SKLENÁŘ, Matěj, Andrea BEZDĚKOVÁ, Dana DOSPIVOVÁ, Jiří SOCHOR, Petr BABULA, Libuše TRNKOVÁ, Jaromír HUBÁLEK, Vojtěch ADAM and René KIZEK. ELEKTROCHEMICAL STUDY OF HYALURONIC ACID-SILVER IONS COMPLEX. In XII. Pracovní setkání fyzikálních chemiků a elektrochemiků. Sborník příspěvků. Brno: Mendelova univerzita v Brně, 2012, p. 192-194. ISBN 978-80-7375-618-5.
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Basic information
Original name ELEKTROCHEMICAL STUDY OF HYALURONIC ACID-SILVER IONS COMPLEX
Authors SKLENÁŘ, Matěj (203 Czech Republic), Andrea BEZDĚKOVÁ (203 Czech Republic), Dana DOSPIVOVÁ (203 Czech Republic), Jiří SOCHOR (203 Czech Republic), Petr BABULA (203 Czech Republic), Libuše TRNKOVÁ (203 Czech Republic, belonging to the institution), Jaromír HUBÁLEK (203 Czech Republic), Vojtěch ADAM (203 Czech Republic) and René KIZEK (203 Czech Republic, guarantor).
Edition Brno, XII. Pracovní setkání fyzikálních chemiků a elektrochemiků. Sborník příspěvků. p. 192-194, 3 pp. 2012.
Publisher Mendelova univerzita v Brně
Other information
Original language English
Type of outcome Proceedings paper
Field of Study 10403 Physical chemistry
Country of publisher Czech Republic
Confidentiality degree is not subject to a state or trade secret
Publication form printed version "print"
RIV identification code RIV/00216224:14310/12:00060125
Organization unit Faculty of Science
ISBN 978-80-7375-618-5
Keywords in English hyaluronic acid;nosuphated glycosaminoglycan;differential pulse voltammetry
Tags AKR, rivok
Changed by Changed by: Mgr. Sylvie Dohnalíková, učo 150911. Changed: 17/1/2013 09:12.
Abstract
Hyaluronic acid, nosulphated glycosaminoglycan, is widely used in pharmacy, especially in reepitelization of wound and in cosmetic applications. Silver ions are used for their antimicrobial properties. We studied formation of complex between these two compounds in this work, especially with the respect of its possible usage in development of vessel substitutions, where antibacterial properties of material together with its biocompatibility are highly demanded. Complex was studied electrochemically using the differential pulse voltammetry method.
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