CaCO 3 Nanoparticles Delivering MicroRNA-200c Suppress Oral Squamous Cell Carcinoma

Insights

This study developed a novel nanoparticle delivery system for microRNA-200c (miR-200c) to treat oral squamous cell carcinoma (OSCC). The CaCO3-based nanoparticles effectively delivered miR-200c, inhibiting OSCC growth and metastasis in preclinical models.

Area of Science:

  • Biomedical Engineering
  • Cancer Research
  • Gene Therapy

Background:

  • Oral squamous cell carcinoma (OSCC) presents high rates of recurrence, metastasis, and mortality.
  • Effective gene therapy strategies for OSCC, particularly those targeting miR-200c, are underdeveloped.

Approach:

  • Investigated CaCO3-based nanoparticles for non-viral delivery of plasmid DNA encoding miR-200c (pDNA miR-200c) into OSCC cells.
  • Optimized nanoparticle composition (CaCO3 to protamine sulfate ratio) to enhance transfection efficiency.
  • Evaluated the impact of miR-200c overexpression on OSCC proliferation, migration, oncogene expression, and in vivo tumor growth.

Key Points:

  • CaCO3-based nanoparticles demonstrated improved transfection efficiency for pDNA miR-200c.
  • The ratio of CaCO3 to protamine sulfate critically influenced transfection effectiveness.
  • Overexpression of miR-200c significantly suppressed OSCC cell proliferation, migration, and oncogene production.
  • Local administration of pDNA miR-200c via CaCO3 nanoparticles reduced tumor growth in mouse models.

Conclusions:

  • CaCO3/pDNA miR-200c nanocomplexes show potential as a therapeutic strategy for OSCC.
  • This approach may reduce oral cancer recurrence and metastasis, improving patient outcomes.

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