ADRF-CP Surface-Coil Spectroscopy of Synthetic Calcium Phosphates and Bone Mineral

Chandrasekhar Ramanathan , Yaotang Wu , Bettina Pfleiderer , Martin J. Lizak , Leoncio Garrido , Jerome L. Ackerman
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引用次数: 9

Abstract

Proton to phosphorus-31 cross polarization via adiabatic demagnetization in the rotating frame (ADRF-CP) has been used, in conjunction with a surface coil, to detect monohydrogen phosphate (acid phosphate) ions in the presence of a large background of nonprotonated phosphate (orthophosphate) ions in porcine bone and synthetic calcium phosphates. Transient oscillations were observed in the transfer of polarization between the proton dipolar and phosphorus Zeeman nuclear-spin reservoirs at short times after the initiation of thermal contact. The oscillations were observed in all samples, including bone. Orthophosphate suppression was achieved by detecting the signal when the orthophosphate oscillation was passing through zero, and by adjusting the phosphorus RF field to achieve optimal cross polarization with the proton local fields of the acid phosphate ions. ADRF-CP techniques deposit less RF power than traditional spin-lock CP techniques, and are hence compatible within vivoapplication. As the ratio of the protonated to nonprotonated phosphate can be used as a marker for bone-mineral maturity, ADRF-CP spectroscopy creates the possibility of characterizing bone-mineral dynamicsin vivoby solid-state NMR.

合成磷酸钙和骨矿物的ADRF-CP表面线圈光谱
在旋转框架(ADRF-CP)中,通过绝热退磁(ADRF-CP),质子与磷-31交叉极化,与表面线圈一起用于检测猪骨和合成磷酸钙中存在大量非质子化磷酸盐(正磷酸盐)离子的单氢磷酸(酸性磷酸盐)离子。在热接触开始后的短时间内,质子偶极子和磷塞曼核自旋储层之间的极化转移发生了瞬态振荡。在包括骨在内的所有样品中都观察到振荡。通过检测正磷酸盐振荡过零时的信号,调整磷射频场,使其与酸性磷酸盐离子的质子局域场达到最佳交叉极化,实现了正磷酸盐抑制。ADRF-CP技术比传统的自旋锁定CP技术储存更少的射频功率,因此在体内应用中兼容。由于质子化与非质子化磷酸盐的比例可以作为骨矿物成熟度的标志,ADRF-CP光谱创造了通过固态核磁共振在体内表征骨矿物动态的可能性。
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