# 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

**Authors:** 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

PMC · DOI: 10.1002/jev2.12280 · 2022-11-16

## 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.

## Key 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 hydrogenperoxide. MSC‐sEVs were isolated, and their size, density and potential contamination were analysed. These sEVs stimulated recovery of the renal epithelium after injury. Microscopic analysis shows increased accumulation of PKH67‐labelled sEVs not only in injured kidney cells, but also in the unharmed liver organoids, compared to healthy control conditions. In conclusion, this new MOC model recapitulates therapeutic efficacy and biodistribution of MSC‐sEVs as observed in animal models. Its human background allows for in‐depth analysis of the MoA and identification of potential side effects.

## Linked entities

- **Chemicals:** hydrogenperoxide (PubChem CID 784)

## Full-text entities

- **Genes:** SLC5A2 (solute carrier family 5 member 2) [NCBI Gene 6524] {aka SGLT2}, TGFB1 (transforming growth factor beta 1) [NCBI Gene 7040] {aka CAEND1, CED, DPD1, IBDIMDE, LAP, TGF-beta1}, TF (transferrin) [NCBI Gene 7018] {aka HEL-S-71p, PRO1557, PRO2086, TFQTL1}, Ptprc (protein tyrosine phosphatase receptor type C) [NCBI Gene 19264] {aka B220, CD45R, Cd45, L-CA, Ly-5, Lyt-4}, Cd14 (CD14 antigen) [NCBI Gene 12475], Nt5e (5' nucleotidase, ecto) [NCBI Gene 23959] {aka 2210401F01Rik, 5'-NT, CD73, NT, Nt5, eNT}, Krt19 (keratin 19) [NCBI Gene 16669] {aka CK-19, EndoC, K19, Krt-1.19, Krt1-19}, Thy1 (thymus cell antigen 1, theta) [NCBI Gene 21838] {aka CD90, T25, Thy-1, Thy-1.2, Thy1.1, Thy1.2}, Ass1 (argininosuccinate synthetase 1) [NCBI Gene 11898] {aka ASS, Ass-1, fold}, Itgam (integrin alpha M) [NCBI Gene 16409] {aka CD11b/CD18, CR3, CR3A, Cd11b, F730045J24Rik, Ly-40}, SLC22A2 (solute carrier family 22 member 2) [NCBI Gene 6582] {aka OCT2}, HNF4A (hepatocyte nuclear factor 4 alpha) [NCBI Gene 3172] {aka FRTS4, HNF4, HNF4a7, HNF4a8, HNF4a9, HNF4alpha}, RSPO3 (R-spondin 3) [NCBI Gene 84870] {aka CRISTIN1, PWTSR, THSD2}, Lmna (lamin A) [NCBI Gene 16905] {aka Dhe}, BMP7 (bone morphogenetic protein 7) [NCBI Gene 655] {aka OP-1}, Cdh1 (cadherin 1) [NCBI Gene 12550] {aka ARC-1, E-cad, Ecad, L-CAM, UVO, Um}, FGF19 (fibroblast growth factor 19) [NCBI Gene 9965], CYP1A2 (cytochrome P450 family 1 subfamily A member 2) [NCBI Gene 1544] {aka CP12, CYPIA2, P3-450, P450(PA)}, LGR5 (leucine rich repeat containing G protein-coupled receptor 5) [NCBI Gene 8549] {aka FEX, GPR49, GPR67, GRP49, HG38}, Eng (endoglin) [NCBI Gene 13805] {aka CD105, Endo, S-endoglin}, ASS1 (argininosuccinate synthase 1) [NCBI Gene 445] {aka ASS, CTLN1}, ABCB1 (ATP binding cassette subfamily B member 1) [NCBI Gene 5243] {aka ABC20, CD243, CLCS, ENPAT, GP170, MDR1}, CYP3A4 (cytochrome P450 family 3 subfamily A member 4) [NCBI Gene 1576] {aka CP33, CP34, CYP3A, CYP3A3, CYPIIIA3, CYPIIIA4}, TOMM20 (translocase of outer mitochondrial membrane 20) [NCBI Gene 9804] {aka MAS20, MOM19, TOM20}, FGF10 (fibroblast growth factor 10) [NCBI Gene 2255] {aka LADD3}, Tjp1 (tight junction protein 1) [NCBI Gene 21872] {aka ZO1}, GAST (gastrin) [NCBI Gene 2520] {aka GAS}, ALB (albumin) [NCBI Gene 213] {aka FDAHT, HSA, PRO0883, PRO0903, PRO1341}, HAVCR1 (hepatitis A virus cellular receptor 1) [NCBI Gene 26762] {aka CD365, HAVCR, HAVCR-1, KIM-1, KIM1, TIM}, LRP2 (LDL receptor related protein 2) [NCBI Gene 4036] {aka DBS, GP330, LRP-2}, ABCC2 (ATP binding cassette subfamily C member 2) [NCBI Gene 1244] {aka ABC30, CMOAT, DJS, MRP2, cMRP}, INS (insulin) [NCBI Gene 3630] {aka IDDM, IDDM1, IDDM2, ILPR, IRDN, MODY10}, GAPDH (glyceraldehyde-3-phosphate dehydrogenase) [NCBI Gene 2597] {aka G3PD, GAPD, HEL-S-162eP}, Cd34 (CD34 antigen) [NCBI Gene 12490], Gapdh (glyceraldehyde-3-phosphate dehydrogenase) [NCBI Gene 14433] {aka Gapd}, SLC2A2 (solute carrier family 2 member 2) [NCBI Gene 6514] {aka GLUT2}, NOG (noggin) [NCBI Gene 9241] {aka SYM1, SYNS1, SYNS1A}, EGF (epidermal growth factor) [NCBI Gene 1950] {aka HOMG4, URG}, Tomm20 (translocase of outer mitochondrial membrane 20) [NCBI Gene 67952] {aka 1810060K07Rik, Gm19268, MAS20, MOM19, TOM20, mKIAA0016}, CDH1 (cadherin 1) [NCBI Gene 999] {aka Arc-1, BCDS1, CD324, CDHE, ECAD, LCAM}, HGF (hepatocyte growth factor) [NCBI Gene 3082] {aka DFNB39, F-TCF, HGFB, HPTA, SF}, CUBN (cubilin) [NCBI Gene 8029] {aka IFCR, IGS, IGS1, MGA1, gp280}, KRT19 (keratin 19) [NCBI Gene 3880] {aka CK19, K19, K1CS}, Hnf4a (hepatic nuclear factor 4, alpha) [NCBI Gene 15378] {aka HNF-4, Hnf4, Hnf4alpha, MODY1, Nr2a1, TCF-14}, MRAP (melanocortin 2 receptor accessory protein) [NCBI Gene 56246] {aka B27, C21orf61, FALP, GCCD2, MRAP1}, SLC22A6 (solute carrier family 22 member 6) [NCBI Gene 9356] {aka HOAT1, OAT1, PAHT, ROAT1}, Flot1 (flotillin 1) [NCBI Gene 14251] {aka reggie-2}, ATP5PF (ATP synthase peripheral stalk subunit F6) [NCBI Gene 522] {aka ATP5, ATP5A, ATP5J, ATPM, CF6, F6}
- **Diseases:** kidney cancer (MESH:D007680), cirrhosis (MESH:D005355), MOC (MESH:D000092124), cancer (MESH:D009369), DM (MESH:D009223), injury to renal tubular cells (MESH:D002280), inflammatory (MESH:D007249), liver (MESH:D017093), Kidney injury (MESH:D007674), liver, heart, and kidney disease (MESH:D006331), acute injury (MESH:D001930), renal epithelial injury (MESH:D009375), ischemia (MESH:D007511), toxicity (MESH:D064420), renal tubuloids (MESH:D006030), AKI (MESH:D058186), cellular injury (MESH:D004806), injury (MESH:D014947), cardiac, cochlear and renal disease (MESH:D015834), oxidative damage (MESH:D004194), graft versus host disease (MESH:D006086)
- **Chemicals:** urea (MESH:D014508), 3-Isobutyl-1-methylxanthine (MESH:D015056), H2O2 (MESH:D006861), N-acetyl-L-cysteine (MESH:D000111), MK571 (MESH:C059141), sodium azide (MESH:D019810), SDS (MESH:D012967), GlutaMax (MESH:C054122), isopropanol (MESH:D019840), DM (MESH:D003907), EDTA (MESH:D004492), glucose (MESH:D005947), paraformaldehyde (MESH:C003043), inulin (MESH:D007444), cisplatin (MESH:D002945), L-ascorbic acid (MESH:D001205), Indomethacin (MESH:D007213), glycerol (MESH:D005990), paraffin (MESH:D010232), NH4Cl (MESH:D000643), Rhodamine 123 (MESH:D020112), DAPI (MESH:C007293), beta-glycerophosphate (MESH:C031463), PBS (MESH:D007854), DAB (MESH:C000469), water (MESH:D014867), CDFDA (-), Safranin-O (MESH:C009195), A83-01 (MESH:C507011), Trizol (MESH:C411644), N2 (MESH:D009584), Y-27632 (MESH:C108830), PKH67 (MESH:C451241), MSC (MESH:C002979), Alizarin Red S (MESH:C004468), Triton X-100 (MESH:D017830), Alexa Fluor 488 (MESH:C000711379), Alexa Fluor 555 (MESH:C000608607), ROS (MESH:D017382), ethanol (MESH:D000431), hematoxylin (MESH:D006416), CO2 (MESH:D002245), HEPES (MESH:D006531), Verapamil (MESH:D014700), SYBR Green (MESH:C098022), xylene (MESH:D014992), Oil red O (MESH:C011049), streptomycin (MESH:D013307), HCl (MESH:D006851), Periodic acid (MESH:D010504), Sucrose (MESH:D013395), Alexa Fluor647 (MESH:C569686), Glycogen (MESH:D006003), nicotinamide (MESH:D009536), forskolin (MESH:D005576), alpha MEM (MESH:C420642), CDF (MESH:C035000), penicillin (MESH:D010406)
- **Species:** Homo sapiens (human, species) [taxon 9606], Sus scrofa (pig, species) [taxon 9823], Oryctolagus cuniculus (domestic rabbit, species) [taxon 9986], Mus musculus (house mouse, species) [taxon 10090]
- **Cell lines:** S2 — Drosophila melanogaster (Fruit fly), Spontaneously immortalized cell line (CVCL_Z232), Chip2 — Homo sapiens (Human), Induced pluripotent stem cell (CVCL_E011)

## Figures

4 figures with captions in the complete paper: https://tomesphere.com/paper/PMC9667402/full.md

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Source: https://tomesphere.com/paper/PMC9667402