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  • 2021 (1)

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  • Journal article (1)

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  • English (1)

Keywords

  • HA modifiedCNF membranes (1)
  • WST test (1)
  • cell counting (1)
  • cell morphology (1)
  • cell viability (1)
  • cytotoxicity (1)

Author

  • Abd El-Aziz, Asmaa M. (1)
  • El-Maghraby, Azza (1)
  • Ewald, Andrea (1)
  • Kandil, Sherif H. (1)

Institute

  • Abteilung für Funktionswerkstoffe der Medizin und der Zahnheilkunde (1)

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In-vitro cytotoxicity study: cell viability and cell morphology of carbon nanofibrous scaffold/hydroxyapatite nanocomposites (2021)
Abd El-Aziz, Asmaa M. ; El-Maghraby, Azza ; Ewald, Andrea ; Kandil, Sherif H.
Electrospun carbon nanofibers (CNFs), which were modified with hydroxyapatite, were fabricated to be used as a substrate for bone cell proliferation. The CNFs were derived from electrospun polyacrylonitrile (PAN) nanofibers after two steps of heat treatment: stabilization and carbonization. Carbon nanofibrous (CNF)/hydroxyapatite (HA) nanocomposites were prepared by two different methods; one of them being modification during electrospinning (CNF-8HA) and the second method being hydrothermal modification after carbonization (CNF-8HA; hydrothermally) to be used as a platform for bone tissue engineering. The biological investigations were performed using in-vitro cell counting, WST cell viability and cell morphology after three and seven days. L929 mouse fibroblasts were found to be more viable on the hydrothermally-modified CNF scaffolds than on the unmodified CNF scaffolds. The biological characterizations of the synthesized CNF/HA nanofibrous composites indicated higher capability of bone regeneration.
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