Microphysiological Systems to Recapitulate the Gut–Kidney Axis

Publication date

2021-08

Authors

Giordano, LauraISNI 0000000506582088
Mihăilă, Silvia M.ISNI 0000000492912639
Eslami Amirabadi, HosseinISNI 0000000492853253
Masereeuw, RosalindeORCID 0000-0002-1560-1074ISNI 0000000369326917

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Chronic kidney disease (CKD) typically appears alongside other comorbidities, highlighting an underlying complex pathophysiology that is thought to be vastly modulated by the bidirectional gut–kidney crosstalk. By combining advances in tissue engineering, biofabrication, microfluidics, and biosensors, microphysiological systems (MPSs) have emerged as promising approaches for emulating the in vitro interconnection of multiple organs, while addressing the limitations of animal models. Mimicking the (patho)physiological states of the gut–kidney axis in vitro requires an MPS that can simulate not only this direct bidirectional crosstalk but also the contributions of other physiological participants such as the liver and the immune system. We discuss recent developments in the field that could potentially lead to in vitro modeling of the gut–kidney axis in CKD.

Keywords

chronic kidney disease, gut–kidney axis, microphysiological systems, remote signaling, uremic toxins, Biotechnology, Bioengineering

Citation

Giordano, L, Mihaila, S M, Eslami Amirabadi, H & Masereeuw, R 2021, 'Microphysiological Systems to Recapitulate the Gut–Kidney Axis', Trends in Biotechnology, vol. 39, no. 8, pp. 811-823. https://doi.org/10.1016/j.tibtech.2020.12.001