ŘEMÍNEK, Roman, Marta ZEISBERGEROVÁ and Zdeněk GLATZ. Combination of Transverse and Longitudinal Diffusion as a Generic Approach for Reactants Mixing inside the Capillary. In Final Program and Book of Abstracts 26th International Symposium on MicroScale Bioseparations MSB 2011. 2011.
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Basic information
Original name Combination of Transverse and Longitudinal Diffusion as a Generic Approach for Reactants Mixing inside the Capillary
Name in Czech Kombinace příčné a podélné difuze jako univerzální metoda pro míchání reaktantů uvnitř kapiláry
Authors ŘEMÍNEK, Roman, Marta ZEISBERGEROVÁ and Zdeněk GLATZ.
Edition Final Program and Book of Abstracts 26th International Symposium on MicroScale Bioseparations MSB 2011, 2011.
Other information
Original language English
Type of outcome Conference abstract
Field of Study 10600 1.6 Biological sciences
Country of publisher Czech Republic
Confidentiality degree is not subject to a state or trade secret
Organization unit Faculty of Science
Keywords (in Czech) on-line kapilární elektroforéza, diklofenak, cytochrom P450 2C9, metabolismus léčiv
Keywords in English in-capillary reaction, on-line capillary eletrophoresis, cytochrome P450, diclofenac, drug metabolism
Tags International impact, Reviewed
Changed by Changed by: Ing. Mgr. Roman Řemínek, Ph.D., učo 106333. Changed: 29/9/2011 14:18.
Abstract
Applications of on-line enzymatic reactions in capillary electrophoresis (CE) are of particular interest in modern bioanalytical chemistry since resulting automatization of the assays minimize both sample consumption and possibility of experimental error. However the development of an effective way of reactants mixing inside the capillary forming a nano scale reactor is a challenging task, which prevents wider practical implementation of this interesting concept. Several approaches based on differential electrophoretic mobilities and transverse diffusion have been already presented [1,2]. Unfortunately they are not able to provide homogenous reaction mixture which composition could be simply changed during given experimental task. To solve this limitation, we introduce the generic methodology of in-capillary reaction mixture mixing based on combination of longitudinal and transverse diffusion. Conceptually, the solutions of reaction mixture components are injected by relatively low pressure as a series of consecutive narrow plugs having parabolic profiles due to laminar flow inside the capillary. Resulting character of plugs with rather longitudinal interfaces then enable creation of homogenous reaction mixture by both longitudinal and transverse diffusions within minute period. The goal of this study was to introduce a method based on the above described principle for monitoring of on-line reaction of cytochrome P450 2C9 with diclofenac as a probe substrate. A sandwich consisting of four plugs of diclofenac and NADPH solution injected alternately with three enzyme solution plugs was selected as an appropriate layout for the formation of homogenous reaction mixture. Separation of reaction product 4’-hydroxydiclofenac was achieved within 13 minutes analysis with background electrolyte containing 55 mM SDS in 18 mM phosphate-borate buffer pH 8.6. Presented approach thus constitutes a promising tool for on-line inhibition studies of CYP2C9 requiring routine changes in reaction mixture composition.
Abstract (in Czech)
Byla vypracována metoda pro on-line studium reakce diklofenaku s cytochromem P450 2C9.
Links
GAP206/10/0057, research and development projectName: Miniaturizovaný systém pro "on-line" studie metabolismu léčiv založený na kapilární elektroforéze
Investor: Czech Science Foundation, Miniaturized on-line drug metabolism system based on capillary electrophoresis
LC06023, research and development projectName: Integrované bioanalytické technologie pro mikroanalýzy a diagnostiku s využitím LIF a hmotnostní spektrometrie
Investor: Ministry of Education, Youth and Sports of the CR
MSM0021622413, plan (intention)Name: Proteiny v metabolismu a při interakci organismů s prostředím
Investor: Ministry of Education, Youth and Sports of the CR, Proteins in metabolism and interaction of organisms with the environment
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