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      Preparation and characterization of nano-sized hydroxyapatite powders produced in a radio frequency (rf) thermal plasma

      , , , , ,
      Materials Science and Engineering: A
      Elsevier BV

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          Enhanced functions of osteoblasts on nanophase ceramics.

          T. Webster (2000)
          Select functions of osteoblasts (bone-forming cells) on nanophase (materials with grain sizes less than 100 nm) alumina, titania, and hydroxyapatite (HA) were investigated using in vitro cellular models. Compared to conventional ceramics, surface occupancy of osteoblast colonies was significantly less on all nanophase ceramics tested in the present study after 4 and 6 days of culture. Osteoblast proliferation was significantly greater on nanophase alumina, titania, and HA than on conventional formulations of the same ceramic after 3 and 5 days. More importantly, compared to conventional ceramics, synthesis of alkaline phosphatase and deposition of calcium-containing mineral was significantly greater by osteoblasts cultured on nanophase than on conventional ceramics after 21 and 28 days. The results of the present study provided the first evidence of enhanced long-term (on the order of days to weeks) functions of osteoblasts cultured on nanophase ceramics; in this manner, nanophase ceramics clearly represent a unique and promising class of orthopaedic/dental implant formulations with improved osseointegrative properties.
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            Nanocrystalline metals crystallized from amorphous solids: nanocrystallization, structure, and properties

            K. Lu (1996)
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              The process of electrochemical deposited hydroxyapatite coatings on biomedical titanium at room temperature

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                Author and article information

                Journal
                Materials Science and Engineering: A
                Materials Science and Engineering: A
                Elsevier BV
                09215093
                June 2004
                June 2004
                : 374
                : 1-2
                : 101-108
                Article
                10.1016/j.msea.2003.12.040
                0b81ea97-7708-4538-8e42-29bdfccf990a
                © 2004

                http://www.elsevier.com/tdm/userlicense/1.0/

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