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Home Science News Cancer

Nanosecond proton FLASH radiotherapy reduces normal cell damage

July 30, 2026
in Cancer
Reading Time: 2 mins read
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Nanosecond proton FLASH radiotherapy reduces normal cell damage

Nanosecond proton FLASH radiotherapy reduces normal cell damage

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Nanosecond Proton FLASH Radiotherapy Reduces Normal Cell Damage
image: Schematic of Normal Tissue Sparing in Laser-Proton FLASH-RT

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Credit: SHAO Changsheng

A research team led by Prof. HUANG Qing from the Hefei Institutes of Physical Science of the Chinese Academy of Sciences, in collaboration with the Shanghai Institute of Optics and Fine Mechanics and Shandong University, has found that nanosecond laser-driven proton FLASH radiotherapy can maintain its cancer-killing effect while reducing damage to normal cells.

The study, published in iMed, shows that this new irradiation method protects normal bronchial epithelial cells by preserving mitochondrial function and reducing ferroptosis, an iron-dependent form of cell death.

Radiotherapy is widely used to treat cancer, but radiation can also harm surrounding healthy tissues. FLASH radiotherapy, which delivers radiation at an ultra-high dose rate, has attracted attention because it may reduce normal tissue damage without weakening tumor control.

In this study, the researchers used a laser-driven proton platform to deliver radiation pulses lasting about 12.9 nanoseconds. They compared the effects of this approach with conventional proton irradiation on lung cancer A549 cells and normal bronchial epithelial BEAS-2B cells.

The results showed that both treatments effectively killed cancer cells. However, compared with conventional irradiation, nanosecond FLASH irradiation caused much less damage to normal cells. Further analysis found that FLASH irradiation helped maintain mitochondrial structure and function while reducing ferroptosis.

The researchers also found that conventional irradiation triggered the stress-related protein ATF3 in normal cells, weakening antioxidant defenses and increasing oxidative damage. The extremely short FLASH pulse appeared to limit this stress response, helping normal cells better withstand radiation exposure.

The findings suggest that the way radiation energy is delivered, not only the total dose, plays an important role in determining cellular responses. This work may contribute to the development of safer and more precise radiotherapy approaches.



DOI

10.70322/iMed.2026.10006

Article Title

Nanosecond Laser-Driven Proton FLASH Spares Normal Tissue Cells by Sustaining Mitochondrial Homeostasis and Attenuating Ferroptosis

Article Publication Date

13-Jul-2026

Media Contact

Weiwei Zhao

Hefei Institutes of Physical Science, Chinese Academy of Sciences

annyzhao@ipp.ac.cn

Office: 86-551-655-91206

DOI
10.70322/iMed.2026.10006

DOI

10.70322/iMed.2026.10006

Article Title

Nanosecond Laser-Driven Proton FLASH Spares Normal Tissue Cells by Sustaining Mitochondrial Homeostasis and Attenuating Ferroptosis

Article Publication Date

13-Jul-2026

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