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用于固态核磁共振探头的涡旋线圈谐振器结构减少射频感应样品加热

Reduction of RF-induced sample heating with a scroll coil resonator structure for solid-state NMR probes.

作者信息

Stringer John A, Bronnimann Charles E, Mullen Charles G, Zhou Donghua H, Stellfox Sara A, Li Ying, Williams Evan H, Rienstra Chad M

机构信息

Varian, Inc., 2607 Midpoint Drive, Fort Collins, CO 80525, USA.

出版信息

J Magn Reson. 2005 Mar;173(1):40-8. doi: 10.1016/j.jmr.2004.11.015.

Abstract

Heating due to high power 1H decoupling limits the experimental lifetime of protein samples for solid-state NMR (SSNMR). Sample deterioration can be minimized by lowering the experimental salt concentration, temperature or decoupling fields; however, these approaches may compromise biological relevance and/or spectroscopic resolution and sensitivity. The desire to apply sophisticated multiple pulse experiments to proteins therefore motivates the development of probes that utilize the RF power more efficiently to generate a high ratio of magnetic to electric field in the sample. Here a novel scroll coil resonator structure is presented and compared to a traditional solenoid. The scroll coil is demonstrated to be more tolerant of high sample salt concentrations and cause less RF-induced sample heating. With it, the viable experimental lifetime of a microcrystalline ubiquitin sample has been extended by more than an order of magnitude. The higher B1 homogeneity and permissible decoupling fields enhance polarization transfer efficiency in 15N-13C correlation experiments employed for protein chemical shift assignments and structure determination.

摘要

高功率1H去耦导致的加热限制了用于固态核磁共振(SSNMR)的蛋白质样品的实验寿命。通过降低实验盐浓度、温度或去耦场,可以使样品劣化最小化;然而,这些方法可能会损害生物学相关性和/或光谱分辨率及灵敏度。因此,将复杂的多脉冲实验应用于蛋白质的需求推动了更高效利用射频功率以在样品中产生高磁场与电场比的探头的开发。本文介绍了一种新型涡旋线圈谐振器结构,并将其与传统螺线管进行了比较。结果表明,涡旋线圈对高样品盐浓度的耐受性更强,且引起的射频诱导样品加热更少。有了它,微晶泛素样品的可行实验寿命延长了一个多数量级。在用于蛋白质化学位移归属和结构测定的15N-13C相关实验中,更高的B1均匀性和允许的去耦场提高了极化转移效率。

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