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TOTAPOL:一种用于水介质中动态核极化实验的双自由基极化剂。

TOTAPOL: a biradical polarizing agent for dynamic nuclear polarization experiments in aqueous media.

作者信息

Song Changsik, Hu Kan-Nian, Joo Chan-Gyu, Swager Timothy M, Griffin Robert G

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Am Chem Soc. 2006 Sep 6;128(35):11385-90. doi: 10.1021/ja061284b.

Abstract

In a previous publication, we described the use of biradicals, in that case two TEMPO molecules tethered by an ethylene glycol chain of variable length, as polarizing agents for microwave driven dynamic nuclear polarization (DNP) experiments. The use of biradicals in place of monomeric paramagnetic centers such as TEMPO yields enhancements that are a factor of approximately 4 larger (epsilon approximately 175 at 5 T and 90 K) and concurrently the concentration of the polarizing agent is a factor of 4 smaller (10 mM electron spins), reducing the residual electron nuclear dipole broadening. In this paper we describe the synthesis and characterization by EPR and DNP/NMR of an improved polarizing agent 1-(TEMPO-4-oxy)-3-(TEMPO-4-amino)propan-2-ol (TOTAPOL). Under the same experimental conditions and using 2.5 mm magic angle rotors, this new biradical yields larger enhancements (epsilon approximately 290) at lower concentrations (6 mM electron spins) and has the additional important property that it is compatible with experiments in aqueous media, including salt solutions commonly used in the study of proteins and nucleic acids.

摘要

在之前的一篇出版物中,我们描述了双自由基的使用,在那种情况下是由可变长度的乙二醇链连接的两个TEMPO分子,作为微波驱动动态核极化(DNP)实验的极化剂。使用双自由基代替单体顺磁中心(如TEMPO)可产生约4倍大的增强效果(在5 T和90 K时ε约为175),同时极化剂的浓度小4倍(10 mM电子自旋),减少了残留的电子核偶极展宽。在本文中,我们描述了一种改进的极化剂1-(TEMPO-4-氧基)-3-(TEMPO-4-氨基)丙-2-醇(TOTAPOL)的合成以及通过电子顺磁共振(EPR)和DNP/核磁共振(NMR)进行的表征。在相同的实验条件下并使用2.5 mm魔角旋转器,这种新的双自由基在较低浓度(6 mM电子自旋)下可产生更大的增强效果(ε约为290),并且具有与水性介质中的实验兼容的重要特性,包括蛋白质和核酸研究中常用的盐溶液。

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