Design Angiogenesis Inhibitors and Radiation in Multimodality Cancer Therapy: Preclinical and Clinical Studies
Current Angiogenesis (Discontinued) Dual-target Inhibitors Based on BRD4: Novel Therapeutic Approaches for Cancer
Current Medicinal Chemistry Recent Progress in Phosphoinositide 3-Kinases: Oncogenic Properties and Prognostic and Therapeutic Implications
Current Protein & Peptide Science Fibroblast Growth Factor Receptor (FGFR): A New Target for Non-small Cell Lung Cancer Therapy
Anti-Cancer Agents in Medicinal Chemistry Inhibitors of HDACs - Effective Drugs Against Cancer?
Current Cancer Drug Targets Fighting Tumor Cell Survival: Advances in the Design and Evaluation of Pim Inhibitors
Current Medicinal Chemistry Anti-tumor Effects of Curcuminoids in Glioblastoma Multiforme: An Updated Literature Review
Current Medicinal Chemistry