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通过核磁共振扩散测量法和弛豫测量法研究基于右旋糖酐的水凝胶微/纳米颗粒中的水动力学

Water Dynamics in Dextran-Based Hydrogel Micro/Nanoparticles Studied by NMR Diffusometry and Relaxometry.

作者信息

Umut Evrim, Beira Maria Jardim, Oztop Mecit Halil, Sahiner Nurettin, Sebastião Pedro José, Kruk Danuta

机构信息

Department of Medical Imaging Techniques, School of Healthcare, Dokuz Eylul University, 35330 Izmir, Turkey.

BioIzmir - Health Technologies Development and Accelerator Research Center, 35330 Izmir, Turkey.

出版信息

J Phys Chem B. 2023 Oct 19;127(41):8950-8960. doi: 10.1021/acs.jpcb.3c04452. Epub 2023 Oct 9.

Abstract

Water dynamics in mesoporous dextran hydrogel micro/nanoparticles was investigated by means of nuclear magnetic resonance (NMR) techniques. High-resolution H NMR spectra and pulsed field gradient (PFG) NMR diffusometry measurements obtained on swollen state dextran micro/nanogel revealed the existence of different fractions of water molecules based on their interaction with the gel matrix. In addition to the translational diffusion of bulk water, two more diffusion processes characterized with self-diffusion coefficients 1 and 2 orders of magnitude smaller than that of bulk water were identified. H spin-lattice relaxation dispersion profiles obtained for a broad range of Larmor frequencies using fast field cycling (FFC) and conventional NMR relaxometry techniques allowed us to further clarify the mechanisms of molecular motion. According to the water proton pool fractions and associated self-diffusion coefficients, it is shown that the relaxation contribution associated with reorientation-mediated translational motions (RMTDs) dominates the relaxation dispersion observed at intermediate frequencies. At very low frequencies, the spin-lattice relaxation rate is dominated by the slow solid-gel dynamics probed by the water molecules interacting with the pores' surface hydroxyl groups due to the rapid chemical exchange between surface hydroxyl groups and free water. The correlation time for the thumbling-like motion of the dextran gel was found to be in the submillisecond range. The values of the self-diffusion and coherence lengths associated with motion of water molecules interacting with the solid-gel particles are consistent with the particle size and pore size distributions obtained for the studied dextran gels.

摘要

通过核磁共振(NMR)技术研究了介孔葡聚糖水凝胶微/纳米颗粒中的水动力学。在溶胀态葡聚糖微/纳米凝胶上获得的高分辨率氢核磁共振谱和脉冲场梯度(PFG)核磁共振扩散测量结果表明,基于水分子与凝胶基质的相互作用,存在不同部分的水分子。除了大量水的平移扩散外,还确定了另外两个扩散过程,其自扩散系数比大量水的自扩散系数小1至2个数量级。使用快速场循环(FFC)和传统核磁共振弛豫测量技术在广泛的拉莫尔频率范围内获得的氢自旋晶格弛豫色散曲线,使我们能够进一步阐明分子运动的机制。根据水质子池分数和相关的自扩散系数,结果表明,与重取向介导的平移运动(RMTDs)相关的弛豫贡献在中频观察到的弛豫色散中占主导地位。在非常低的频率下,自旋晶格弛豫率由水分子与孔表面羟基相互作用探测到的缓慢固体-凝胶动力学主导,这是由于表面羟基与自由水之间的快速化学交换。发现葡聚糖凝胶类似翻滚运动的相关时间在亚毫秒范围内。与与固体-凝胶颗粒相互作用的水分子运动相关的自扩散和相干长度值与所研究的葡聚糖凝胶的粒径和孔径分布一致。

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