VOJTEK, Libor, Pavel DOBEŠ, Lucie PROKOPOVÁ, Jitka VINKLEROVA, Michal VINKLER and Pavel HYRŠL. Chemiluminescent determination of reactive oxygen species using Pholasin luminophore in birds and insect phagocytes. In 18th International Symposium on Bioluminescence and Chemiluminescence. 2014. ISSN 1522-7235.
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Basic information
Original name Chemiluminescent determination of reactive oxygen species using Pholasin luminophore in birds and insect phagocytes
Authors VOJTEK, Libor (203 Czech Republic, belonging to the institution), Pavel DOBEŠ (203 Czech Republic, belonging to the institution), Lucie PROKOPOVÁ (203 Czech Republic, belonging to the institution), Jitka VINKLEROVA (203 Czech Republic), Michal VINKLER (203 Czech Republic) and Pavel HYRŠL (203 Czech Republic, guarantor, belonging to the institution).
Edition 18th International Symposium on Bioluminescence and Chemiluminescence, 2014.
Other information
Original language English
Type of outcome Conference abstract
Field of Study 30102 Immunology
Country of publisher United Kingdom of Great Britain and Northern Ireland
Confidentiality degree is not subject to a state or trade secret
Impact factor Impact factor: 1.518
RIV identification code RIV/00216224:14310/14:00073254
Organization unit Faculty of Science
ISSN 1522-7235
Keywords (in Czech) Chemiluminiscence; fagocyty; Pholasin; reaktivní kyslíkové metabolity
Keywords in English Chemiluminiscence; phagocytes; Pholasin; reactive oxygen species
Tags AKR, rivok
Tags International impact, Reviewed
Changed by Changed by: doc. RNDr. Pavel Hyršl, Ph.D., učo 9982. Changed: 31/3/2015 14:31.
Abstract
Phagocytosis is one of the most important innate immunity mechanisms which prevents organism against pathogens overcoming the natural barriers. There are several methods widely used for evaluation of phagocytosis efficiency. One of them is to measure the level of reactive oxygen species (ROS) produced by phagocytes - respiratory burst of phagocytes. ROS production can be elicited by addition of activators such as lipopolysaccharide (LPS), zymosan, starch particles, phorbol-12-miristate-13-acetate (PMA) or N-formyl-methionyl-leucyl-phenylalanin (fMLP). Produced ROS cause oxidation of luminophore which subsequently emits the energy in form of light measured by luminometers. Luminol is the most widely used luminophore. On the other hand evaluation of respiratory burst using this method on birds or insect samples is not possible due to a low production of ROS and low sensitivity of luminol. In birds is production limited by absence of myeloperoxidase, enzyme responsible for the main production of ROS and hypochlorous acid. Purpose of this work was to find more sensitive luminophore and optimize chemiluminescent (CL) measurement of oxidative burst for birds' and insects' samples. As more sensitive (with app. thirty times higher luminescent signal than luminol) was found the luminophore Pholasin - photoprotein extracted from bioluminescent mollusc Pholas dactylus. For CL measurement of oxidative burst in birds we combined this luminophore with Salmonella enterica and Escherichia coli LPS; an ideal activators that give fast and stable enhancement of ROS production (Fig. 1). Data acquired by this assay can be subsequently compared to results of other experiments by evaluation of peak of the reaction (maximum intensity of respiratory burst in counts per second, CPS) or integral of the reaction. So far there are four studies of heterophil respiratory burst determination in birds' immunology with the use of Pholasin and the first study on great tits (Parus major).
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CZ.1.07/2.3.00/30.0009, interní kód MU
(CEP code: EE2.3.30.0009)
Name: Zaměstnáním čerstvých absolventů doktorského studia k vědecké excelenci (Acronym: Postdoc I.)
Investor: Ministry of Education, Youth and Sports of the CR, 2.3 Human resources in research and development
QJ1210047, research and development projectName: Vývoj nových prostředků pro podporu imunity včel, prevenci a léčbu včelích onemocnění (Acronym: Probiotika - imunita včel)
Investor: Ministry of Agriculture of the CR
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