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Updated: Oct 16, 2025

Quantitative PCR-based Assay to Measure Sonic Hedgehog Signaling in Cellular Model of Ciliogenesis
Published on: January 31, 2025
Hedgehog/GLI1 signaling pathway regulates the resistance to cisplatin in human osteosarcoma
Daosen Chen1,2, Xiaodiao Kang1,2, Zhenxing Li1,2
1Department of Orthopedics, The Second Affiliated Hospital of Wenzhou Medical University, Yuying Children's Hospital, Wenzhou 325027, China.
Abstract:
Purpose: This study aimed to investigate the role and mechanism of Hedgehog/GLI1 signaling pathway in regulating the resistance to cisplatin in osteosarcoma (OS). Materials and methods: Immunohistochemistry, western blotting and qRT-PCR assay were performed to analyze and compare the expression of GLI1 in OS tumor tissue and normal bone tissue as well as in cisplatin sensitive and resistant cell lines (SOSP-9607 and SOSP-9607/CR). Meanwhile, the biological role of GLI1 in OS was investigated by using down-regulated expression of GLI1 and functional assays, including CCK-8, colony formation assay, flow cytometry, and wound healing assay. Moreover, the relationship between GLI1 and γ-H2AX (DNA damage protein) in cells treated with GLI1 siRNA and cisplatin was examined using western blot analysis. In addition, GANT61, a inhibitor of Hedgehog pathway was used in xenograft tumor model to further verify the effect and mechanism of GLI1 on cisplatin resistance in OS. Results: We showed that GLI1 expression was up-regulated in OS patients and cisplatin-resistant cells. Silencing GLI1 significantly restored the sensitivity of OS to cisplatin, reduced proliferation, migration and cloning capacity of cisplatin sensitive and resistant cells, and increased the apoptosis rate in vitro. Furthermore, combined administration of GANT61 and cisplatin markedly inhibitted tumor growth in the mouse model. Mechanitic studies found that γ-H2AX is involved in the cisplatin resistance, and blockade of Hedgehog/GLI1 pathway increased the expression of γ-H2AX. Conclusion: Abnormal activation of Hedgehog-GLI1 pathway can regulate the expression of γ-H2AX, thus affecting DNA damage and repair functions, and promoting acquired cisplatin resistance of OS.
Insights
The Hedgehog/GLI1 pathway promotes cisplatin resistance in osteosarcoma (OS) by affecting DNA damage and repair. Blocking this pathway restores sensitivity to cisplatin, offering a potential therapeutic strategy for OS treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Osteosarcoma (OS) poses a significant challenge due to acquired resistance to chemotherapy, particularly cisplatin.
- Understanding the molecular mechanisms underlying cisplatin resistance is crucial for developing effective treatment strategies.
Purpose of the Study:
- To investigate the role of the Hedgehog/GLI1 signaling pathway in regulating cisplatin resistance in osteosarcoma.
- To elucidate the mechanism by which this pathway influences chemoresistance, focusing on DNA damage and repair.
Main Methods:
- Analysis of GLI1 expression in OS tissues and cell lines using immunohistochemistry, western blotting, and qRT-PCR.
- Functional assays (CCK-8, colony formation, flow cytometry, wound healing) to assess the biological role of GLI1.
- Investigation of the relationship between GLI1 and γ-H2AX (DNA damage marker) following GLI1 inhibition.
- Validation using a xenograft tumor model with a Hedgehog pathway inhibitor (GANT61).
Main Results:
- GLI1 expression was significantly upregulated in osteosarcoma patients and cisplatin-resistant cells.
- Silencing GLI1 restored cisplatin sensitivity, reduced cell proliferation and migration, and increased apoptosis in OS cells.
- Combined treatment with GANT61 and cisplatin inhibited tumor growth in vivo.
- Hedgehog/GLI1 pathway blockade increased γ-H2AX expression, indicating involvement in DNA damage response.
Conclusions:
- Abnormal activation of the Hedgehog/GLI1 pathway contributes to acquired cisplatin resistance in osteosarcoma.
- This pathway regulates γ-H2AX expression, impacting DNA damage and repair, thereby promoting chemoresistance.
- Targeting the Hedgehog/GLI1 pathway presents a potential therapeutic approach to overcome cisplatin resistance in OS.
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