Expression of Tenascin-C is Upregulated in the Early Stages of Radiation Pneumonitis/Fibrosis in a Novel Mouse Model

Kazuki Omori,Akinori Takada, Yutaka Toyomasu, Isao Tawara, Chihiro Shintoku,Kyoko Imanaka-Yoshida,Hajime Sakuma, Yoshihito Nomoto

Current issues in molecular biology(2024)

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Abstract
The lung is a major dose-limiting organ for radiation therapy (RT) for cancer in the thoracic region, and the clarification of radiation-induced lung damage (RILD) is important. However, there have been few reports containing a detailed comparison of radiographic images with the pathological findings of radiation pneumonitis (RP)/radiation fibrosis (RF). We recently reported the upregulated expression of tenascin-C (TNC), an inflammation-associated extracellular matrix molecule, in surgically resected lung tissue, and elevated serum levels were elevated in a RILD patient. Therefore, we have developed a novel mouse model of partial lung irradiation and studied it with special attention paid to the computed tomography (CT) images and immunohistological findings. The right lungs of mice (BALB/c) were irradiated locally at 30 Gy/1fr, and the following two groups were created. In Group 1, sequential CT was performed to confirm the time-dependent changes in RILD. In Group 2, the CT images and histopathological findings of the lung were compared. RP findings were detected histologically at 16 weeks after irradiation; they were also observed on the CT images from 20 weeks. The immunostaining of TNC was observed before the appearance of RP on the CT images. The findings suggest that TNC could be an inflammatory marker preceding lung fibrosis.
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Key words
tenascin-C,extracellular matrix glycoprotein,radiation pneumonia,radiation fibrosis,stereotactic body radiotherapy,radiation-induced lung damage
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