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Updated: Jan 25, 2026

A Preclinical Mouse Model of Osteosarcoma to Define the Extracellular Vesicle-mediated Communication Between Tumor and Mesenchymal Stem Cells
Published on: May 6, 2018
miR-328-3p mediates the anti-tumor effect in osteosarcoma via directly targeting MMP-16
Jianhui Shi1,2, Gang An1, Ying Guan1
11Department of Spine Surgery, The First Affiliated Hospital of Harbin Medical University, Harbin, 150001 Heilongjiang Province China.
Background:
Increasing reports demonstrated that dysregulated expression of microRNAs (miRNAs) leads to the progression of various tumors. Previous studies revealed that miR-328-3p exhibited dysregulated expression in various types of tumors. However, its function and underlying mechanism in osteosarcoma (OS) are still unexplored.
Methods:
The expression of miR-328-3p in the tissues and OS cell lines was detected by qRT-PCR analysis. The effects of miR-328-3p in the proliferation were analyzed by MTT assay. The proliferation and apoptosis of OS cells were examined by colony formation assay and TUNEL staining respectively. The migration and tumor formation ability of OS cells were measured by wound healing assay and xenograft in vivo mice assay. Furthermore, the regulatory roles of miR-328-3p/MMP16 were determined by western blot and luciferase reporter assay.
Results:
The expression of miR-328-3p was significantly decreased in OS tissues and cell lines. Furthermore, overexpression of miR-328-3p inhibited the cell proliferation and migration, but promoted the apoptosis of OS cells in vitro. Moreover, the analysis in vivo showed that miR-328-3p effectively suppressed the formation of tumors. According to the results of western blot analysis and luciferase reporter assay, we identified matrix metalloproteinase-16 (MMP-16) acted as a direct target of miR-328-3p. Moreover, the expression level of MMP-16, which participates in the occurrence and development of many cancers, was negatively correlated with the miR-328-3p expression in OS cells.
Conclusion:
miR-328-3p inhibited the proliferation, migration but accelerated the apoptosis of OS by directly inhibiting MMP-16. And miR-328-3p/MMP-16 axis may be one of the mechanisms of OS development and a novel potential method for the treatment of OS in clinic.
Insights
MicroRNA-328-3p (miR-328-3p) is downregulated in osteosarcoma (OS). Overexpression of miR-328-3p inhibits OS cell proliferation and migration by targeting MMP-16, suggesting a potential therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Dysregulated microRNA (miRNA) expression is linked to tumor progression.
- miR-328-3p shows altered expression across various cancers.
- Its specific role and mechanism in osteosarcoma (OS) remain uninvestigated.
Purpose of the Study:
- To elucidate the function of miR-328-3p in osteosarcoma (OS).
- To investigate the underlying molecular mechanism of miR-328-3p in OS.
- To explore the potential of miR-328-3p as a therapeutic target for OS.
Main Methods:
- Quantitative real-time PCR (qRT-PCR) to assess miR-328-3p expression in OS tissues and cell lines.
- In vitro assays (MTT, colony formation, TUNEL staining, wound healing) to evaluate proliferation, apoptosis, and migration.
- In vivo xenograft mouse models to assess tumor formation.
- Western blot and luciferase reporter assays to determine the interaction between miR-328-3p and MMP-16.
Main Results:
- miR-328-3p expression was significantly reduced in OS tissues and cell lines.
- Overexpression of miR-328-3p suppressed OS cell proliferation and migration while enhancing apoptosis in vitro.
- In vivo studies confirmed that miR-328-3p inhibited tumor formation.
- Matrix metalloproteinase-16 (MMP-16) was identified as a direct target of miR-328-3p, with inverse correlation in expression levels.
Conclusions:
- miR-328-3p exerts tumor-suppressive effects in OS by inhibiting proliferation and migration and promoting apoptosis.
- The miR-328-3p/MMP-16 axis plays a crucial role in OS development.
- miR-328-3p represents a promising therapeutic target for osteosarcoma treatment.
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