COPPER WHITLOCKITE SYNTHESIZED VIA HYDROTHERMAL TRANSFORMATION OF CALCIUM HYDROGEN PHOSPHATE DIHYDRATE

Toshiisa Konishi, Sadayuki Watanabe
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引用次数: 3

Abstract

: Metal ion substitution in calcium phosphate provides a vehicle for therapeutic delivery of metal ions at low cost and with a long shelf life. The whitlockite structure can incorporate metal ions, which enables the introduction of antibacterial and antiviral agents such as copper ions. The present study describes the synthesis of copper whitlockite (CuWH) via a single-step hydrothermal transformation of calcium hydrogen phosphate dihydrate in the presence of copper ions. Hexahedral morphology of single-phase CuWH was synthesized at 220 °C for 12 h at pH 2.0 in the presence of 5 to 7 mol% Cu 2+ ions, suggesting that CuWH precipitation was both dose- and pH-dependent. The CuWH structure contained protonated phosphate, which also suggests that Cu 2+ ions were incorporated not only into the Ca(5) site but also the Ca(4) site. The dissolution test mimicking a bioresorption environment created by osteoclasts showed similar dissolution characteristics of Ca 2+ and Cu 2+ ions in acetic acid–sodium acetate buffer solution containing potassium nitrate at pH 5.5.
二水合磷酸氢钙水热转化合成白钨矿铜
磷酸钙中的金属离子替代为金属离子的治疗递送提供了一种低成本和长保质期的载体。whitlockite结构可以结合金属离子,这使得引入抗菌和抗病毒剂,如铜离子。本研究描述了在铜离子存在下,通过二水合磷酸氢钙的一步水热转化合成铜白钻(CuWH)。在220°C、pH 2.0、5 ~ 7 mol% cu2 +存在下,合成了单相CuWH的六面体形态,表明CuWH的沉淀与剂量和pH均有关。CuWH结构中含有质子化的磷酸,这也表明cu2 +离子不仅被结合到Ca(5)位点,也被结合到Ca(4)位点。模拟破骨细胞生物吸收环境的溶解实验显示,ca2 +和Cu 2+离子在pH为5.5的含硝酸钾的醋酸-醋酸钠缓冲溶液中溶解特性相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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