Renal Microphysiological Model

A renal microphysiological model is an engineered in vitro system that recreates key structural and functional features of kidney tissue, providing a controlled platform for studying renal physiology and disease. Typically, human kidney cells, such as tubular epithelial or glomerular cells, are cultured in microfluidic compartments exposed to continuous fluid perfusion, which generates shear stress, concentration gradients, and cell-to-cell interactions that influence filtration and solute transport. These models support investigation of kidney injury, drug-induced nephrotoxicity, and disease mechanisms while offering more physiologically relevant results than static cell cultures. They may also improve preclinical drug testing and guide the development of personalized renal therapies.

Renal Microphysiological Model - Related Videos

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JoVE Journal - Medicine

Isolation of Primary Human Proximal Tubule Epithelial Cells and Their Use in Creating a Microphysiological Model of the Renal Proximal Tubule

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Cited by 3 •

2025

We present an optimized protocol for processing whole human kidneys to isolate and culture primary renal proximal tubule epithelial cells and the application of these cells in a three-dimensional, microfluidic, microphysiological platform to recapitulate the renal proximal tubule.

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JoVE Journal - Medicine
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Heterotopic Renal Autotransplantation in a Porcine Model: A Step-by-Step Protocol

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Cited by 24 •

2016

Porcine models of organ transplantation provide an important platform to study mechanisms of organ preservation. This article describes a heterotopic porcine renal autotransplantation model, which allows investigating new approaches to improve the outcome of transplantation using marginal kidney grafts.

Research

JoVE Journal - Medicine
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Early Detection of Drug-Induced Renal Hemodynamic Dysfunction Using Sonographic Technology in Rats

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Cited by 14 •

2016

Early stage hemodynamic dysfunction is critical to the development of kidney disease. Yet, detection methodologies are limited. Recent advances in sonography provide a noninvasive, accurate option for early detection of kidney injury. This study outlines a step-by-step, sonographic methodology for detecting kidney dysfunction using a drug-induced nephrotoxicity rat model.

Modeling Breast Cancer in Human Breast Tissue using a Microphysiological System

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Cited by 5 •

2021

This protocol describes the construction of an in vitro microphysiological system for studying breast cancer using primary human breast tissue with off the shelf materials.

Modeling Spontaneous Metastatic Renal Cell Carcinoma (mRCC) in Mice Following Nephrectomy

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Cited by 23 •

2014

Models of spontaneous metastatic renal cell carcinoma (RCC) disease progression can be used for evaluating treatments in a clinically relevant setting. This protocol demonstrates different procedures for orthotopic kidney tumor cell implantation, proper nephrectomy, and finally outlines a necropsy guide for visual and bioluminescent scoring of metastatic burden and localization.

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