Djordjevic Aleksandar, Ignjatovic Nenad, Seke Mariana, Jovic Danica, Uskokovic Dragan, Rakocevic Zlatko
J Nanosci Nanotechnol. 2015 Feb;15(2):1538-42. doi: 10.1166/jnn.2015.8671.
Fullerenols are polyhydroxylated, water soluble derivatives of fullerene C60, with potential application in medicine as diagnostic agents, antioxidants or nano drug carriers. This paper describes synthesis and physical characterization of a new nanocomposite hydroxyapatite/fullerenol. Surface of the nanocomposite hydroxyapatite/fullerenol is inhomogeneous with the diameter of the particles in the range from 100 nm to 350 nm. The ζ potential of this nanocomposite is ten times lower when compared to hydroxyapatite. Surface phosphate groups of hydroxyapatite are prone to forming hydrogen bonds, when in close contact with hydroxyl groups, which could lead to formation of hydrogen bonds between hydroxyapatite and hydroxyl groups of fullerenol. The surface of hydroxyapatite particles (-2.5 mV) was modified by fullerenol particles, as confirmed by the obtained ζ potential value of the nanocomposite biomaterial hydroxyapatite/fullerenol (-25.0 mV). Keywords: Hydroxyapatite, Fullerenol, Nanocomposite, Surface Analysis.
富勒醇是富勒烯C60的多羟基化水溶性衍生物,在医学上有作为诊断剂、抗氧化剂或纳米药物载体的潜在应用。本文描述了一种新型纳米复合材料羟基磷灰石/富勒醇的合成及物理表征。纳米复合材料羟基磷灰石/富勒醇的表面不均匀,颗粒直径在100纳米至350纳米范围内。与羟基磷灰石相比,这种纳米复合材料的ζ电位低十倍。当羟基磷灰石的表面磷酸基团与羟基紧密接触时,容易形成氢键,这可能导致羟基磷灰石与富勒醇的羟基之间形成氢键。纳米复合生物材料羟基磷灰石/富勒醇的ζ电位值(-25.0毫伏)证实了富勒醇颗粒对羟基磷灰石颗粒表面(-2.5毫伏)进行了改性。关键词:羟基磷灰石,富勒醇,纳米复合材料,表面分析。