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Updated: Jun 12, 2025

A Syngeneic Orthotopic Osteosarcoma Sprague Dawley Rat Model with Amputation to Control Metastasis Rate
Published on: May 3, 2021
KRAS regulates IL-17 signal activity by affect the metastasis of osteosarcoma via an IL-17A-dependent manner
Xing Bao1, Na Zhang2, Chenchen Wang2
1Department of Orthopedics, Tongji Hospital of Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, People's Republic of China.
Abstract:
Dysregulation of Kirsten rat sarcoma virus (KRAS) plays crucial roles in many tumors. It is reported that KRAS could promote proliferation of osteosarcoma (OS) cells. Nonetheless, the contribution of KRAS to the invasion and spread of OS is still not well understood. This study aimed to investigate KRAS-driven metastasis and the mechanisms behind it in human OS. Tissue microarrays were utilized to assess KRAS expression and its relationship with clinicopathological characteristics. The migratory and invasive abilities of OS cells were evaluated through wound-healing assays and transwell analysis. Furthermore, the regulatory mechanisms of KRAS in human OS were analyzed using RNA sequencing, tandem mass tags assays, multiple immunofluorescence assays, micro-CT, and bioluminescence imaging. In vivo experiments were conducted using established lung metastatic models. Our data showed that downregulation of KRAS in human OS cells could inhibit cell migration and invasion in vitro and in vivo (tumor metastasis model by tail vein injection in BALB/c nude mice). We identify IL-17A, a crucial marker of IL-17 signal pathway, as a downstream target of KRAS. The reduction of KRAS may suppress matrix metalloproteinase (MMP1), MMP3, and MMP9, which are recognized as proteins associated with tumor metastasis, through a mechanism dependent on IL-17 signaling. In summary, these findings indicate that KRAS could serve as a potential biomarker for therapeutic strategies in human OS. Mechanistically, our data revealed that KRAS knockdown affects tumor metastasis by inactivating IL-17 signal pathway via IL-17A-dependent manner.
Insights
Kirsten rat sarcoma virus (KRAS) drives osteosarcoma (OS) metastasis by activating the IL-17A pathway. Inhibiting KRAS may suppress tumor spread by downregulating matrix metalloproteinases, offering a potential therapeutic target for OS.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metastasis Research
Background:
- Dysregulation of Kirsten rat sarcoma virus (KRAS) is implicated in tumor progression.
- While KRAS promotes osteosarcoma (OS) cell proliferation, its role in OS invasion and metastasis remains unclear.
Purpose of the Study:
- To investigate the role of KRAS in driving metastasis in human osteosarcoma.
- To elucidate the underlying molecular mechanisms of KRAS-driven metastasis in OS.
Main Methods:
- Tissue microarrays for KRAS expression analysis.
- In vitro assays (wound-healing, transwell) for cell migration and invasion.
- RNA sequencing, mass spectrometry, immunofluorescence, micro-CT, and in vivo bioluminescence imaging for mechanistic studies.
- In vivo lung metastasis models in mice.
Main Results:
- Downregulation of KRAS inhibited OS cell migration and invasion both in vitro and in vivo.
- Interleukin-17A (IL-17A), a key component of the IL-17 signaling pathway, was identified as a downstream target of KRAS.
- KRAS suppression reduced matrix metalloproteinases (MMP1, MMP3, MMP9), crucial for metastasis, via an IL-17A-dependent mechanism.
Conclusions:
- KRAS plays a significant role in osteosarcoma metastasis.
- The KRAS-IL-17A signaling axis is a critical pathway in OS progression.
- KRAS may serve as a potential biomarker and therapeutic target for osteosarcoma treatment.
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