Interaction of Masitinib with Organic Cation Transporters

Saliha Harrach1, Jasmin Haag1, Martin Steinbüchel1

  • 1Experimental Nephrology, Department of Internal Medicine D, University Hospital Münster, 48149 Münster, Germany.

Insights

Masitinib, a tyrosine kinase inhibitor, effectively enters cells via organic cation transporters (OCTs). Researchers found OCT1 and OCT2 are key transporters for Masitinib, though differences exist between mouse and human transporters.

Area of Science:

  • Pharmacology
  • Molecular Biology
  • Cell Biology

Background:

  • Tyrosine kinase inhibitors (TKIs) like Masitinib show therapeutic potential for various diseases, including COVID-19.
  • Drug efficacy depends on cellular uptake, often mediated by specific transporter proteins.
  • Masitinib, an organic cation, is hypothesized to interact with organic cation transporters (OCTs) and Multidrug and Toxin Extrusion proteins (MATEs).

Purpose of the Study:

  • To characterize the interaction between Masitinib and various organic cation transporters (OCTs).
  • To identify the specific transporters responsible for Masitinib's cellular uptake.
  • To investigate species-specific differences in Masitinib-transporter interactions.

Main Methods:

  • Utilized human embryonic kidney 293 cells stably transfected with murine or human OCTs.
  • Investigated Masitinib's interaction with OCTs using quenching experiments.
  • Quantified intracellular Masitinib accumulation via high-performance liquid chromatography.

Main Results:

  • Masitinib demonstrated interactions with most investigated mouse (m) and human (h) OCTs, as well as hMATE1.
  • Human OCT1 and OCT2 were identified as particularly potent translocators of Masitinib across cell membranes.
  • Significant differences were observed in Masitinib's interaction with murine versus human OCTs.

Conclusions:

  • Masitinib uptake is significantly influenced by OCT and MATE transporter expression.
  • OCT1 and OCT2 play crucial roles in Masitinib's cellular entry.
  • Further research into transporter-mediated uptake under pathophysiological conditions is warranted for optimized Masitinib therapy.

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