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Updated: May 16, 2026

Quantitative PCR-based Assay to Measure Sonic Hedgehog Signaling in Cellular Model of Ciliogenesis
Published on: January 31, 2025
Hedgehog pathway inhibition radiosensitizes non-small cell lung cancers
Jing Zeng1, Khaled Aziz, Sivarajan T Chettiar
1Department of Radiation Oncology and Molecular Radiation Sciences, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21231-2410, USA.
Purpose:
Despite improvements in chemoradiation, local control remains a major clinical problem in locally advanced non-small cell lung cancer. The Hedgehog pathway has been implicated in tumor recurrence by promoting survival of tumorigenic precursors and through effects on tumor-associated stroma. Whether Hedgehog inhibition can affect radiation efficacy in vivo has not been reported.
Methods And Materials:
We evaluated the effects of a targeted Hedgehog inhibitor (HhAntag) and radiation on clonogenic survival of human non-small cell lung cancer lines in vitro. Using an A549 cell line xenograft model, we examined tumor growth, proliferation, apoptosis, and gene expression changes after concomitant HhAntag and radiation. In a transgenic mouse model of Kras(G12D)-induced and Twist1-induced lung adenocarcinoma, we assessed tumor response to radiation and HhAntag by serial micro-computed tomography (CT) scanning.
Results:
In 4 human lung cancer lines in vitro, HhAntag showed little or no effect on radiosensitivity. By contrast, in both the human tumor xenograft and murine inducible transgenic models, HhAntag enhanced radiation efficacy and delayed tumor growth. By use of the human xenograft model to differentiate tumor and stromal effects, mouse stromal cells, but not human tumor cells, showed significant and consistent downregulation of Hedgehog pathway gene expression. This was associated with increased tumor cell apoptosis.
Conclusions:
Targeted Hedgehog pathway inhibition can increase in vivo radiation efficacy in lung cancer preclinical models. This effect is associated with pathway suppression in tumor-associated stroma. These data support clinical testing of Hedgehog inhibitors as a component of multimodality therapy for locally advanced non-small cell lung cancer.
Insights
Hedgehog pathway inhibition combined with radiation therapy enhances lung cancer treatment efficacy in preclinical models. This approach targets tumor-associated stroma, suggesting potential for improved outcomes in locally advanced non-small cell lung cancer.
Area of Science:
- Oncology
- Molecular Biology
- Radiotherapy
Background:
- Local control remains a challenge in locally advanced non-small cell lung cancer despite chemoradiation advancements.
- The Hedgehog pathway is implicated in tumor recurrence, influencing cancer cell survival and tumor stroma.
- The impact of Hedgehog inhibition on radiation efficacy in vivo is not well-established.
Purpose of the Study:
- To investigate the effect of a Hedgehog inhibitor (HhAntag) combined with radiation on lung cancer.
- To determine if Hedgehog inhibition can enhance radiation efficacy in preclinical lung cancer models.
- To elucidate the mechanisms underlying the combined treatment effects.
Main Methods:
- In vitro assessment of radiosensitivity of human lung cancer lines with HhAntag.
- In vivo evaluation in A549 xenograft models (tumor growth, apoptosis, gene expression).
- Assessment in a Kras/Twist1 transgenic mouse model using micro-CT for tumor response.
Main Results:
- HhAntag alone had minimal impact on radiosensitivity in vitro.
- Concomitant HhAntag and radiation significantly enhanced radiation efficacy and delayed tumor growth in both xenograft and transgenic models.
- Hedgehog pathway gene expression was downregulated in mouse stromal cells, not human tumor cells, correlating with increased tumor cell apoptosis.
Conclusions:
- Targeted Hedgehog pathway inhibition can augment in vivo radiation efficacy in lung cancer preclinical models.
- The observed enhancement is linked to suppression of the Hedgehog pathway within the tumor-associated stroma.
- These findings support the clinical investigation of Hedgehog inhibitors as part of multimodality therapy for locally advanced non-small cell lung cancer.
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