Issue 6, 2024

On-chip droplet analysis and cell spheroid screening by capillary wrapping enabled shape-adaptive ferrofluid transporters

Abstract

Non-invasive droplet manipulation with no physical damage to the sample is important for the practical value of manipulation tools in multidisciplinary applications from biochemical analysis and diagnostics to cell engineering. It is a challenge to achieve this for most existing photothermal, electric stimuli, and magnetic field-based technologies. Herein, we present a droplet handling toolbox, the ferrofluid transporter, for non-invasive droplet manipulation in an oil environment. It involves the transport of droplets with high robustness and efficiency owing to low interfacial friction. This capability caters to various scenarios including droplets with varying components and solid cargo. Moreover, we fabricated a droplet array by transporter positioning and achieved droplet gating and sorting for complex manipulation in the droplet array. Benefiting from the ease of scale-up and high biocompatibility, the transporter-based droplet array can serve as a digital microfluidic platform for on-chip droplet-based bioanalysis, cell spheroid culture, and downstream drug screening tests.

Graphical abstract: On-chip droplet analysis and cell spheroid screening by capillary wrapping enabled shape-adaptive ferrofluid transporters

Supplementary files

Article information

Article type
Paper
Submitted
21 Oct 2023
Accepted
30 Jan 2024
First published
31 Jan 2024
This article is Open Access
Creative Commons BY-NC license

Lab Chip, 2024,24, 1782-1793

On-chip droplet analysis and cell spheroid screening by capillary wrapping enabled shape-adaptive ferrofluid transporters

X. Wang, X. Li, A. Pu, H. B. Shun, C. Chen, L. Ai, Z. Tan, J. Zhang, K. Liu, J. Gao, K. Ban and X. Yao, Lab Chip, 2024, 24, 1782 DOI: 10.1039/D3LC00906H

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