Browsing by Author "Lubasová Daniela"
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- ItemAntibacterial efficiency of nanofiber membranes with biologically active nanoparticles(IAAST, 2014-01-01) Lubasová Daniela; Smýkalová Barbora
- ItemBacterial Filtration Efficiency of Green Soy Protein Based Nanofiber Air Filter(American Scientific Publishers, 2014-01-01) Lubasová Daniela; Netravali Anil; Parker John; Ingel Brian
- ItemHydrogel Nanofiber Membranes for Wound Healing(Sociedad Mexicana de Materiales A.C, 2014-01-01) Lubasová Daniela; Niu Haitao; Lin Tong
- ItemHydrogel properties of electrospun polyvinylpyrrolidone and polyvinylpyrrolidone/poly(acrylic acid) blend nanofibers(ROYAL SOC CHEMISTRY, 2015-01-01) Lubasová Daniela
- ItemInnovative Laboratory Technique for Testing of Bacterial Filtration Efficiency of Nanofibre-based Filters(TANGER Ltd, 2013-01-01) Lubasová Daniela
- ItemThe list of commercial membranes(2015-01-01) Hrůza Jakub; Lubasová Daniela
- ItemMulti-layered nanofibrous mucoadhesive films for buccal and sublingual administration of drug-delivery and vaccination nanoparticles - important step towards effective mucosal vaccines(2017-01-01) Lubasová Daniela; Mašek Josef; Lukáč Robert; Turánek Knotigová Pavlína; Kulich Pavel; Plocková Jana; Mašková Eliška; Procházka Lubomír; Koudelka Štěpán; Sasithorn Nongnut; Turánek Jaroslav; Raška Milan; Hubatka František; Bartheldyová Eliška; Gomboz Jozsef; Miller Andrew
- ItemNanoestimator(2020-01-01) Špánek Roman; Lubasová Daniela
- ItemNanofibers in Mucosal Drug and Vaccine Delivery(Intechopen, 2018-01-01) Lubasová Daniela; Špánek Roman; Mašek Josef; Mašková Eliška; Raška Milan; Turánek Jaroslav
- ItemNanofibres for Drug Delivery(VÚVeL, 2014-01-01) Lubasová Daniela
- ItemNanomaterials for noninvasive sublingual vaccines(TANGER, spol. s r.o., 2015-01-01) Lubasová Daniela; Turánek Jaroslav; Turánek Knotigová Pavlína; Lukáč Robert; Mašek Josef
- ItemA Novel Method for Electrospinning Nanofibrous 3-D Structures(MDPI, 2020-01-01) Lubasová Daniela; Netravali AnilThe fast and precise fabrication of three-dimensional (3-D) structures made of nanofibers is an important development trend in the electrospinning technique. This paper describes a new and facile method of electrospinning to fabricate nanofibrous 3-D structures. The nanofibrous 3-D structures can be engineered to have the desired layer thicknesses, where the fiber spacing, density (i.e., fiber volume/unit volume), as well as shape of the structure may be controlled. While innumerable structural variations are possible with this method, this paper discusses, as proof-of-concept, a few cases that illustrate how 3-D nanofiber webs can be made for filtration application. Computerized automation of the method will make it possible to build almost any 3-D web structure suitable for a myriad of applications including ultra-light-weight insulation and scaffolds for hydrogel preparation and tissue.
- ItemPorous Core-shell Nanofibers(Fiber Society, 2014-01-01) Lubasová Daniela; Vodseďálková Kateřina; Cudlínová Marcela
- ItemPreparation of Antibacterial Nanofibre/Nanoparticle Covered Composite Yarns(HINDAWI PUBLISHING CORP, 2016-01-01) Yalcinkaya Fatma; Komárek Michal; Lubasová Daniela; Sanetrník Filip; Maryška Jiří
- ItemProducing Antibacterial Textile Material by Weaving PVB/CuO Nanocomposite Fiber Covered Yarn(TANGER Ltd, 2015-01-01) Yalcinkaya Fatma; Komárek Michal; Lubasová Daniela; Sanetrník Filip; Maryška Jiří
- ItemQuantitative evaluation of antibacterial activities of nanoparticles (ZnO, TiO2, ZnO/TiO2, SnO2, CuO, ZrO2, and AgNO3) incorporated into polyvinyl butyral nanofibers(WILEY, 111 RIVER ST, HOBOKEN 07030-5774, NJ USA, 2017-01-01) Lubasová Daniela; Yalcinkaya Fatma
- ItemShort‐course sublingual immunotherapy by mucoadhesive patch and tolerogenic particle enhanced allergen presentation(WILEY, 2021-01-01) Lubasová Daniela; Turánek Knotigová Pavlína; Turánek Jaroslav; Mašek Josef; Kotouček Jan; Hubatka František; Mašková Eliška; Kulich Pavel; Raška Milan; Sorensen Poul; Leenhouts Kees
- ItemStudy of relationships between morphology of polyvinylbutyral nanofibers and solvents properties using a predictive numerical model(American Scientific Publishers, 2017-01-01) Lubasová Daniela; Špánek RomanNanofiber membranes can be used for many applications, however, their morphology dramatically influences properties of final products. Moreover producing nanofibers with desired morphology is extremely complicated since even a small change in any of used solvents will result in a different morphology. Engineering of the morphology is nowadays mostly driven by either (i) personal experience of researcher or (ii) trial and error approaches. The paper presents a complex predictive model allowing controlled nanofiber morphology of polyvinylbutyral that overcomes previous works by considering the most important solvent properties such as permittivity, vapor pressure together with the polymer solubility parameter. The proposed predictive model is able to rank solvents or solvent mixtures allowing direct comparison and selection of more or less appropriate solvents for electrospinning of polyvinylbutyral with respect to desired morphology of nanofibers. The predictive model was experimentally verified by electrospinning of polyvinylbutyral dissolved in eight solvents and their mixtures.
- ItemSublingual Mucosal Application, Manufacturing and Application(2016-01-01) Lubasová Daniela; Raška Milan; Mašek Josef; Turánek Jaroslav; Turánek Knotigová Pavlína; Lukáč Robert
- ItemWater-resistant Plant Protein-based Nanofiber Membranes(John Wiley and Sons Inc, 2015-01-01) Lubasová Daniela; Müllerová Jana; Netravali Anil