Boyden chamber-based compartmentalized tumor spheroid culture system to implement localized anticancer drug treatment

Shohei Kaneda, Jiro Kawada1, Marie Shinohara1

  • 1Center for International Research on Integrative Biomedical Systems, Institute of Industrial Science, University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo 156-0041, Japan.

Biomicrofluidics
|January 2, 2020
PubMed

Insights

Researchers developed a novel tumor spheroid culture system for localized anticancer drug treatment. This system enables simultaneous evaluation of drug effects on cell proliferation and tissue penetration, crucial for drug development.

Area of Science:

  • Biomedical Engineering
  • Cancer Research
  • Drug Development

Background:

  • Evaluating anticancer drug efficacy requires assessing both cell proliferation inhibition and tissue penetration.
  • Current methods may not efficiently integrate these assessments, hindering drug development.

Purpose of the Study:

  • To develop a compartmentalized tumor spheroid culture system for localized anticancer treatment and proliferation monitoring.
  • To validate the system's ability to perform localized drug delivery and assess treatment effects.

Main Methods:

  • A modified Boyden chamber with a parylene C-sealed through-hole was used to culture HepG2 spheroids.
  • Localized treatment was achieved by introducing tirapazamine (TPZ) to the lower compartment while maintaining compartment isolation.
  • Cell proliferation was monitored by measuring spheroid dimensions via microscopy.

Main Results:

  • The system successfully isolated the upper and lower compartments, confirmed by fluorescein transport blockage.
  • Localized tirapazamine treatment of the spheroid's lower portion was successfully executed.
  • The system allowed for the evaluation of localized TPZ's effect on cell proliferation in different spheroid regions.

Conclusions:

  • The developed compartmentalized tumor spheroid culture system facilitates localized anticancer drug treatment.
  • This system enables simultaneous evaluation of drug effects on cell proliferation and tissue penetration.
  • It offers a valuable tool for advancing anticancer drug development and discovery.

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