Issue 9, 2023

A multiscale, vertical-flow perfusion system with integrated porous microchambers for upgrading multicellular spheroid culture

Abstract

Spheroid formation assisted by microengineered chambers is a versatile approach for morphology-controlled three-dimensional (3D) cell cultivation with physiological relevance to human tissues. However, the limitation in diffusion-based oxygen/nutrient transport has been a critical issue for the densely packed cells in spheroids, preventing maximization of cellular functions and thus limiting their biomedical applications. Here, we have developed a multiscale microfluidic system for the perfusion culture of spheroids, in which porous microchambers, connected with microfluidic channels, were engineered. A newly developed process of centrifugation-assisted replica molding and salt-leaching enabled the formation of single micrometer-sized pores on the chamber surface and in the substrate. The porous configuration generates a vertical flow to directly supply the medium to the spheroids, while avoiding the formation of stagnant flow regions. We created seamlessly integrated, all PDMS/silicone-based microfluidic devices with an array of microchambers. Spheroids of human liver cells (HepG2 cells) were formed and cultured under vertical-flow perfusion, and the proliferation ability and liver cell-specific functions were compared with those of cells cultured in non-porous chambers with a horizontal flow. The presented system realizes both size-controlled formation of spheroids and direct medium supply, making it suitable as a precision cell culture platform for drug development, disease modelling, and regenerative medicine.

Graphical abstract: A multiscale, vertical-flow perfusion system with integrated porous microchambers for upgrading multicellular spheroid culture

Supplementary files

Article information

Article type
Paper
Submitted
28 Feb 2023
Accepted
27 Mar 2023
First published
27 Mar 2023
This article is Open Access
Creative Commons BY-NC license

Lab Chip, 2023,23, 2257-2267

A multiscale, vertical-flow perfusion system with integrated porous microchambers for upgrading multicellular spheroid culture

M. Takagi, M. Yamada, R. Utoh and M. Seki, Lab Chip, 2023, 23, 2257 DOI: 10.1039/D3LC00168G

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