Literature DB >> 18231664

Dynamic microarray system with gentle retrieval mechanism for cell-encapsulating hydrogel beads.

Wei-Heong Tan1, Shoji Takeuchi.   

Abstract

This paper describes a selective retrieval method for arrayed monodisperse hydrogel beads containing cells. We implemented modifications such as: (i) the incorporation of cavities as nucleation sites, (ii) indirect retrieval using bubble powered jets and (iii) the use of low boiling point fluid in our device to realize a gentle optical-based retrieval method. Parametric studies confirmed that these modifications dramatically reduced both the intensity and duration of applied laser for bubble formation. We also demonstrated for the first time the formation of a bead-based dynamic cell microarray by introducing cell-encapsulating alginate beads into our dynamic microfluidic system, and successfully retrieved an alginate bead from a fluidic trap. Tests with trypan blue revealed that membrane integrity of the encapsulated cells was not compromised by the retrieval process.

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Year:  2007        PMID: 18231664     DOI: 10.1039/b714573j

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  18 in total

1.  New rationale for large metazoan embryo manipulations on chip-based devices.

Authors:  Khashayar Khoshmanesh; Jin Akagi; Chris J Hall; Kathryn E Crosier; Philip S Crosier; Jonathan M Cooper; Donald Wlodkowic
Journal:  Biomicrofluidics       Date:  2012-04-03       Impact factor: 2.800

2.  A high-efficiency microfluidic device for size-selective trapping and sorting.

Authors:  Jinho Kim; Jessey Erath; Ana Rodriguez; Changhuei Yang
Journal:  Lab Chip       Date:  2014-07-21       Impact factor: 6.799

3.  Exploitation of physical and chemical constraints for three-dimensional microtissue construction in microfluidics.

Authors:  Deepak Choudhury; Xuejun Mo; Ciprian Iliescu; Loo Ling Tan; Wen Hao Tong; Hanry Yu
Journal:  Biomicrofluidics       Date:  2011-06-29       Impact factor: 2.800

4.  Microengineering methods for cell-based microarrays and high-throughput drug-screening applications.

Authors:  Feng Xu; JinHui Wu; ShuQi Wang; Naside Gozde Durmus; Umut Atakan Gurkan; Utkan Demirci
Journal:  Biofabrication       Date:  2011-07-01       Impact factor: 9.954

5.  High-efficiency rare cell identification on a high-density self-assembled cell arrangement chip.

Authors:  Tsung-Ju Chen; Jen-Kuei Wu; Yu-Cheng Chang; Chien-Yu Fu; Tsung-Pao Wang; Chun-Yen Lin; Hwan-You Chang; Ching-Chang Chieng; Chung-Yuh Tzeng; Fan-Gang Tseng
Journal:  Biomicrofluidics       Date:  2014-05-12       Impact factor: 2.800

6.  Multiphase ferrofluid flows for micro-particle focusing and separation.

Authors:  Ran Zhou; Cheng Wang
Journal:  Biomicrofluidics       Date:  2016-05-05       Impact factor: 2.800

7.  A Role for 3D Printing in Kidney-on-a-Chip Platforms.

Authors:  Ryan D Sochol; Navin R Gupta; Joseph V Bonventre
Journal:  Curr Transplant Rep       Date:  2016-01-20

8.  A programmable microfluidic platform for multisample injection, discretization, and droplet manipulation.

Authors:  Hesam Babahosseini; Supriya Padmanabhan; Tom Misteli; Don L DeVoe
Journal:  Biomicrofluidics       Date:  2020-02-05       Impact factor: 2.800

9.  A microfluidic array for real-time live-cell imaging of human and rodent pancreatic islets.

Authors:  Mohammad Nourmohammadzadeh; Yuan Xing; Jin Wuk Lee; Matthew A Bochenek; Joshua E Mendoza-Elias; James J McGarrigle; Enza Marchese; Yeh Chun-Chieh; David T Eddington; José Oberholzer; Yong Wang
Journal:  Lab Chip       Date:  2016-04-21       Impact factor: 6.799

10.  Microfluidic array with integrated oxygenation control for real-time live-cell imaging: effect of hypoxia on physiology of microencapsulated pancreatic islets.

Authors:  Mohammad Nourmohammadzadeh; Joe F Lo; Matt Bochenek; Joshua E Mendoza-Elias; Qian Wang; Ze Li; Liyi Zeng; Merigeng Qi; David T Eddington; José Oberholzer; Yong Wang
Journal:  Anal Chem       Date:  2013-11-15       Impact factor: 6.986

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