首页> 外文期刊>The Journal of Chemical Physics >Analytical solution for the depolarization of hyperpolarized nuclei by chemical exchange saturation transfer between free and encapsulated xenon (HyperCEST)
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Analytical solution for the depolarization of hyperpolarized nuclei by chemical exchange saturation transfer between free and encapsulated xenon (HyperCEST)

机译:通过游离和包封的氙之间的化学交换饱和转移使超极化核去极化的解析解(HyperCEST)

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We present an analytical solution of the Bloch-McConnell equations for the case of chemical exchange saturation transfer between hyperpolarized nuclei in cavities and in solvent (HyperCEST experiment). This allows quantitative investigation of host-guest interactions by means of nuclear magnetic resonance spectroscopy and, due to the strong HyperCEST signal enhancement, even NMR imaging. Hosts of interest can be hydrophobic cavities in macromolecules or artificial cages like cryptophane-A which was proposed as a targeted biosensor. Relevant system parameters as exchange rate and host concentration can be obtained from the monoexponential depolarization process which is shown to be governed by the smallest eigenvalue in modulus. For this dominant eigenvalue we present a useful approximation leading to the depolarization rate for the case of on- and offresonant irradiation. It is shown that this rate is a generalization of the longitudinal relaxation rate in the rotating frame. We demonstrate for the free and cryptophane-A-encapsulated xenon system, by comparison with numerical simulations, that HyperCEST experiments are precisely described in the valid range of this widely applicable analytical approximation. Altogether, the proposed analytical solution allows optimization and quantitative analysis of HyperCEST experiments but also characterization and optimal design of possible biosensors.
机译:我们为腔和溶剂中的超极化核之间的化学交换饱和转移提供了Bloch-McConnell方程的解析解(HyperCEST实验)。这使得可以通过核磁共振波谱对宿主与客体的相互作用进行定量研究,并且由于强大的HyperCEST信号增强,甚至可以进行NMR成像。感兴趣的宿主可以是大分子中的疏水腔,也可以是拟定为目标生物传感器的人工笼子,如隐喻-A。可以从单指数去极化过程中获得相关的系统参数,如交换速率和主体浓度,该过程显示受模量的最小特征值支配。对于这个主要的特征值,我们提出了一个有用的近似值,可以得出共振和非共振辐射情况下的去极化率。结果表明,该速率是旋转框架中纵向松弛速率的概括。通过与数值模拟进行比较,我们证明了对于自由的和隐含A的氙气系统,HyperCEST实验在这种广泛适用的分析近似的有效范围内得到了精确描述。总之,所提出的分析解决方案可以对HyperCEST实验进行优化和定量分析,还可以对可能的生物传感器进行表征和优化设计。

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