Literature DB >> 10997277

FAST slides: a novel surface for microarrays.

B A Stillman1, J L Tonkinson.   

Abstract

We have evaluated FAST slides, a glass slide with a microporous polymeric surface that is a suitable substrate for microarray technology. The surface is a nitrocellulose-based polymer that binds DNA and proteins in a noncovalent but irreversible manner. FAST slides are compatible with robotic systems currently used to create microarrays and can easily accommodate volumes of 0.03-2 nL/spot. Our data indicate that FAST slides have a much higher binding capacity for DNA and better spot-to-spot consistency than traditional poly-lysine-coated slides. In addition, FAST slides are well suited for fluorescent detection because of their relatively low light scatter and efficient retention of arrayed DNA. These properties translate into fluorescent sensitivity comparable to modified glass surfaces. FAST slides are also ideal for arraying proteins, making them the only substrate of their kind currently available for microarray applications.

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Year:  2000        PMID: 10997277     DOI: 10.2144/00293pf01

Source DB:  PubMed          Journal:  Biotechniques        ISSN: 0736-6205            Impact factor:   1.993


  17 in total

1.  Microarray optimizations: increasing spot accuracy and automated identification of true microarray signals.

Authors:  Peter H Tran; Daniel A Peiffer; Yongchol Shin; Lauren M Meek; James P Brody; Ken W Y Cho
Journal:  Nucleic Acids Res       Date:  2002-06-15       Impact factor: 16.971

Review 2.  Reverse phase protein microarrays advance to use in clinical trials.

Authors:  Claudius Mueller; Lance A Liotta; Virginia Espina
Journal:  Mol Oncol       Date:  2010-10-16       Impact factor: 6.603

3.  Food microbial pathogen detection and analysis using DNA microarray technologies.

Authors:  Avraham Rasooly; Keith E Herold
Journal:  Foodborne Pathog Dis       Date:  2008-08       Impact factor: 3.171

4.  Targeting Protein-Protein Interactions of Tyrosine Phosphatases with Microarrayed Fragment Libraries Displayed on Phosphopeptide Substrate Scaffolds.

Authors:  Megan Hogan; Medhanit Bahta; Kohei Tsuji; Trung X Nguyen; Scott Cherry; George T Lountos; Joseph E Tropea; Bryan M Zhao; Xue Zhi Zhao; David S Waugh; Terrence R Burke; Robert G Ulrich
Journal:  ACS Comb Sci       Date:  2019-01-31       Impact factor: 3.784

5.  BIOPHYSICAL PROPERTIES OF NUCLEIC ACIDS AT SURFACES RELEVANT TO MICROARRAY PERFORMANCE.

Authors:  Archana N Rao; David W Grainger
Journal:  Biomater Sci       Date:  2014-04-01       Impact factor: 6.843

6.  Phosphoprotein stability in clinical tissue and its relevance for reverse phase protein microarray technology.

Authors:  Virginia Espina; Claudius Mueller; Lance A Liotta
Journal:  Methods Mol Biol       Date:  2011

7.  Vaccinia virus induces strong immunoregulatory cytokine production in healthy human epidermal keratinocytes: a novel strategy for immune evasion.

Authors:  Luzheng Liu; Zhan Xu; Robert C Fuhlbrigge; Victor Peña-Cruz; Judy Lieberman; Thomas S Kupper
Journal:  J Virol       Date:  2005-06       Impact factor: 5.103

8.  Realizing the promise of reverse phase protein arrays for clinical, translational, and basic research: a workshop report: the RPPA (Reverse Phase Protein Array) society.

Authors:  Rehan Akbani; Karl-Friedrich Becker; Neil Carragher; Ted Goldstein; Leanne de Koning; Ulrike Korf; Lance Liotta; Gordon B Mills; Satoshi S Nishizuka; Michael Pawlak; Emanuel F Petricoin; Harvey B Pollard; Bryan Serrels; Jingchun Zhu
Journal:  Mol Cell Proteomics       Date:  2014-04-28       Impact factor: 5.911

Review 9.  Protein microarray technology.

Authors:  David A Hall; Jason Ptacek; Michael Snyder
Journal:  Mech Ageing Dev       Date:  2006-11-28       Impact factor: 5.432

10.  A guided materials screening approach for developing quantitative sol-gel derived protein microarrays.

Authors:  Blake-Joseph Helka; John D Brennan
Journal:  J Vis Exp       Date:  2013-08-26       Impact factor: 1.355

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