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HÚSKA, D.; ADAM, V.; BABULA, P.; TRNKOVÁ, L.; HUBÁLEK, J.; ZEHNÁLEK, J.; HAVEL, L.; KIZEK, R.
Original Title
Microfluidic robotic device coupled with electrochemical sensor field for handling of paramagnetic micro-particles as a tool for determination of plant mRNA
English Title
Type
Peer-reviewed article not indexed in WoS or Scopus
Original Abstract
The expression of genes responsible for the biosynthesis of stress proteins corresponds to the exposition of an organism to abiotic and/or biotic stress. We utilize two types of paramagnetic particles for isolation of total mRNA from early somatic embryos of Norway Spruce (Picea abies /L./ Karst.) and maize plants (Zea mays L.) treated with cadmium(II) ions. The paramagnetic particles were evaluated for analysis of real samples, and polyadenine was used as a model mRNA. Various approaches (from non-automatic to fully automatic) were tested in terms of handling the particles.
English abstract
Keywords
Electrochemical detection; Microfluidics; Environmental stress; Cadmium ions; Paramagnetic particles
Key words in English
Authors
RIV year
2013
Released
01.04.2011
Publisher
SPRINGER WIEN,
ISBN
0026-3672
Periodical
MICROCHIMICA ACTA
Volume
2012 (173)
Number
1-2
State
Republic of Austria
Pages from
189
Pages to
197
Pages count
9
BibTex
@article{BUT75745, author="HÚSKA, D. and ADAM, V. and BABULA, P. and TRNKOVÁ, L. and HUBÁLEK, J. and ZEHNÁLEK, J. and HAVEL, L. and KIZEK, R.", title="Microfluidic robotic device coupled with electrochemical sensor field for handling of paramagnetic micro-particles as a tool for determination of plant mRNA", journal="MICROCHIMICA ACTA", year="2011", volume="2012 (173)", number="1-2", pages="189--197", issn="0026-3672" }