Abstract
The main aim of nanomedicine is to revolutionize the health care system and find effective approaches to fighting fatal diseases. Therapeutic beams, which are employed in radiation therapy, do not discriminate between normal and cancerous cells and must rely on targeting the radiation beams to specific cells. Interestingly, the application of nanoscale particles in radiation therapy has aimed to improve outcomes in radiation therapy by increasing toxicity in tumors and reducing it in normal tissues. This review focuses on approaches to nanotechnology-based cancer radiation therapy methods such as radionuclide therapy, photodynamic therapy, and neutron capture therapy. Moreover, we have investigated nanotechnology-based thermotherapy methods, including hyperthermia and thermoablation, as non-ionizing modalities of treatment using thermal radiation. The results strongly demonstrate that nanotechnology-based cancer radiation therapy and thermotherapy methods hold substantial potential to improve the efficacy of anticancer radiation and thermotherapy modalities.
Keywords: Cancer treatment, nanotechnology, radiation therapy, thermotherapy
Current Cancer Drug Targets
Title:Scope of Nanotechnology-based Radiation Therapy and Thermotherapy Methods in Cancer Treatment
Volume: 12 Issue: 8
Author(s): Mohamadreza K. Bakht, Mahdi Sadeghi, Milad Pourbaghi-Masouleh and Claudio Tenreiro
Affiliation:
Keywords: Cancer treatment, nanotechnology, radiation therapy, thermotherapy
Abstract: The main aim of nanomedicine is to revolutionize the health care system and find effective approaches to fighting fatal diseases. Therapeutic beams, which are employed in radiation therapy, do not discriminate between normal and cancerous cells and must rely on targeting the radiation beams to specific cells. Interestingly, the application of nanoscale particles in radiation therapy has aimed to improve outcomes in radiation therapy by increasing toxicity in tumors and reducing it in normal tissues. This review focuses on approaches to nanotechnology-based cancer radiation therapy methods such as radionuclide therapy, photodynamic therapy, and neutron capture therapy. Moreover, we have investigated nanotechnology-based thermotherapy methods, including hyperthermia and thermoablation, as non-ionizing modalities of treatment using thermal radiation. The results strongly demonstrate that nanotechnology-based cancer radiation therapy and thermotherapy methods hold substantial potential to improve the efficacy of anticancer radiation and thermotherapy modalities.
Export Options
About this article
Cite this article as:
K. Bakht Mohamadreza, Sadeghi Mahdi, Pourbaghi-Masouleh Milad and Tenreiro Claudio, Scope of Nanotechnology-based Radiation Therapy and Thermotherapy Methods in Cancer Treatment, Current Cancer Drug Targets 2012; 12 (8) . https://dx.doi.org/10.2174/156800912803251216
DOI https://dx.doi.org/10.2174/156800912803251216 |
Print ISSN 1568-0096 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-5576 |
- 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
Related Articles
-
MicroRNA Levels in Cervical Cancer Samples and Relationship with Lesion Grade and HPV Infection
MicroRNA Pharmacological Drug Delivery Strategies for Improved Therapeutic Effects: Recent Advances
Current Pharmaceutical Design Non-histone Methylation of SET7/9 and its Biological Functions
Recent Patents on Anti-Cancer Drug Discovery HIV-1 TAT and IMMUNE DYSREGULATION in AIDS PATHOGENESIS: a THERAPEUTIC TARGET
Current Drug Targets The Capsaicin Paradox: Pain Relief by an Algesic Agent
Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry Bioactivity of Chitosan and Its Derivatives
Current Organic Chemistry Current Status of Epigenetics and Anticancer Drug Discovery
Anti-Cancer Agents in Medicinal Chemistry Principles of Minimally Invasive Parathyroidectomy
Current Medical Imaging Fibrates in the Chemical Action of Daunorubicin
Current Cancer Drug Targets The Venom of the Centipede Scolopendra subspinipes mutilans Inhibits the Growth of Myelogenous Leukemia Cell Lines
Letters in Drug Design & Discovery Involvement of Potassium and Chloride Channels and Other Transporters in Volume Regulation by Spermatozoa
Current Pharmaceutical Design Novel Synthetic Pharmacophores Inducing a Stabilization of Cellular Microtubules
Current Cancer Drug Targets Synthesis and Preliminary Cytotoxicity Studies of 1-[1-(4,5-Dihydrooxazol- 2-yl)-1H-indazol-3-yl]-3-phenylurea and 3-phenylthiourea Derivatives
Medicinal Chemistry Structural Activity Relationship and Importance of Benzothiazole Derivatives in Medicinal Chemistry: A Comprehensive Review
Mini-Reviews in Organic Chemistry Predictive Markers for Haematological Toxicity of Pemetrexed
Current Drug Targets Ruthenium(II) Complexes as Potential Apoptosis Inducers in Chemotherapy
Anti-Cancer Agents in Medicinal Chemistry Immune Checkpoint Inhibitors in the Treatment of Cancer
Current Reviews in Clinical and Experimental Pharmacology Near-infrared Light Activatable Multimodal Gold Nanostructures Platform: An Emerging Paradigm for Cancer Therapy
Current Cancer Drug Targets Targeting p73 - a Potential Approach in Cancer Treatment
Current Pharmaceutical Design Disintegrins from Snake Venoms and their Applications in Cancer Research and Therapy
Current Protein & Peptide Science