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Xenon-Water Interaction in Bacterial Suspensions as Studied by NMR

机译:NMR研究细菌悬浮液中的氙-水相互作用

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Xenon is a perspective gas for creation of oxygen free environment for different applications of biomaterials. To use xenon in suspensions and products properly it is necessary to know the molecular mechanisms of its interactions with water and cells. This work reports the study of bacterial suspensions of Escherichia coli in the presence of xenon using nuclear magnetic resonance (NMR). The work studied how the spin-lattice relaxation times of water protons in suspension change under xenon conditions. Xenon is able to form clathrate hydrates with water molecules at a temperature above the melting point of ice. The work studied NMR relaxation times which reflect the rotation freedom of water molecules in suspension. Lower relaxation times indicate reduced rotational freedom of water. Single exponential behavior of spin-lattice relaxation of protons in the suspensions of microorganisms has been registered. A recovery of longitudinal magnetization in cell suspensions with xenon clathrates has been characterized by two peaks in T_(1)-distribution. Fast relaxing T_(1)-component was related to the intracellular water and depended on the amount of xenon clathrates. The obtained results elucidate how the NMR method can monitor the process of clathrate formation and how the xenon atoms and hydrates interact with cells.
机译:氙气是一种透视图气体,可为生物材料的不同应用创造无氧环境。要在悬浮液和产品中正确使用氙,必须了解氙与水和细胞相互作用的分子机理。这项工作报告了使用核磁共振(NMR)在氙气存在下对大肠杆菌细菌悬浮液的研究。这项工作研究了在氙气条件下水质子在悬浮液中的自旋晶格弛豫时间如何变化。氙能够在高于冰的熔点的温度下与水分子形成笼形水合物。这项工作研究了NMR弛豫时间,该时间反映了悬浮物中水分子的旋转自由度。较低的松弛时间表明水的旋转自由度降低。质子在微生物悬浮液中的自旋-晶格弛豫的单指数行为已得到记录。具有氙包合物的细胞悬浮液中纵向磁化强度的恢复已通过T_(1)-分布中的两个峰表征。快速松弛T_(1)组件与细胞内水有关,并取决于氙气包合物的量。获得的结果阐明了NMR方法如何监测包合物的形成过程以及氙原子和水合物如何与细胞相互作用。

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