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Multi-size spheroid formation using microfluidic funnels

delete2018-01-01
delete60
PRE
AI
M
Mohana Marimuthu
N
Nassim Rousset
A
Amélie St‐Georges‐Robillard
M
M. A. Lateef
M
M. Ferland
A
Anne‐Marie Mes‐Masson
T
Thomas Gervais *
DOI:10.1039/c7lc00970ddelete
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Abstract

Abstract

En 中文
We present a microfluidic platform for automatic multi-size spheroid formation within constant volume hanging droplets (HDs) from a single inlet loading of a constant cell concentration. The platform introduces three technological improvements over the existing spheroid formation platforms: 1) cell seeding control is achieved by enrichment of a cell solution rather than dilution; 2) cell seeding in each HD is fully independent and pre-programmable at the design stage; 3) the fabricated chip operates well using a hydrophobic PDMS surface, ensuring long-term storage possibility for device usage. Pre-programmed cell seeding densities at each HD are achieved using a microfluidic funnel layer, which has an array of cone-shaped wells with increasing apex angles acting as a metering unit. The integrated platform is designed to form, treat, stain, and image multi-size spheroids on-chip. Spheroids can be analyzed on-chip or easily transferred to conventional well plates for further processing. Empirically, enrichment factors up to 37x have been demonstrated, resulting in viable spheroids of diameters ranging from 230-420 mu m and 280-530 mu m for OV90 and TOV112D cell lines, respectively. We envision that microfluidic funnels and single inlet multi-size spheroid (SIMSS) chips will find broad application in 3D biological assays where size-dependent responses are expected, including chemoresponse assays, photodynamic therapy assays, and other assays involving drug transport characterization in drug discovery.
Keywords:
TUMOR SPHEROIDS
CELL-CULTURE
DRUG-RESISTANCE
THERAPY
MODEL
BIOLOGY
SYSTEM
CHIP

Journal

L
Lab on a Chip
IF:
5.4
Papers:
9.0K
Citations:
3.3W

Organization

U
universite de montreal
Scholars:
4.6W
Papers: 3.8W
Citations: 46