Literature DB >> 23952342

Platform for high-throughput testing of the effect of soluble compounds on 3D cell cultures.

Frédérique Deiss1, Aaron Mazzeo, Estrella Hong, Donald E Ingber, Ratmir Derda, George M Whitesides.   

Abstract

In vitro 3D culture could provide an important model of tissues in vivo, but assessing the effects of chemical compounds on cells in specific regions of 3D culture requires physical isolation of cells and thus currently relies mostly on delicate and low-throughput methods. This paper describes a technique ("cells-in-gels-in-paper", CiGiP) that permits rapid assembly of arrays of 3D cell cultures and convenient isolation of cells from specific regions of these cultures. The 3D cultures were generated by stacking sheets of 200-μm-thick paper, each sheet supporting 96 individual "spots" (thin circular slabs) of hydrogels containing cells, separated by hydrophobic material (wax, PDMS) impermeable to aqueous solutions, and hydrophilic and most hydrophobic solutes. A custom-made 96-well holder isolated the cell-containing zones from each other. Each well contained media to which a different compound could be added. After culture and disassembly of the holder, peeling the layers apart "sectioned" the individual 3D cultures into 200-μm-thick sections which were easy to analyze using 2D imaging (e.g., with a commercial gel scanner). This 96-well holder brings new utilities to high-throughput, cell-based screening, by combining the simplicity of CiGiP with the convenience of a microtiter plate. This work demonstrated the potential of this type of assays by examining the cytotoxic effects of phenylarsine oxide (PAO) and cyclophosphamide (CPA) on human breast cancer cells positioned at different separations from culture media in 3D cultures.

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Year:  2013        PMID: 23952342      PMCID: PMC3810953          DOI: 10.1021/ac400161j

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  34 in total

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Authors:  Jessamine Ng Lee; Cheolmin Park; George M Whitesides
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2.  Microplate-reader compatible perfusion microbioreactor array for modular tissue culture and cytotoxicity assays.

Authors:  Yuan Wen; Xudong Zhang; Shang-Tian Yang
Journal:  Biotechnol Prog       Date:  2010 Jul-Aug

3.  Understanding wax printing: a simple micropatterning process for paper-based microfluidics.

Authors:  Emanuel Carrilho; Andres W Martinez; George M Whitesides
Journal:  Anal Chem       Date:  2009-08-15       Impact factor: 6.986

4.  Multi-channel 3-D cell culture device integrated on a silicon chip for anticancer drug sensitivity test.

Authors:  Y-S Yu-Suke Torisawa; Hitoshi Shiku; Tomoyuki Yasukawa; Matsuhiko Nishizawa; Tomokazu Matsue
Journal:  Biomaterials       Date:  2005-05       Impact factor: 12.479

5.  Real-time microfluidic system for studying mammalian cells in 3D microenvironments.

Authors:  Jerry Lii; Wern-Jir Hsu; Hesam Parsa; Anshu Das; Robert Rouse; Samuel K Sia
Journal:  Anal Chem       Date:  2008-04-08       Impact factor: 6.986

6.  Automation of three-dimensional cell culture in arrayed microfluidic devices.

Authors:  Sara I Montanez-Sauri; Kyung Eun Sung; John P Puccinelli; Carolyn Pehlke; David J Beebe
Journal:  J Lab Autom       Date:  2011-05-16

7.  Taking cell-matrix adhesions to the third dimension.

Authors:  E Cukierman; R Pankov; D R Stevens; K M Yamada
Journal:  Science       Date:  2001-11-23       Impact factor: 47.728

8.  Transition to invasion in breast cancer: a microfluidic in vitro model enables examination of spatial and temporal effects.

Authors:  Kyung Eun Sung; Ning Yang; Carolyn Pehlke; Patricia J Keely; Kevin W Eliceiri; Andreas Friedl; David J Beebe
Journal:  Integr Biol (Camb)       Date:  2010-12-07       Impact factor: 2.192

9.  An arrayed high-content chemotaxis assay for patient diagnosis.

Authors:  Erwin Berthier; Jill Surfus; James Verbsky; Anna Huttenlocher; David Beebe
Journal:  Integr Biol (Camb)       Date:  2010-10-18       Impact factor: 2.192

10.  Multizone paper platform for 3D cell cultures.

Authors:  Ratmir Derda; Sindy K Y Tang; Anna Laromaine; Bobak Mosadegh; Estrella Hong; Martin Mwangi; Akiko Mammoto; Donald E Ingber; George M Whitesides
Journal:  PLoS One       Date:  2011-05-06       Impact factor: 3.240

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  20 in total

1.  Understanding the cancer/tumor biology from 2D to 3D.

Authors:  Yufeng Zhou
Journal:  J Thorac Dis       Date:  2016-11       Impact factor: 2.895

Review 2.  The need for complex 3D culture models to unravel novel pathways and identify accurate biomarkers in breast cancer.

Authors:  Britta Weigelt; Cyrus M Ghajar; Mina J Bissell
Journal:  Adv Drug Deliv Rev       Date:  2014-01-09       Impact factor: 15.470

3.  Assessing chemotherapeutic effectiveness using a paper-based tumor model.

Authors:  Matthew W Boyce; Gabriel J LaBonia; Amanda B Hummon; Matthew R Lockett
Journal:  Analyst       Date:  2017-07-24       Impact factor: 4.616

Review 4.  The potential of organoids in urological cancer research.

Authors:  Shangqian Wang; Dong Gao; Yu Chen
Journal:  Nat Rev Urol       Date:  2017-05-23       Impact factor: 14.432

5.  New Methods in Tissue Engineering: Improved Models for Viral Infection.

Authors:  Vyas Ramanan; Margaret A Scull; Timothy P Sheahan; Charles M Rice; Sangeeta N Bhatia
Journal:  Annu Rev Virol       Date:  2014-11       Impact factor: 10.431

6.  Hydrogel-laden paper scaffold system for origami-based tissue engineering.

Authors:  Su-Hwan Kim; Hak Rae Lee; Seung Jung Yu; Min-Eui Han; Doh Young Lee; Soo Yeon Kim; Hee-Jin Ahn; Mi-Jung Han; Tae-Ik Lee; Taek-Soo Kim; Seong Keun Kwon; Sung Gap Im; Nathaniel S Hwang
Journal:  Proc Natl Acad Sci U S A       Date:  2015-11-30       Impact factor: 11.205

Review 7.  Microscale screening systems for 3D cellular microenvironments: platforms, advances, and challenges.

Authors:  Sara I Montanez-Sauri; David J Beebe; Kyung Eun Sung
Journal:  Cell Mol Life Sci       Date:  2014-10-02       Impact factor: 9.261

8.  Three-dimensional paper-based model for cardiac ischemia.

Authors:  Bobak Mosadegh; Borna E Dabiri; Matthew R Lockett; Ratmir Derda; Patrick Campbell; Kevin Kit Parker; George M Whitesides
Journal:  Adv Healthc Mater       Date:  2014-02-12       Impact factor: 9.933

9.  Generating linear oxygen gradients across 3D cell cultures with block-layered oxygen controlled chips (BLOCCs).

Authors:  Matthew W Boyce; William C Simke; Rachael M Kenney; Matthew R Lockett
Journal:  Anal Methods       Date:  2019-11-26       Impact factor: 2.896

10.  Low magnitude high frequency vibrations expedite the osteogenesis of bone marrow stem cells on paper based 3D scaffolds.

Authors:  Ozge Karadas; Gulistan Mese; Engin Ozcivici
Journal:  Biomed Eng Lett       Date:  2020-07-06
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