Minamisawa Hirogo, Kojima Yoshiyuki, Aizawa Mamoru
Organization for the Strategic Coordination of Research and Intellectual Properties, Meiji University, 1-1-1 Higashimita, Tama-ku, Kawasaki, Kanagawa 214-8571, Japan.
Department of Materials and Applied Chemistry, Faculty of Science and Engineering, Nihon University, 1-8, Kanda-Surugadai, Chiyoda-ku, Tokyo 101-8308, Japan.
Materials (Basel). 2022 Mar 15;15(6):2176. doi: 10.3390/ma15062176.
Chelate-setting calcium-phosphate cements (CPCs) have been developed using inositol phosphate (IP6) as a chelating agent. However, the compressive strength of the CPC fabricated from a commercially available hydroxyapatite (HAp) powder was approximately 10 MPa. In this study, we miniaturized HAp particles as a starting powder to improve the compressive strength of chelate-setting CPCs and examined the adsorption properties of IP6 onto HAp powders. An HAp powder with a specific surface area (SSA) higher than 200 m/g (HApHS) was obtained by ultrasonic irradiation for 1 min in a wet synthesis process, greatly improving the SSA (214 m/g) of the commercial powder without ultrasonic irradiation. The HApHS powder was found to be a B-type carbonate-containing HAp in which the phosphate groups in apatite were replaced by carbonate groups. Owing to the high SSA, the HApHS powder also showed high IP6 adsorption capacity. The adsorption phenomena of IP6 to our HApHS and commercially available Hap powders were found to follow the Freundlich and Langmuir models, respectively. We found that IP6 adsorbs on the HApHS powder by both physisorption and chemisorption. The fine HapHS powder with a high SSA is a novel raw powder material, expected to improve the compressive strength of chelate-setting CPCs.
已开发出使用肌醇六磷酸(IP6)作为螯合剂的螯合固化磷酸钙骨水泥(CPC)。然而,由市售羟基磷灰石(HAp)粉末制成的CPC的抗压强度约为10MPa。在本研究中,我们将HAp颗粒作为起始粉末进行细化,以提高螯合固化CPC的抗压强度,并研究了IP6在HAp粉末上的吸附特性。通过在湿合成过程中超声辐照1分钟,获得了比表面积(SSA)高于200m²/g的HAp粉末(HApHS),极大地提高了未进行超声辐照的市售粉末的SSA(214m²/g)。发现HApHS粉末是一种含B型碳酸盐的HAp,其中磷灰石中的磷酸基团被碳酸基团取代。由于高SSA,HApHS粉末也表现出高IP6吸附容量。发现IP6对我们的HApHS和市售Hap粉末的吸附现象分别遵循Freundlich和Langmuir模型。我们发现IP6通过物理吸附和化学吸附都吸附在HApHS粉末上。具有高SSA的细HapHS粉末是一种新型原料粉末,有望提高螯合固化CPC的抗压强度。