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3D Multicellular Tumor Spheroids in a Microfluidic Droplet System for Investigation of Drug Resistance.

Sang Ik LeeYoon Young ChoiSeong Goo KangTae Hyeon KimJi Wook ChoiYoung Jae KimTae-Hyung KimTaewook KangBong Geun Chung
Published in: Polymers (2022)
A three-dimensional (3D) tumor spheroid model plays a critical role in mimicking tumor microenvironments in vivo. However, the conventional culture methods lack the ability to manipulate the 3D tumor spheroids in a homogeneous manner. To address this limitation, we developed a microfluidic-based droplet system for drug screening applications. We used a tree-shaped gradient generator to control the cell density and encapsulate the cells within uniform-sized droplets to generate a 3D gradient-sized tumor spheroid. Using this microfluidic-based droplet system, we demonstrated the high-throughput generation of uniform 3D tumor spheroids containing various cellular ratios for the analysis of the anti-cancer drug cytotoxicity. Consequently, this microfluidic-based gradient droplet generator could be a potentially powerful tool for anti-cancer drug screening applications.
Keyphrases
  • high throughput
  • single cell
  • circulating tumor cells
  • emergency department
  • stem cells
  • induced apoptosis
  • oxidative stress
  • cell death
  • cell therapy
  • cell proliferation
  • bone marrow
  • drug induced