Optimizing Jasplakinolide delivery in rhabdomyosarcoma cells using pulsed electric fields (PEFs) for enhanced

Anna Szewczyk1, Nina Rembiałkowska2, Marta Migocka-Patrzałek3

  • 1Department of Molecular and Cellular Biology, Faculty of Pharmacy, Wroclaw Medical University, Poland; State Research Institute Centre for Innovative Medicine, Department of Immunology and Bioelectrochemistry, Vilnius, Lithuania.

Insights

Jasplakinolide combined with electroporation shows promise for cancer therapy. This method targets cancer cells by disrupting their cytoskeleton, with minimal impact on normal cells, potentially reducing side effects.

Area of Science:

  • Biochemistry
  • Cell Biology
  • Biotechnology

Background:

  • Targeted molecule delivery is crucial for effective therapies.
  • Jasplakinolide is known to affect actin dynamics.
  • Electroporation enhances cellular uptake of molecules.

Purpose of the Study:

  • To investigate the synergistic effects of jasplakinolide and electroporation (JSP + EP) on cancer cells.
  • To assess the specificity of JSP + EP for cancer cells versus normal cells.
  • To elucidate the mechanism of action of JSP + EP on the actin cytoskeleton.

Main Methods:

  • Treatment of CHO-K1, C2C12, and RD cells with 50 nM jasplakinolide and electrical pulses (0.8-1.2 kV/cm).
  • Cell viability assessed using the MTS assay.
  • Cytoskeleton structure analyzed via confocal microscopy.
  • Jasplakinolide-actin interactions studied using molecular docking.

Main Results:

  • JSP + EP synergistically reduced viability and altered cytoskeletal structure in Rhabdomyosarcoma (RMS) cells.
  • Docking studies confirmed jasplakinolide interacts with both monomeric and filamentous actin.
  • Confocal imaging revealed significant actin cytoskeleton disruption in cancer cells, with minimal effects on normal cells.

Conclusions:

  • Jasplakinolide combined with electroporation specifically targets cancer cells.
  • This approach causes substantial actin cytoskeleton disruption in cancer cells.
  • JSP + EP offers a potential strategy for cancer treatment with reduced cytotoxicity to normal cells.