Národní úložiště šedé literatury Nalezeno 80 záznamů.  začátekpředchozí21 - 30dalšíkonec  přejít na záznam: Hledání trvalo 0.01 vteřin. 
Evaluation of stationary phases for HPLC based on nanofibers
Čmelík, Richard ; Foret, František
In this study, the performance parameters were compared for the set of chromatographic columns filled with polyacrylonitrile nanofibers processed in the different manner. The advantages and challenges of the novel fillings were discussed.
Prototyping of a simple device for parallel dot blotting using CNC machining
Novotný, Jakub ; Svobodová, Z. ; Bílková, Z. ; Foret, František
Computer numerical control (CNC) machining has been tested for rapid prototyping of\na new design of a dot-blotting device suitable for parallel testing of antibodies. The\ndevice, machined from polycarbonate, was prepared using an inexpensive computer\ncontrolled CNC router.
Hexahistidine labeling of oligosaccharides
Partyka, Jan ; Křenková, Jana ; Foret, František
We have presented another approach for labeling of oligosaccharides suitable for\ncapillary zone electrophoresis coupled with mass spectrometric detection.\nOligosaccharides labeled by peptides with hexahistidine sequence have faster\nseparation resulting in two or three times shorter time in comparison to oligosaccharides\nwith singly charged labels.
Novel, versatile capillary electrophoresis instrument with laser induced fluorescence for analysis of various lipid peroxidation biomarkers
Lačná, J. ; Foret, František ; Kubáň, Petr
In this work we have developed a new sensitive method for quantitation of MDA in\nbiological samples by CE-LIF with LOD about 1.7 nM. First part of the work was\ndevoted to the construction of a new CE-LIF system. Then the derivatization process\nof MDA by TBA was optimized. The ability to use this method for the detection of\nMDA in a biological samples, such as EBC and plasma, was also demonstrated. For the\nfirst time it was possible to detect MDA in EBC samples by CE. Other biomarkers are\nnow being studied.
Development of microfluidic device for droplet generation and microparticle encapsulation
Křivánková, Jana ; Foret, František
Microfluidic devices combined with various bioanalytical and optical sensors proved\ntheir potential in chemical, biological, and biomedicine applications. At a droplet\nmicrofluidic device a fluid is divided into numerous droplets surrounded by a\ncontinuous immiscible fluid phase. Generated droplets serve then as\nvessels/microcapsules for delivering drugs, nutrients as well as for encapsulating of\nbiologically active particles and cells.\nDescribed experimental study deals with the development of a practical dropletbased\nmicrofluidic chip useful for production of monodisperse water/oil emulsion and\nfor encapsulation of thin-metal magnetic microsheets.
Microfluidic device for cell counting and characterization
Václavek, Tomáš ; Křenková, Jana ; Foret, František
Integration of cell counting unit is an important step in developing of microfluidic\ndevice for cellular analysis. Here we present a microfluidic device for cell counting\nbased on resistive pulse sensing.
CE-nESI/MS in electrode-free design: narrowing the separation channel to 5 μm
Týčová, Anna ; Foret, František
Capillary electrophoresis-nanospray/mass spectrometry (CE-nESI/MS) in electrodefree\narrangement represents a very simple instrumentation for analysis of biomolecules.\nSo far, CE-nESI/MS analyses in this design were limited to 10-75 μm ID of the\nseparation channel. Although the work with narrower dimensions brings several\nchallenges, there is a great potential for better sensitivity, improved separation power\nand lower sample consumption. This work is devoted to some practical aspects of\nexperiments in narrow bore channels and systematic evaluation of CE-nESI/MS\nanalyses conducted in capillaries of 25, 15 and 5 μm ID.
Characterization of FRET sensor
Datinská, Vladimíra ; Klepárník, Karel ; Belšánová, B. ; Minárik, M. ; Foret, František
In this study, we present characterization of sensor based on Fӧrster resonance energy\ntransfer (FRET). The sensor is composed of ssDNA chain attached to a laboratory\nsynthesized quantum dot (QD). A complementary chain of a sample is labeled by a\nluminescent dye. When the dsDNA hybrid is formed, the energy from the QD (donor)\nis transferred to the dye (acceptor) and FRET is observed as a decrease of QD\nluminescence emission intensity and an increase of dye luminescence emission\nintensity.
A novel nanospray liquid junction interface for versatile CE-MS
Křenková, Jana ; Haselberg, R. ; Somsen, G. W. ; Foret, František
In this work we present a new polyimide-based liquid junction nanospray interface, combining the advantages of sheath flow and sheathless designs. The liquid junction interface was prepared as a hybrid microfabricated plastic liquid junction sprayer allowing to perform analysis in standard (30-100 micro m ID) separation capillaries. The interface incorporates a self-aligning port for coupling of the separation capillary as well as ports for automated flushing of both the liquid junction and the separation capillary. The interface permits performing CE both with and without electroosmotic flow. The use of large bore capillaries allows injection and preconcentration of larger sample volumes, favoring detection sensitivity. Different compositions of the spray liquid and BGE can be used when needed.
CECE 2016. 13th International Interdisciplinary Meeting on Bioanalysis
Foret, František ; Křenková, Jana ; Drobníková, Iveta ; Klepárník, Karel
This year the meeting included full texts of 32 oral and 78 poster presentations delivered by participants from 17 countries. The attached conference proceedings, edited by highly cited scientists, documents the quality of the meeting. Similarly to the previous years the lectures were given by outstanding, highly cited, scientists. The list of speakers as well as more detailed information about the conference can be found on its permanent web at www.ce-ce.org.

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