Informační systém MU
CMIEL, Vratislav, Jaromír GUMULEC, Ondrej SVOBODA, Martina RAUDENSKÁ, Kristýna HUDCOVÁ, Jiri SEKORA, Jaroslav BALOGH, Michal MASAŘÍK and Ivo PROVAZNIK. All-in-one detector of circulating mRNA based on a smartphone. In Gerard L. Coté. Proceedings of SPIE : Optical Diagnostics and Sensing XVI - Toward Point-of-Care Diagnostics. Bellingham: SPIE, 2016, p. 1-6. ISBN 978-1-62841-949-8. Available from: https://dx.doi.org/10.1117/12.2213253.
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Basic information
Original name All-in-one detector of circulating mRNA based on a smartphone
Authors CMIEL, Vratislav (203 Czech Republic), Jaromír GUMULEC (203 Czech Republic, belonging to the institution), Ondrej SVOBODA (203 Czech Republic), Martina RAUDENSKÁ (203 Czech Republic, belonging to the institution), Kristýna HUDCOVÁ (203 Czech Republic, belonging to the institution), Jiri SEKORA (203 Czech Republic), Jaroslav BALOGH (203 Czech Republic), Michal MASAŘÍK (203 Czech Republic, guarantor, belonging to the institution) and Ivo PROVAZNIK (203 Czech Republic).
Edition Bellingham, Proceedings of SPIE : Optical Diagnostics and Sensing XVI - Toward Point-of-Care Diagnostics, p. 1-6, 6 pp. 2016.
Publisher SPIE
Other information
Original language English
Type of outcome Proceedings paper
Field of Study 30200 3.2 Clinical medicine
Country of publisher United States of America
Confidentiality degree is not subject to a state or trade secret
Publication form printed version "print"
RIV identification code RIV/00216224:14110/16:00092235
Organization unit Faculty of Medicine
ISBN 978-1-62841-949-8
ISSN 0277-786X
Doi http://dx.doi.org/10.1117/12.2213253
UT WoS 000379998400006
Keywords in English mRNA; smartphone; PCR; cancer; metallothionein
Tags EL OK
Changed by Changed by: Soňa Böhmová, učo 232884. Changed: 26/4/2017 12:25.
Abstract
Metallothionein is significantly elevated in various tumors, notably in prostate cancer on both mRNA and protein level. We demonstrated a strong predictive potential of free circulating metallothionein 2A isoform mRNA for patients with this cancer. Circulating mRNA detection relies on expensive equipment and requires high level of expertise. In this work we developed compact "all-in-one" laboratory system which replace microvolume spectrophotometer, thermocycler and realtime PCR machines. We managed to design and construct a microprocessor controlled heating/cooling chamber that ensures required temperature gradient. The chamber includes implemented optical system to enable fluorescence excitation and fluorescence analysis using a smart-phone.
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