Abstract
Molecular target-based drugs have been expected as promising drugs in cancer treatment, and clinical trials using combined radiation therapy plus molecular target-based drugs have been performed to evaluate the feasibility and efficacy of this approach. In order to obtain maximum radiotherapeutic gain, a detailed understanding of the mechanism underlying the interaction between radiation and these drugs is indispensable. Preclinical data have already demonstrated synergistic enhancement of radiation-induced cell killing by several molecular target-based drugs, such as EGFR inhibitors. Among these, the effect of drugs targeted against receptor tyrosine kinase and its signal transduction pathways on the radiosensitivity has been intensively investigated. In this review, established and potential molecular targets for potentiation of radiation-induced cell killing are summarized, especially focusing on EGFR and its signal transduction pathways; also, clinical trials of combined radiation therapy plus molecular-target drug therapy are summarized.
Keywords: EGFR, molecular target, radiation, radiosensitivity
Current Signal Transduction Therapy
Title: Radiation Oncology and Molecular-Targeted Therapy for EGFR and its Signal Transduction Pathways: Molecular Basis and Clinical Application for Improvement of Radiotherapeutic Outcomes
Volume: 5 Issue: 3
Author(s): Tetsuo Akimoto and Norio Mitsuhashi
Affiliation:
Keywords: EGFR, molecular target, radiation, radiosensitivity
Abstract: Molecular target-based drugs have been expected as promising drugs in cancer treatment, and clinical trials using combined radiation therapy plus molecular target-based drugs have been performed to evaluate the feasibility and efficacy of this approach. In order to obtain maximum radiotherapeutic gain, a detailed understanding of the mechanism underlying the interaction between radiation and these drugs is indispensable. Preclinical data have already demonstrated synergistic enhancement of radiation-induced cell killing by several molecular target-based drugs, such as EGFR inhibitors. Among these, the effect of drugs targeted against receptor tyrosine kinase and its signal transduction pathways on the radiosensitivity has been intensively investigated. In this review, established and potential molecular targets for potentiation of radiation-induced cell killing are summarized, especially focusing on EGFR and its signal transduction pathways; also, clinical trials of combined radiation therapy plus molecular-target drug therapy are summarized.
Export Options
About this article
Cite this article as:
Akimoto Tetsuo and Mitsuhashi Norio, Radiation Oncology and Molecular-Targeted Therapy for EGFR and its Signal Transduction Pathways: Molecular Basis and Clinical Application for Improvement of Radiotherapeutic Outcomes, Current Signal Transduction Therapy 2010; 5 (3) . https://dx.doi.org/10.2174/157436210791920274
DOI https://dx.doi.org/10.2174/157436210791920274 |
Print ISSN 1574-3624 |
Publisher Name Bentham Science Publisher |
Online ISSN 2212-389X |
- 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
-
Choosing Optimal Firstline Helicobacter pylori Therapy: a View from a Region with High Rates of Antibiotic Resistance
Current Pharmaceutical Design Cancer Preventive Phytochemicals as Speed Breakers in Inflammatory Signaling Involved in Aberrant COX-2 Expression
Current Cancer Drug Targets Involvement of Leukotriene Pathway in the Pathogenesis of Ischemia- Reperfusion Injury and Septic and Non-Septic Shock
Current Vascular Pharmacology Multifaceted Role of Neuropilins in Cancer
Current Medicinal Chemistry Cytochromes P450 in the Bioactivation of Chemicals
Current Topics in Medicinal Chemistry Update on Evidence that Support a Role of Solar Ultraviolet-B Irradiance in Reducing Cancer Risk
Anti-Cancer Agents in Medicinal Chemistry Wnt1 Inducible Signaling Pathway Protein 1 (WISP1) Targets PRAS40 to Govern β-Amyloid Apoptotic Injury of Microglia
Current Neurovascular Research Shedding Light on Serum Vitamin D Concentrations and the Risk of Rarer Cancers
Anti-Cancer Agents in Medicinal Chemistry Editorial (Thematic Issue: Personalized Therapy In Cancer of Digestive System)
Clinical Cancer Drugs iPSCs Derived from Malignant Tumor Cells: Potential Application for Cancer Research
Current Stem Cell Research & Therapy Cancer Targeted Therapy Strategy: The Pathologist’s Perspectives
Current Cancer Drug Targets Current and Emerging Therapies in Primary Myelofibrosis
Cardiovascular & Hematological Disorders-Drug Targets Gene Therapy Approaches for the Selective Killing of Cancer Cells
Current Pharmaceutical Design Editorial (Personalized Medicine in the Age of Pharmacoproteomics: A Close up on India and Need for Social Science Engagement for Responsible Innovation in Post-Proteomic Biology)
Current Pharmacogenomics and Personalized Medicine A Review on Colorimetric Sensing of Tumor Markers Based on Enzyme-Mimicking Nanomaterials
Current Medicinal Chemistry High Performance Liquid Chromatographic Approaches to Mass Spectrometry Based Metabolomics
Current Metabolomics Raf Inhibitors as Therapeutic Agents Against Neurodegenerative Diseases
CNS & Neurological Disorders - Drug Targets A Comprehensive Study of Pharmacological Behaviors, Nano-Formulations, and Applications of Rosemary
The Natural Products Journal Antioxidant Effect of Flavonoids Present in Euterpe oleracea Martius and Neurodegenerative Diseases: A Literature Review
Central Nervous System Agents in Medicinal Chemistry Novel Oral Anticoagulants for Venous Thromboembolism with Special Emphasis on Risk of Hemorrhagic Complications and Reversal Agents
Current Drug Therapy