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基于磁共振弛豫谱技术揭示透明质酸真皮填充剂的水动力机制。

Mechanism of Water Dynamics in Hyaluronic Dermal Fillers Revealed by Nuclear Magnetic Resonance Relaxometry.

机构信息

Faculty of Mathematics and Computer Science, University of Warmia & Mazury in Olsztyn, Słoneczna 54, 10-710, Olsztyn, Poland.

Current affiliation:Faculty of Mathematics, Physics and Informatics, Gdansk University, Wita Stwosza 57, 80-308, Gdansk, Poland.

出版信息

Chemphyschem. 2019 Nov 5;20(21):2816-2822. doi: 10.1002/cphc.201900761. Epub 2019 Oct 17.

Abstract

H spin-lattice nuclear magnetic resonance relaxation experiments were performed for five kinds of dermal fillers based on hyaluronic acid. The relaxation data were collected over a broad frequency range between 4 kHz and 40 MHz, at body temperature. Thanks to the frequency range encompassing four orders of magnitude, the dynamics of water confined in the polymeric matrix was revealed. It is demonstrated that translation diffusion of the confined water molecules exhibits a two-dimensional character and the diffusion process is slower than diffusion in bulk water by 3-4 orders of magnitude. As far as rotational dynamics of the confined water is concerned, it is shown that in all cases there is a water pool characterized by a rotational correlation time of about 4×10  s. In some of the dermal fillers a fraction of the confined water (about 10 %) forms a pool that exhibits considerably slower (by an order of magnitude) rotational dynamics. In addition, the water binding capacity of the dermal fillers was quantitatively compared.

摘要

进行了五种基于透明质酸的真皮填充剂的 H 核自旋晶格磁共振弛豫实验。弛豫数据在 4 kHz 至 40 MHz 的宽频率范围内、体温条件下采集。由于频率范围涵盖了四个数量级,因此揭示了受限在聚合物基质中的水的动力学。结果表明,受限水分子的平移扩散呈现二维特征,扩散过程比在体相水中慢 3-4 个数量级。就受限水的旋转动力学而言,结果表明在所有情况下,都存在一个以大约 4×10 -1 s 的旋转相关时间为特征的水池。在一些真皮填充剂中,一部分受限水(约 10%)形成了一个水池,其旋转动力学慢得多(约一个数量级)。此外,还定量比较了真皮填充剂的水结合能力。

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