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首页> 外文期刊>Journal of magnetic resonance >Apparatus for rapid adjustment of the degree of alignment of NMR samples in aqueous media: Verification with residual quadrupolar splittings in Na-23 and (CS)-C-133 spectra
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Apparatus for rapid adjustment of the degree of alignment of NMR samples in aqueous media: Verification with residual quadrupolar splittings in Na-23 and (CS)-C-133 spectra

机译:用于快速调节水性介质中NMR样品的比对度的设备:用Na-23和(CS)-C-133光谱中的残留四极分裂进行验证

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NMR spectra of Na-23(+) and Cs-133(+) in gelatine in a silicone rubber tube that was stretched to various extents showed remarkably reproducible resonance multiplicity. The relative intensities of the components of the split peaks had ratios, 3:4:3, and 7:12:15:16:15:12:7, respectively, that conformed with those predicted using a Mathematica program. The silicone-rubber tube was sealed at its lower end by a small rubber stopper and placed inside a thick-walled glass tube. Gelatine was injected in solution into the silicone tube and 'set' by cooling below 30 degrees C. A plastic thumb-screw held the silicone tube at various degrees of extension, up to similar to 2-fold. After constituting the gel in buffers containing NaCl and CsCl, both Na-23 and Cs-113 NMR spectroscopy revealed that after stretching the initial single Lorentzian line was split into a well-resolved triplet and a heptet, respectively. This was interpreted as being due to coupling between the electric quadrupoles of the nuclei and the average electric field gradient tensor of the collagen molecules of gelatine; these molecules became progressively more aligned in the direction of the main magnetic field, B-0, of the vertical bore magnet, as the gel was stretched. This apparatus provides a simple way of demonstrating fundamental physical characteristics of quadrupolar cations, some characteristics of gelatine under stretching, and a way to invoke static distortion of red blood cells. It should be useful with these and other cell types, for studies of metabolic and membrane transport characteristics that may change when the cells are distorted, and possibly for structural studies of macromolecules. (c) 2006 Elsevier Inc. All rights reserved.
机译:硅橡胶管中明胶中Na-23(+)和Cs-133(+)的NMR光谱在不同程度的拉伸下显示出可重现的共振多重性。分裂峰的组分的相对强度分别具有3:4:3和7:12:15:16:15:12:7的比率,与使用Mathematica程序预测的比率一致。硅橡胶管的下端用一个小的橡胶塞密封,并放在厚壁玻璃管内。将明胶溶液注入硅树脂管中,并通过冷却至30摄氏度以下来“凝固”。塑料指旋螺钉将硅树脂管以各种伸长度固定,最多达到2倍。在包含NaCl和CsCl的缓冲液中构成凝胶后,Na-23和Cs-113 NMR光谱均显示,拉伸后,最初的单个Lorentzian谱线分别拆分为良好解析的三重峰和庚基。认为这是由于核的电四极与明胶的胶原分子的平均电场梯度张量之间的耦合所致。随着凝胶的拉伸,这些分子在垂直孔磁体的主磁场B-0的方向上逐渐变得更加对齐。该装置提供了证明四极阳离子的基本物理特性,明胶在拉伸下的某些特性的简单方法,以及引起红细胞静态变形的方法。对于这些和其他类型的细胞,对于当细胞变形时可能发生变化的代谢和膜转运特性的研究,以及对大分子的结构研究,都应该是有用的。 (c)2006 Elsevier Inc.保留所有权利。

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