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Particle-Based Microarrays of Oligonucleotides and Oligopeptides

In this review, we describe different methods of microarray fabrication based on the use of micro-particles/-beads and point out future tendencies in the development of particle-based arrays. First, we consider oligonucleotide bead arrays, where each bead is a carrier of one specific sequence of oli...

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Autores principales: Nesterov-Mueller, Alexander, Maerkle, Frieder, Hahn, Lothar, Foertsch, Tobias, Schillo, Sebastian, Bykovskaya, Valentina, Sedlmayr, Martyna, Weber, Laura K., Ridder, Barbara, Soehindrijo, Miriam, Muenster, Bastian, Striffler, Jakob, Bischoff, F. Ralf, Breitling, Frank, Loeffler, Felix F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4979057/
https://www.ncbi.nlm.nih.gov/pubmed/27600347
http://dx.doi.org/10.3390/microarrays3040245
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author Nesterov-Mueller, Alexander
Maerkle, Frieder
Hahn, Lothar
Foertsch, Tobias
Schillo, Sebastian
Bykovskaya, Valentina
Sedlmayr, Martyna
Weber, Laura K.
Ridder, Barbara
Soehindrijo, Miriam
Muenster, Bastian
Striffler, Jakob
Bischoff, F. Ralf
Breitling, Frank
Loeffler, Felix F.
author_facet Nesterov-Mueller, Alexander
Maerkle, Frieder
Hahn, Lothar
Foertsch, Tobias
Schillo, Sebastian
Bykovskaya, Valentina
Sedlmayr, Martyna
Weber, Laura K.
Ridder, Barbara
Soehindrijo, Miriam
Muenster, Bastian
Striffler, Jakob
Bischoff, F. Ralf
Breitling, Frank
Loeffler, Felix F.
author_sort Nesterov-Mueller, Alexander
collection PubMed
description In this review, we describe different methods of microarray fabrication based on the use of micro-particles/-beads and point out future tendencies in the development of particle-based arrays. First, we consider oligonucleotide bead arrays, where each bead is a carrier of one specific sequence of oligonucleotides. This bead-based array approach, appearing in the late 1990s, enabled high-throughput oligonucleotide analysis and had a large impact on genome research. Furthermore, we consider particle-based peptide array fabrication using combinatorial chemistry. In this approach, particles can directly participate in both the synthesis and the transfer of synthesized combinatorial molecules to a substrate. Subsequently, we describe in more detail the synthesis of peptide arrays with amino acid polymer particles, which imbed the amino acids inside their polymer matrix. By heating these particles, the polymer matrix is transformed into a highly viscous gel, and thereby, imbedded monomers are allowed to participate in the coupling reaction. Finally, we focus on combinatorial laser fusing of particles for the synthesis of high-density peptide arrays. This method combines the advantages of particles and combinatorial lithographic approaches.
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spelling pubmed-49790572016-09-06 Particle-Based Microarrays of Oligonucleotides and Oligopeptides Nesterov-Mueller, Alexander Maerkle, Frieder Hahn, Lothar Foertsch, Tobias Schillo, Sebastian Bykovskaya, Valentina Sedlmayr, Martyna Weber, Laura K. Ridder, Barbara Soehindrijo, Miriam Muenster, Bastian Striffler, Jakob Bischoff, F. Ralf Breitling, Frank Loeffler, Felix F. Microarrays (Basel) Review In this review, we describe different methods of microarray fabrication based on the use of micro-particles/-beads and point out future tendencies in the development of particle-based arrays. First, we consider oligonucleotide bead arrays, where each bead is a carrier of one specific sequence of oligonucleotides. This bead-based array approach, appearing in the late 1990s, enabled high-throughput oligonucleotide analysis and had a large impact on genome research. Furthermore, we consider particle-based peptide array fabrication using combinatorial chemistry. In this approach, particles can directly participate in both the synthesis and the transfer of synthesized combinatorial molecules to a substrate. Subsequently, we describe in more detail the synthesis of peptide arrays with amino acid polymer particles, which imbed the amino acids inside their polymer matrix. By heating these particles, the polymer matrix is transformed into a highly viscous gel, and thereby, imbedded monomers are allowed to participate in the coupling reaction. Finally, we focus on combinatorial laser fusing of particles for the synthesis of high-density peptide arrays. This method combines the advantages of particles and combinatorial lithographic approaches. MDPI 2014-10-28 /pmc/articles/PMC4979057/ /pubmed/27600347 http://dx.doi.org/10.3390/microarrays3040245 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Nesterov-Mueller, Alexander
Maerkle, Frieder
Hahn, Lothar
Foertsch, Tobias
Schillo, Sebastian
Bykovskaya, Valentina
Sedlmayr, Martyna
Weber, Laura K.
Ridder, Barbara
Soehindrijo, Miriam
Muenster, Bastian
Striffler, Jakob
Bischoff, F. Ralf
Breitling, Frank
Loeffler, Felix F.
Particle-Based Microarrays of Oligonucleotides and Oligopeptides
title Particle-Based Microarrays of Oligonucleotides and Oligopeptides
title_full Particle-Based Microarrays of Oligonucleotides and Oligopeptides
title_fullStr Particle-Based Microarrays of Oligonucleotides and Oligopeptides
title_full_unstemmed Particle-Based Microarrays of Oligonucleotides and Oligopeptides
title_short Particle-Based Microarrays of Oligonucleotides and Oligopeptides
title_sort particle-based microarrays of oligonucleotides and oligopeptides
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4979057/
https://www.ncbi.nlm.nih.gov/pubmed/27600347
http://dx.doi.org/10.3390/microarrays3040245
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