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Nanofibrous material from hyaluronan derivatives preserving fibrous structure in aqueous environment.
Skuhrovcová, Kristýna; Kotzianová, Adéla; Bardonová, Lenka; Zidek, Ondrej; Toropitsyn, Evgeniy; Vágnerová, Hana; Cápová, Aneta; Dostálová, Katerina; Hermannová, Martina; Pokorný, Marek; Velebný, Vladimír.
Afiliação
  • Skuhrovcová K; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic; Centre of Polymer Systems, Tomas Bata University in Zlín, Trída Tomáse Bati 5678, 760 01 Zlín, Czech Republic. Electronic address: skuhrovcova@contipro.com.
  • Kotzianová A; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: kotzianova@contipro.com.
  • Bardonová L; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic; Nanotechnology Centre, Energy and Environmental Technology Centre, VSB-Technical University of Ostrava, 17, Listopadu 2172/15, 708 00 Ostrava, Czech Republic. Electronic address: bardonova@contipro.com.
  • Zidek O; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: Ondrej.Zidek@contipro.com.
  • Toropitsyn E; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: toropitsyn@contipro.com.
  • Vágnerová H; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: Hana.Vagnerova@contipro.com.
  • Cápová A; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic; Department of Biological and Biochemical Sciences, Faculty of Chemical Technology, University of Pardubice, Studentska 573, 532 10 Pardubice, Czech Republic. Electronic address: capova@contipro.com.
  • Dostálová K; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: dostalova@contipro.com.
  • Hermannová M; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: hermannova@contipro.com.
  • Pokorný M; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: pokorny@contipro.com.
  • Velebný V; Contipro a.s., Dolní Dobrouc 401, 561 02, Czech Republic. Electronic address: velebny@contipro.com.
Carbohydr Polym ; 276: 118785, 2022 Jan 15.
Article em En | MEDLINE | ID: mdl-34823796
ABSTRACT
Nanofibrous materials produced from natural polymers have wide range of potential uses in regenerative medicine. This paper focuses on preparation of nanofibrous layers produced from intentionally hydrophobized derivatives of hyaluronan, which is known for its ability to promote wound healing. This structural modification of hyaluronan expands the range of potential uses of this promising material, which is otherwise limited due to the hydrophilic nature of hyaluronic acid. The aim of this research was preparation of nanofibrous material that would retain its fibrous structure and dimensional stability even after getting into contact with an aqueous medium, which is impossible to achieve with layers composed solely of native hyaluronan. As a result, such material would be able to retain its breathability and good mechanical properties when both dry and wet. Furthermore, all prepared materials were proved non-toxic for cells. This self-supporting nanofibrous matrix can be used as a scaffold, or porous wound dressing.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Carbohydr Polym Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: Carbohydr Polym Ano de publicação: 2022 Tipo de documento: Article