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Updated: Dec 24, 2025

Author Spotlight: Expression and Purification of Human Solute Carrier Transporters Using Codon-Optimized Genes
Published on: September 29, 2023
Role of SLC transporters in toxicity induced by anticancer drugs
Kevin M Huang1, Muhammad Erfan Uddin1, Duncan DiGiacomo1
1Division of Pharmaceutics and Pharmacology, College of Pharmacy and Comprehensive Cancer Center, the Ohio State University , Columbus, OH, USA.
Introduction:
. Membrane transporters are integral to the maintenance of cellular integrity of all tissue and cell types. While transporters play an established role in the systemic pharmacokinetics of therapeutic drugs, tissue specific expression of uptake transporters can serve as an initiating mechanism that governs the accumulation and impact of cytotoxic drugs.
Areas Covered:
. This review provides an overview of organic cation transporters as determinants of chemotherapy-induced toxicities. We also provide insights into the recently updated FDA guidelines for in vitro drug interaction studies, with a particular focus on the class of tyrosine kinase inhibitors as perpetrators of transporter-mediated drug interactions.
Expert Opinion:
. Studies performed over the last few decades have highlighted the important role of basolateral uptake and apical efflux transporters in the pathophysiology of drug-induced organ damage. Increased understanding of the mechanisms that govern the accumulation of cytotoxic drugs has provided insights into the development of novel strategies to prevent debilitating toxicities. Furthermore, we argue that current regulatory guidelines provide inadequate recommendations for in vitro studies to identify substrates or inhibitors of drug transporters. Therefore, the translational and predictive power of FDA-approved drugs as modulators of transport function remains ambiguous and warrants further revision of the current guidelines.
Insights
Membrane transporters significantly influence chemotherapy drug accumulation and toxicity. Understanding these transporters is crucial for developing strategies to prevent drug-induced organ damage and improve cancer treatment safety.
Area of Science:
- Pharmacology
- Cell Biology
- Toxicology
Background:
- Membrane transporters are vital for cellular integrity and drug pharmacokinetics.
- Tissue-specific transporter expression dictates cytotoxic drug accumulation and impact.
Purpose of the Study:
- Review organic cation transporters' role in chemotherapy-induced toxicities.
- Examine updated FDA guidelines for in vitro drug interaction studies, focusing on tyrosine kinase inhibitors.
Main Methods:
- Literature review of transporter roles in drug toxicity.
- Analysis of current FDA guidelines for in vitro drug interaction studies.
Main Results:
- Transporter-mediated drug interactions contribute to drug-induced organ damage.
- Tyrosine kinase inhibitors are key perpetrators of transporter-mediated drug interactions.
Conclusions:
- Enhanced understanding of drug accumulation mechanisms aids in developing toxicity prevention strategies.
- Current FDA guidelines inadequately address in vitro studies for transporter substrates/inhibitors, necessitating guideline revision.
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