Advanced Kidney Models In Vitro Using the Established Cell Line Renal Proximal Tubular Epithelial/Telomerase Reverse

Alodia Lacueva-Aparicio1,2, Laura Martínez-Gimeno1,3,4, Pilar Torcal1,3,4

  • 1Renal and Cardiovascular Physiopathology (FISIOPREN), Aragon Health Science Institute, 50009 Zaragoza, Spain.

Insights

New in vitro kidney models mimic renal tubules to improve drug safety testing. These models enhance preclinical nephrotoxicity assessments, identifying potential drug dangers earlier and more effectively.

Area of Science:

  • Biomedical Engineering
  • Toxicology
  • Renal Physiology

Background:

  • Nephrotoxicity is a major challenge in drug development, often detected late in clinical trials.
  • Traditional cell cultures fail to replicate kidney tissue complexity and function, leading to inaccurate toxicity predictions.
  • The kidney's susceptibility to drug-induced damage necessitates improved preclinical assessment methods.

Purpose of the Study:

  • To develop advanced in vitro kidney models that accurately mimic the renal proximal tubule.
  • To create models capable of recapitulating physiological conditions like shear stress.
  • To establish a more reliable platform for preclinical nephrotoxicity testing.

Main Methods:

  • Development of a 2.5D model for hydrogel-free tubule structure generation.
  • Implementation of a kidney-on-a-chip microfluidic model to apply physiological shear stress.
  • Utilizing RPTEC/TERT1 cell line for both model systems.
  • Testing model efficacy with known nephrotoxic compounds (cisplatin, tacrolimus, daunorubicin).

Main Results:

  • Successfully generated kidney tubule-like structures in the 2.5D model.
  • Successfully applied physiological shear stress in the kidney-on-a-chip model.
  • Observed distinct cellular responses to nephrotoxic compounds in the developed models.
  • Validated the models' potential for detecting drug-induced kidney damage.

Conclusions:

  • The developed 2.5D and kidney-on-a-chip models offer a more physiologically relevant in vitro system for kidney research.
  • These advanced models can significantly improve the early detection of drug nephrotoxicity.
  • The models represent a valuable tool for preclinical drug safety evaluation, potentially reducing late-stage trial failures.

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