A human kidney and liver organoid‐based multi‐organ‐on‐a‐chip model to study the therapeutic effects and biodistribution of mesenchymal stromal cell‐derived extracellular vesicles
Vivian V. T. Nguyen, Shicheng Ye, Vasiliki Gkouzioti, Monique E. van Wolferen, Fjodor Yousef Yengej, Dennis Melkert, Sofia Siti, Bart de Jong, Paul J. Besseling, Bart Spee, Luc J. W. van der Laan, Reyk Horland, Marianne C. Verhaar, Bas W. M. van Balkom

TL;DR
Researchers developed a human kidney and liver model to study how cell-derived vesicles heal kidney injury and spread in the body.
Contribution
A novel multi-organ-on-a-chip model using human organoids to study MSC-derived extracellular vesicles' therapeutic effects and biodistribution.
Findings
MSC-derived extracellular vesicles stimulated recovery of injured kidney epithelium.
Labelled vesicles accumulated in both injured kidney and healthy liver organoids.
The model mimics therapeutic effects and biodistribution seen in animal studies.
Abstract
Mesenchymal stromal cell (MSC)‐derived small extracellular vesicles (sEVs) show therapeutic potential in multiple disease models, including kidney injury. Clinical translation of sEVs requires further preclinical and regulatory developments, including elucidation of the biodistribution and mode of action (MoA). Biodistribution can be determined using labelled sEVs in animal models which come with ethical concerns, are time‐consuming and expensive, and may not well represent human physiology. We hypothesised that, based on developments in microfluidics and human organoid technology, in vitro multi‐organ‐on‐a‐chip (MOC) models allow us to study effects of sEVs in modelled human organs like kidney and liver in a semi‐systemic manner. Human kidney‐ and liver organoids combined by microfluidic channels maintained physiological functions, and a kidney injury model was established using…
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Taxonomy
TopicsExtracellular vesicles in disease · Renal and related cancers · Mesenchymal stem cell research
