ArticleInternational journal of molecular sciences2023
Dose- and Segment-Dependent Disturbance of Rat Gut by Ionizing Radiation: Impact of Tight Junction Proteins.
Article in International journal of molecular sciences, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed, 15 citations in OpenAlex.
- Ginsenoside Rb1 mitigates radiation-induced intestinal injury through Treg expansion and IL-10-mediated epithelial regeneration.Journal of ginseng research · 2026Article
- The role of the gut microbiota in radiation enteritis: from mechanistic insights to therapeutic applications.Communications biology · 2026Review
- Review
- Gastrointestinal acute radiation syndrome: current knowledge and perspectives.Cell death discovery · 2025Review
- Gastroprotective and microbiome-modulating effects of ubiquinol in rats with radiation-induced enteropathy.Animal microbiome · 2024Article
- Health Effects of Ionizing Radiation on the Human Body.Medicina (Kaunas, Lithuania) · 2024Review
- Acute Impacts of Ionizing Radiation Exposure on the Gastrointestinal Tract and Gut Microbiome in Mice.International journal of molecular sciences · 2024Article
- Chronic Ouabain Targets Pore-Forming Claudin-2 and Ameliorates Radiation-Induced Damage to the Rat Intestinal Tissue Barrier.International journal of molecular sciences · 2023Article
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Authors and funding
5 authors at 2 institutions in 1 country.
Funding
Abstract
The damaging effect of ionizing radiation (IR) exposure results in the disturbance of the gut natural barrier, followed by the development of severe gastrointestinal injury. However, the dose and application segment are known to determine the effects of IR. In this study, we demonstrated the dose- and segment-specificity of tight junction (TJ) alteration in IR-induced gastrointestinal injury in rats. Male Wistar rats were subjected to a total-body X-ray irradiation at doses of 2 or 10 Gy. Isolated jejunum and colon segments were tested in an Ussing chamber 72 h after exposure. In the jejunum, 10-Gy IR dramatically altered transepithelial resistance, short-circuit current and permeability for sodium fluorescein. These changes were accompanied by severe disturbance of histological structure and total rearrangement of TJ content (increased content of claudin-1, -2, -3 and -4; multidirectional changes in tricellulin and occludin). In the colon of 10-Gy irradiated rats, lesions of barrier and transport functions were less pronounced, with only claudin-2 and -4 altered among TJ proteins. The 2-Gy IR did not change electrophysiological characteristics or permeability in the colon or jejunum, although slight alterations in jejunum histology were noted, emphasized with claudin-3 increase. Considering that TJ proteins are critical for maintaining epithelial barrier integrity, these findings may have implications for countermeasures in gastrointestinal acute radiation injury.
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