National Repository of Grey Literature 2 records found  Search took 0.01 seconds. 
Functionalized chitosan-based nanofibres for accelerated regeneration of soft tissues
Bazikov, Philipp ; Filová, Eva (advisor) ; Kössl, Jan (referee)
To improve the regeneration of soft tissues, wound dressings were developed, containing nanofibers, different in composition and functional features. The work concentrates on chitosan and composite scaffolds containing chitosan. Porous nanofibre materials based on chitosan are very promising for the regeneration of soft tissues. Chitosan exhibits pH-sensitive behavior due to the large number of amino groups on its chains, which makes chitosan nanofibres promising carriers for the delivery of drugs. In this work, the examples of different modifications of nanofibres are shown. To increase the efficiency and accelerate the regeneration of soft tissues, nanofibres are functionalized with bioactive substances of various types: antimicrobial, analgesic, growth factors, etc. To stabilize nanofibres and to improve the physical characteristics, treatments using glutaraldehyde, glyoxal, genipin or heat treatment were used. Chitosan is used to inhibit fibroplasia during wound healing and to promote cell growth and differentiation. The efficiency of antibacterial activity of chitin-glucan complex with nanofibres for wound healing was shown. Reconstruction of deeper wounds, in which skin and soft tissues are damaged, requires measures for spatial reconstruction and stimulation of regeneration processes in the...
Functionalized nanofibers for accelerated regeneration of soft tissues
Bazikov, Philipp ; Filová, Eva (advisor) ; Krulová, Magdaléna (referee)
To improve the regeneration of soft tissues, wound coatings were developed, containing nanofibres, different in composition and functional features. The work concentrates on chitosan and composite scaffolds containing chitosan. Porous nanofiber materials based on chitosan are the most promising nanofibers for the regeneration of soft tissues. Chitosan exhibits pH-sensitive behavior due to the large number of amino groups on its chains, which makes chitosan nanofibers promising carriers for the delivery of macromolecules. To increase the efficiency and accelerate the regeneration of soft tissues, nanofibers are functionalized with bioactive substances of various types: antimicrobial, analgesic, growth factors, etc., as well as functional polymers. To stabilize nanofibers and to improve the physical characteristics, treatment using glutaraldehyde, glyoxal, genipin or heat treatment are used. Chitosan is used to inhibit fibroplasia during wound healing and to promote tissue growth and differentiation in tissue culture. The efficiency of antibacterial activity of chitin-glucan complex with nanofibers for wound healing was shown. Reconstruction of deeper wounds, in which skin and soft tissues are damaged, requires measures for spatial reconstruction and stimulation of regeneration processes in the...

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