Radiosensitizing high-Z metal nanoparticles for enhanced radiotherapy of glioblastoma multiforme
Высокоатомные металлические наночастицы-радиосенсибилизаторы для повышения эффективности лучевой терапии мультиформной глиобластомы
2020-09-03
SCID: 54.1/vnr7d3wh
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glioblastoma multiformehigh-Z metal nanoparticlesradioresistanceradiosensitizationradiotherapy
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Abstract (AI)
Radiotherapy is an essential step during the treatment of glioblastoma multiforme (GBM), one of the most lethal malignancies. The survival in patients with GBM was improved by the current standard of care for GBM established in 2005 but has stagnated since then. Since GBM is a radioresistant malignancy and the most of GBM recurrences occur in the radiotherapy field, increasing the effectiveness of radiotherapy using high-Z metal nanoparticles (NPs) has recently attracted attention. This review summarizes the progress in radiotherapy approaches for the current treatment of GBM, the physical and biological mechanisms of radiosensitization through high-Z metal NPs, and the results of studies on radiosensitization in the in vitro and in vivo GBM models using high-Z metal NPs to date.
Key Findings
1
Existing in vitro and in vivo GBM studies have evaluated the radiosensitizing effects of high-Z metal nanoparticles.
2
Glioblastoma multiforme remains highly lethal, and patient survival has stagnated since the 2005 standard-of-care treatment was established.
3
High-Z metal nanoparticles are being investigated as radiosensitizers to enhance radiotherapy efficacy against radioresistant GBM.
4
Most GBM recurrences arise within the radiotherapy field, highlighting the need to improve the effectiveness of local irradiation.
5
The review summarizes physical and biological mechanisms underlying high-Z nanoparticle radiosensitization.
Research Object
glioblastoma multiforme models treated with high-Z metal nanoparticles during radiotherapy
Research Subject
the physical and biological mechanisms and radiotherapeutic enhancement of radiosensitization by high-Z metal nanoparticles
Publication Details
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2020-09-03
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