Main Approaches to Enhance Radiosensitization in Cancer Cells by Nanoparticles: A Systematic Review
Основные подходы к усилению радиосенсибилизации раковых клеток с помощью наночастиц: систематический обзор
2020-07-13
SCID: 54.1/wpbzyjas
Discuss with AI
cancer radiation therapycore-shell nanoparticleshigh atomic number nanoparticlesnanoparticle radiosensitizationradiation dose enhancement
Figures from the paper
Abstract (AI)
In recent years, high atomic number nanoparticles (NPs) have emerged as promising radioenhancer agents for cancer radiation therapy due to their unique properties. Multi-disciplinary studies have demonstrated the potential of NPs-based radio-sensitizers to improve cancer therapy and tumor control at cellular and molecular levels. However, studies have shown that the dose enhancement effect of the NPs depends on the beam energy, NPs type, NPs size, NPs concentration, cell lines, and NPs delivery system. It has been believed that radiation dose enhancement of NPs is due to the three main mechanisms, but the results of some simulation studies failed to comply well with the experimental findings. Thus, this study aimed to quantitatively evaluate the physical, chemical, and biological factors of the NPs. An organized search of PubMed/Medline, Embase, ProQuest, Scopus, Cochrane and Google Scholar was performed. In total, 77 articles were thoroughly reviewed and analyzed. The studies investigated 44 different cell lines through 70 in-vitro and 4 in-vivo studies. A total of 32 different types of single or core-shell NPs in different sizes and concentrations have been used in the studies.
Key Findings
1
A systematic review analyzed 77 studies, including 70 in-vitro and 4 in-vivo investigations involving 44 cell lines.
2
High-atomic-number nanoparticles show promise as radioenhancers for improving cancer therapy and tumor control at cellular and molecular levels.
3
Nanoparticle dose-enhancement effects vary with beam energy, nanoparticle type, size, concentration, cell line, and delivery system.
4
The commonly proposed three mechanisms of nanoparticle radiation dose enhancement are not consistently supported by simulation studies, which sometimes disagree with experimental findings.
5
The reviewed studies evaluated 32 types of single or core-shell nanoparticles across different sizes and concentrations.
Research Object
High atomic number nanoparticles used as radioenhancers in cancer radiation therapy
Research Subject
The physical, chemical, and biological factors governing nanoparticle-mediated radiation dose enhancement and radiosensitization in cancer cells
Publication Details
Publication Date
2020-07-13
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest