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March 30, 2026Advanced Science2 citationsOpen Access

Proton FLASH Exposure Preserves Gut Commensal Microbiomes and Spares Intestinal Stem Cells

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RCRishi Man ChughPBPayel BhanjaESEmily Schueddig

Key Points

  • This research aims to explore how Proton FLASH radiotherapy impacts gut microbiomes and intestinal stem cells (ISCs).
  • Utilized a mouse model of abdominal irradiation to compare Proton FLASH and Proton Conventional treatments.
  • Assessed survival rates and crypt-villus damage.
  • Analyzed gut microbiota composition using scRNA-sequencing and diversity metrics.
  • Proton FLASH exposure improved survival and reduced crypt-villus damage compared to standard rates.
  • Proton FLASH treatment spares distinct ISC populations, influencing oxidative stress and cell cycle progression.
  • Fecal microbiota transplantation studies corroborated the protective role of the gut microbiome in preserving intestinal health.

Abstract

Emerging evidence shows that Proton FLASH radiotherapy can spare normal tissues while maintaining anti-tumor efficacy. However, its impact on intestinal stem cells (ISCs) and the gut microbiome remains unclear. Gut microbiome influences ISC's radiosensitivity. In a mouse model of abdominal irradiation, Proton FLASH exposure exhibited improved survival and less crypt-villus damage compared to Proton Conventional dose rate. Using scRNA-sequencing, we demonstrated that Proton FLASH exposure using pulsed pencil beam scanning spares two distinct ISC populations, Lgr5+ Crypt-based columnar cells (CBCs) and a Ly6a+, Clu+, Areg+, Anxa2+ revival stem cell (revSC) population-by modulating oxidative stress and cell cycle progression. Analysis of α and β-diversity demonstrated that Proton FLASH modulates gut microbiota composition without compromising overall species richness. Notably, Proton FLASH-irradiated mice had higher abundances of Alistipes sp. and Akkermensia sp., both known for protective effects on ISCs and the intestinal mucosa. The role of microbiome in Proton FLASH-mediated sparing effect was further confirmed by fecal microbiota transplantation, where Proton FLASH-donor microbiota demonstrated reduced lethality with protection of crypt villus morphology in recipient mice exposed to Proton Conventional dose rate. Our findings highlight the crucial role of the microbiome in the Proton FLASH-mediated sparing of the mucosal epithelium.

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Cite This Study

Chugh et al. (2026) studied this question.

synapsesocial.com/papers/69c9c51bf8fdd13afe0bd1achttps://doi.org/10.1002/advs.202519249
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