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线粒体对传统剂量率和超高剂量率(FLASH)辐射的反应。

Mitochondrial Responses to Conventional and Ultra-high Dose Rate (FLASH) Radiation.

作者信息

Caggiano Emily G, Hernandez Alan Lopez, Waldrop Trey, Liu Kevin, Gatica-Gutierrez Henry, Vargas-Hernández Sofía, Mims Nefetiti, Acevedo-Diaz Ariana, Velasquez Brett, Neil Denae, Aguilar Edgardo, Meyer Matthew D, Echeverria Gloria V, Koong Albert C, Spiotto Michael T, Gustavsson Anna-Karin, Schüler Emil

出版信息

bioRxiv. 2025 Apr 9:2025.04.03.647049. doi: 10.1101/2025.04.03.647049.

Abstract

PURPOSE

Ultra-high dose rate (>40 Gy/s, FLASH) radiation therapy (RT) provides equivalent tumor control while reducing normal tissue toxicity relative to conventional dose rate (CONV) RT. However, the mechanisms underlying the observed FLASH effect are unknown. We hypothesized that the preservation of mitochondrial integrity in nontumorigenic cells by FLASH RT could be a key factor in reducing normal tissue toxicity and improving overall treatment outcomes.

METHODS

We examined mitochondrial health and function after CONV and FLASH in vitro, ex vivo, and in vivo through assays of metabolic flux, mitochondrial membrane potential, mitochondrial reactive oxygen species (ROS), mitochondrial DNA damage and copy number, mitochondrial morphology, and tumor growth and survival.

RESULTS

In in vitro assays, murine pancreatic cancer (PDAC) cells showed evidence of equal mitochondrial damage in response to CONV and FLASH, but nontumorigenic pancreatic cells were spared by FLASH. These results were recapitulated ex vivo, and mice treated with FLASH showed higher response rates and longer survival time than mice treated with CONV in an in vivo tumor model.

CONCLUSIONS

Collectively, these results suggest that FLASH spares mitochondrial function in nontumorigenic cells, but not in PDAC cells, relative to CONV. The preservation of mitochondrial integrity in nontumorigenic cells may be a key mechanism underlying the reduced normal tissue toxicity observed with FLASH RT.

摘要

目的

超高剂量率(>40 Gy/s,FLASH)放射治疗(RT)在降低正常组织毒性方面相对于传统剂量率(CONV)RT能提供等效的肿瘤控制。然而,观察到的FLASH效应背后的机制尚不清楚。我们假设,FLASH RT对非致瘤细胞中线粒体完整性的保留可能是降低正常组织毒性和改善总体治疗结果的关键因素。

方法

我们通过代谢通量、线粒体膜电位、线粒体活性氧(ROS)、线粒体DNA损伤和拷贝数、线粒体形态以及肿瘤生长和存活的检测,在体外、离体和体内研究了CONV和FLASH后的线粒体健康和功能。

结果

在体外试验中,小鼠胰腺癌(PDAC)细胞对CONV和FLASH的反应显示出线粒体损伤程度相同的证据,但FLASH使非致瘤性胰腺细胞免受损伤。这些结果在离体实验中得到了重现,并且在体内肿瘤模型中,接受FLASH治疗的小鼠比接受CONV治疗的小鼠表现出更高的反应率和更长的存活时间。

结论

总体而言,这些结果表明,相对于CONV,FLASH可使非致瘤细胞中的线粒体功能得以保留,但PDAC细胞中的线粒体功能则不然。非致瘤细胞中线粒体完整性的保留可能是FLASH RT观察到的正常组织毒性降低的关键机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab61/12026588/98a8bce970bf/nihpp-2025.04.03.647049v1-f0001.jpg

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