4.4 Article

A multilayer microdevice for cell-based high-throughput drug screening

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Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0960-1317/22/6/065008

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Funding

  1. National Natural Science Foundation of China [20890024, 91023017, 91023046, 51105060]
  2. Major State Basic Research Development Program of China [2007CB714502]
  3. China Postdoctoral Science Foundation [20100481237, 201104601]

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A multilayer polydimethylsiloxane microdevice for cell-based high-throughput drug screening is described in this paper. This established microdevice was based on a modularization method and it integrated a drug/medium concentration gradient generator (CGG), pneumatic microvalves and a cell culture microchamber array. The CGG was able to generate five steps of linear concentrations with the same outlet flow rate. The medium/drug flowed through CGG and then into the pear-shaped cell culture microchambers vertically. This vertical perfusion mode was used to reduce the impact of the shear stress on the physiology of cells induced by the fluid flow in the microchambers. Pear-shaped microchambers with two arrays of miropillars at each outlet were adopted in this microdevice, which were beneficial to cell distribution. The chemotherapeutics Cisplatin (DDP)-induced Cisplatin-resistant cell line A549/DDP apoptotic experiments were performed well on this platform. The results showed that this novel microdevice could not only provide well-defined and stable conditions for cell culture, but was also useful for cell-based high-throughput drug screening with less reagents and time consumption.

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