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Porous microwells for geometry-selective, large-scale microparticle arrays

Authors
Kim, Jae JungBong, Ki WanReategui, EduardoIrimia, DanielDoyle, Patrick S.
Issue Date
1월-2017
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE MATERIALS, v.16, no.1, pp.139 - 146
Indexed
SCIE
SCOPUS
Journal Title
NATURE MATERIALS
Volume
16
Number
1
Start Page
139
End Page
146
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/85118
DOI
10.1038/NMAT4747
ISSN
1476-1122
Abstract
Large-scale microparticle arrays (LSMAs) are key for material science and bioengineering applications. However, previous approaches suffer from trade-offs between scalability, precision, specificity and versatility. Here, we present a porous microwell-based approach to create large-scale microparticle arrays with complex motifs. Microparticles are guided to and pushed into microwells by fluid flow through small open pores at the bottom of the porous well arrays. A scaling theory allows for the rational design of LSMAs to sort and array particles on the basis of their size, shape, or modulus. Sequential particle assembly allows for proximal and nested particle arrangements, as well as particle recollection and pattern transfer. We demonstrate the capabilities of the approach by means of three applications: high-throughput single-cell arrays; microenvironment fabrication for neutrophil chemotaxis; and complex, covert tags by the transfer of an upconversion nanocrystal-laden LSMA.
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