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Polymer-Based Biomaterials and Tissue Engineering

Polymer-Based Biomaterials and Tissue Engineering

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Polymers in the form of films, fibers, nano- and microspheres, composites, and porous supports are promising biomaterials for a wide range of advanced biomedical applications. This Special Issue presents novel studies and new approaches in the field of biomaterials for tissue engineering and drug delivery. It includes seven original research articles and two reviews on biomaterials based on polymeric matrices with various structures, including porous composites, nanofibrous scaffolds, meshes, and hydrogels, which can include micro- or nanoparticles (graphene nanosheets, bioactive glass, and hydroxyapatite and halloysite nanotubes).

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Keywords

  • bioactive glass
  • Biocompatibility
  • carbon-based nanocomposite
  • cardiovascular stent
  • carrageenan
  • catalysts
  • CD31
  • collagen
  • conductive cell substrate
  • copolymers
  • Copper
  • drug release
  • electrospun nanofibres
  • graphene nanosheets
  • halloysite nanotubes (HNTs)
  • hernia repair
  • human endothelial cells
  • hydroxyapatite
  • intranasal application
  • medical application
  • medicine
  • n/a
  • nanocomposites
  • nanoparticle
  • Nanoparticles
  • nonwoven
  • optimization
  • parastomal hernia
  • poly(3-hydroxybutyrate-co-3-hydroxyvalerate)
  • poly(ε-caprolactone) (PCL)
  • Polyhydroxyalkanoates
  • polylactic acid
  • polylactic acid (PLA)
  • polymer synthesis
  • polymer-ceramic composites
  • polysaccharide
  • Polyvinyl Alcohol
  • Prevention
  • pulmonary drug delivery
  • quality by design
  • release kinetic modelling
  • ring-opening polymerization
  • rivastigmine
  • scaffolds
  • semi-IPN hydrogel
  • surface free energy
  • surface roughness
  • surgical mesh
  • swelling capacity
  • thema EDItEUR::M Medicine and Nursing
  • Tissue Engineering
  • wettability

Links

DOI: 10.3390/books978-3-0365-8236-8

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