Effect of buffer composition on PNA–RNA hybridization studied in the microfluidic microarray chip

Author:

Chim Wilson1,Sedighi Abootaleb1,Brown Christopher L.2,Pantophlet Ralph3,Li Paul C.H.1

Affiliation:

1. Department of Chemistry, Simon Fraser University, Burnaby, BC V5A 1S6, Canada.

2. School of Natural Sciences and Queensland Micro- and Nanotechnology Centre, Griffith University, Brisbane, Queensland, Australia.

3. Faculty of Health Sciences and Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, BC V5A 1S6, Canada.

Abstract

Herein, we report that peptide nucleic acid sequences (PNAs) have been used as the probe species for detection of RNA and that a microfluidic microarray (MMA) chip is used as the platform for detection of hybridizations between immobilized PNA probes and RNA targets. The RNA targets used are derived from influenza A sequences. This paper discusses the optimization of two probe technologies used for RNA detection and investigates how the composition of the probe buffer and the content of the hybridization solution can influence the overall results. Our data show that the PNA probe is a better choice than the DNA probe when there is low salt in the probe buffer composition. Furthermore, we show that the absence of salt (NaCl) in the hybridization buffer does not hinder the detection of RNA sequences. The results provide evidence that PNA probes are superior to DNA probes in term of sensitivity and adaptability, as PNA immobilization and PNA–RNA hybridization are less affected by salt content in the reaction buffers unlike DNA probes.

Publisher

Canadian Science Publishing

Subject

Organic Chemistry,General Chemistry,Catalysis

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