首页> 外文OA文献 >Proton Environments in Biomimetic Calcium Phosphates\ud Formed from Mesoporous Bioactive CaO-SiO2-\ud P2O5 Glasses in vitro: Insights from Solid-State NMR
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Proton Environments in Biomimetic Calcium Phosphates\ud Formed from Mesoporous Bioactive CaO-SiO2-\ud P2O5 Glasses in vitro: Insights from Solid-State NMR

机译:仿生磷酸钙中的质子环境\ ud 由介孔生物活性CaO-SiO2- \ ud形成 P2O5体外眼镜:固态NMR的见解

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摘要

When exposed to body fluids, mesoporous bioactive glasses (MBGs) of the CaO{SiO2{P2O5 system develop a bone-bonding surface layer that initially consists of amorphous calcium phosphate(ACP), which transforms into hydroxy-carbonate apatite (HCA) with a very similar composition as bone/dentin mineral. Information from various 1H-based solid-state nuclear magnetic resonance (NMR) experiments were combined to elucidate the evolution of the proton speciations both at the MBG surface and within each ACP/HCA constituent of the biomimetic phosphate layer formed when each of three MBGs with distinct Ca, Si, and P contents was immersed in a simulated body fluid (SBF) for variable periods between 15 min and 30 days. Directly excited magic-angle-spinning (MAS) 1H NMR spectra mainly reflect the MBG component, whose surface is rich in water and silanol (SiOH) moieties. Double-quantum{single-quantum correlation 1H NMR experimentation at fast MAS revealed their interatomic proximities. The comparatively minor H species of each ACP and HCA component were probed selectively by heteronuclear 1H{31P NMR experimentation. The initially prevailing ACP phase comprises H2O and "non-apatitic" HPO2.
机译:当暴露于体液中时,CaO {SiO2 {P2O5系统]的中孔生物活性玻璃(MBG)会形成骨粘合表面层,该表面最初由无定形磷酸钙(ACP)组成,该无定形磷酸钙转变为羟基碳酸钙磷灰石(HCA),与骨骼/牙本质矿物质非常相似。结合来自各种基于1H的固态核磁共振(NMR)实验的信息,以阐明在MBG表面以及仿生磷酸盐层的每个ACP / HCA成分中质子形态的演变,当三个MBG各自具有将不同的Ca,Si和P含量浸入模拟体液(SBF)中15分钟至30天之间的可变时间。直接激发的魔角旋转(MAS)1H NMR光谱主要反映了MBG组分,其表面富含水和硅烷醇(SiOH)部分。在快速MAS上进行的双量子{单量子相关1H NMR实验显示了它们的原子间邻近性。通过异核1H {31P NMR实验)选择性地探测了每个ACP和HCA组分的相对较小的H物种。最初占优势的ACP阶段包括H2O和“非脂族” HPO2。

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