Hsu Ya-Hsiang, Hassan Asra, Trout Amanda, Bartlett John D, Smith Charles E, McComb David W
Department of Materials Science and Engineering, The Ohio State University Columbus OH USA
Center for Electron Microscopy and Analysis, The Ohio State University Columbus OH USA.
RSC Adv. 2025 May 7;15(19):14848-14858. doi: 10.1039/d4ra08124b. eCollection 2025 May 6.
The identification and differentiation of the mineral phases, hydroxyapatite (HA, Ca(PO)(OH)) and octacalcium phosphate (OCP, CaH(PO)), remains challenging because of their similar composition and chemical structure. In this research, electron energy-loss spectroscopy (EELS) analyses revealed indicators to distinguish HA and OCP and these were applied to examine mineral development in enamel from mouse incisors. Reference EELS data for HA and OCP was established with commercial HA and synthesized OCP. An evaluation of electron damage and a mitigation strategy of multipass imaging was conducted, and the electron dose limitation of OCP was identified. New insights into the mechanism of electron beam damage on the apatite crystal were obtained. With the characterization of the energy-loss spectra and the EELS simulation, the oxygen K-edge was found to be one of the indicators for the differentiation of HA from OCP. The second indicator, the Ca/P ratio, was calculated with a calibrated experimental factor of . Elemental mapping was done to establish the different Ca/P ratio of HA and OCP, and the boundary between these mineral forms. EELS analysis was performed on developing enamel in wild-type (WT) and knockout (KO) mice. This research establishes a protocol for EELS analysis on biological specimens and demonstrates the power and potential of EELS in biomaterial characterization.
由于羟基磷灰石(HA,Ca(PO)(OH))和磷酸八钙(OCP,CaH(PO))的组成和化学结构相似,对它们进行矿物相的识别和区分仍然具有挑战性。在本研究中,电子能量损失谱(EELS)分析揭示了区分HA和OCP的指标,并将其应用于研究小鼠门齿釉质中的矿物发育情况。利用商业HA和合成的OCP建立了HA和OCP的参考EELS数据。对电子损伤进行了评估,并实施了多通道成像的缓解策略,确定了OCP的电子剂量限制。获得了关于电子束对磷灰石晶体损伤机制的新见解。通过对能量损失谱的表征和EELS模拟,发现氧K边是区分HA和OCP的指标之一。第二个指标,即Ca/P比,是用校准后的实验因子 计算得出的。进行了元素映射以确定HA和OCP不同的Ca/P比以及这些矿物形式之间的边界。对野生型(WT)和 基因敲除(KO)小鼠发育中的釉质进行了EELS分析。本研究建立了对生物标本进行EELS分析的方案,并证明了EELS在生物材料表征中的作用和潜力。