Application of nano‐radiosensitizers in combination cancer therapy
Применение нанорадиосенсибилизаторов в комбинированной терапии рака
2023-02-10
SCID: 54.1/yncpennw
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combination cancer therapyionizing radiationnano-radiosensitizersradiosensitizationradiosensitizing nanoparticles
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Abstract (AI)
Radiosensitizers are compounds or nanostructures, which can improve the efficiency of ionizing radiation to kill cells. Radiosensitization increases the susceptibility of cancer cells to radiation-induced killing, while simultaneously reducing the potentially damaging effect on the cellular structure and function of the surrounding healthy tissues. Therefore, radiosensitizers are therapeutic agents used to boost the effectiveness of radiation treatment. The complexity and heterogeneity of cancer, and the multifactorial nature of its pathophysiology has led to many approaches to treatment. The effectiveness of each approach has been proven to some extent, but no definitive treatment to eradicate cancer has been discovered. The current review discusses a broad range of nano-radiosensitizers, summarizing possible combinations of radiosensitizing NPs with several other types of cancer therapy options, focusing on the benefits and drawbacks, challenges, and future prospects.
Key Findings
1
Because cancer is heterogeneous and multifactorial, combining nano-radiosensitizers with other treatments is presented as a potentially valuable strategy, although no definitive curative approach exists.
2
Nano-radiosensitizers are designed to increase cancer-cell susceptibility to ionizing-radiation-induced killing.
3
Radiosensitization may enhance radiation-treatment effectiveness while limiting damage to surrounding healthy tissues.
4
The review examines combinations of radiosensitizing nanoparticles with multiple cancer-therapy modalities, emphasizing benefits, drawbacks, challenges, and future prospects.
Research Object
nano-radiosensitizers used in combination cancer therapy
Research Subject
their radiosensitizing efficacy, therapeutic combinations, benefits, drawbacks, challenges, and future prospects
Publication Details
Publication Date
2023-02-10
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