Literature DB >> 20352022

Single cell trapping in larger microwells capable of supporting cell spreading and proliferation.

Joong Yull Park1, Mina Morgan, Aaron N Sachs, Julia Samorezov, Ryan Teller, Ye Shen, Kenneth J Pienta, Shuichi Takayama.   

Abstract

Conventional cell trapping methods using microwells with small dimensions (10-20 μm) are useful for examining the instantaneous cell response to reagents; however, such wells have insufficient space for longer duration screening tests that require observation of cell attachment and division. Here we describe a flow method that enables single cell trapping in microwells with dimensions of 50 μm, a size sufficient to allow attachment and division of captured cells. Among various geometries tested, triangular microwells were found to be most efficient for single cell trapping while providing ample space for cells to grow and spread. An important trapping mechanism is the formation of fluid streamlines inside, rather than over, the microwells. A strong flow recirculation occurs in the triangular microwell so that it efficiently catches cells. Once a cell is captured, the cell presence in the microwell changes the flow pattern, thereby preventing trapping of other cells. About 62% of microwells were filled with single cells after a 20 min loading procedure. Human prostate cancer cells (PC3) were used for validation of our system.

Entities:  

Year:  2010        PMID: 20352022      PMCID: PMC2845479          DOI: 10.1007/s10404-009-0503-9

Source DB:  PubMed          Journal:  Microfluid Nanofluidics        ISSN: 1613-4982            Impact factor:   2.529


  17 in total

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Authors:  I Inoue; Y Wakamoto; H Moriguchi; K Okano; K Yasuda
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Journal:  Lab Chip       Date:  2007-04-16       Impact factor: 6.799

Review 5.  Microfluidic single-cell analysis of intracellular compounds.

Authors:  Tzu-Chiao Chao; Alexandra Ros
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7.  A theoretical model study of the influence of fluid stresses on a cell adhering to a microchannel wall.

Authors:  D P Gaver; S M Kute
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8.  Controlling size, shape and homogeneity of embryoid bodies using poly(ethylene glycol) microwells.

Authors:  Jeffrey M Karp; Judy Yeh; George Eng; Junji Fukuda; James Blumling; Kahp-Yang Suh; Jianjun Cheng; Alborz Mahdavi; Jeffrey Borenstein; Robert Langer; Ali Khademhosseini
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10.  Reproducible, ultra high-throughput formation of multicellular organization from single cell suspension-derived human embryonic stem cell aggregates.

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  13 in total

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Review 3.  Technology advancement for integrative stem cell analyses.

Authors:  Yoon Jeong; Jonghoon Choi; Kwan Hyi Lee
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4.  A Microfluidic Platform for High-throughput Single-cell Isolation and Culture.

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6.  A passive-flow microfluidic device for imaging latent HIV activation dynamics in single T cells.

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Review 7.  Microfluidic systems for hydrodynamic trapping of cells and clusters.

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8.  Development of a single-cell array for large-scale DNA fluorescence in situ hybridization.

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Review 9.  A new toolbox for assessing single cells.

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