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聚丙二醇二酯的血液相容性及其水结构:通过差示扫描量热法和氢核磁共振光谱法观察

Blood compatibility of poly(propylene glycol diester) and its water structure observed by differential scanning calorimetry and H-nuclear magnetic resonance spectroscopy.

作者信息

Mochizuki Akira, Udagawa Ayaka, Miwa Yuko, Oda Yoshiki, Yoneyama Konatsu, Okuda Chihiro

机构信息

Department of Bio-Medical Engineering, School of Engineering, Tokai University, Isehara, Japan.

Toray Research Center, Otsu, Japan.

出版信息

J Biomater Sci Polym Ed. 2024 Jun;35(8):1258-1272. doi: 10.1080/09205063.2024.2324505. Epub 2024 Mar 8.

Abstract

Recently, we applied solution H-nuclear magnetic resonance spectroscopy (H NMR) to analyze the water (deuterium oxide, DO) structure in several biopolymers at ambient temperature. We established that polymers with good blood compatibility (i.e. poly(2-methoxyethyl acrylate) (PMEA)) have water observed at high magnetic fields (upfield) compared with bulk water. Polymers containing poly(propylene glycol) (PPG) or poly(propylene oxide) (PPO) exhibit good compatibility; however, the reason for this remains unclear. In addition, reports on the blood compatibility of PPO/PPG are limited. Therefore, PPG diester (PPGest) was prepared as a model polymer, and its blood compatibility and water structure were investigated. PPGest exhibited excellent blood compatibility. The water in PPGest was observed upfield by H NMR, and it was defined as non-freezing water differential scanning calorimetry. Based on these observations, the relationship between the blood compatibility and water structure of PPGest is discussed by comparing with those of PMEA, and the reason for the good performance of PPG/PPO-based polymers is discussed.

摘要

最近,我们应用溶液氢核磁共振光谱法(H NMR)在环境温度下分析了几种生物聚合物中的水(重水,D₂O)结构。我们发现,与大量水相比,具有良好血液相容性的聚合物(即聚(丙烯酸2-甲氧基乙酯)(PMEA))在高磁场(高场)下能观察到水。含有聚丙二醇(PPG)或聚环氧丙烷(PPO)的聚合物表现出良好的相容性;然而,其原因尚不清楚。此外,关于PPO/PPG血液相容性的报道有限。因此,制备了PPG二酯(PPGest)作为模型聚合物,并研究了其血液相容性和水结构。PPGest表现出优异的血液相容性。通过H NMR在高场观察到PPGest中的水,通过差示扫描量热法将其定义为不冻水。基于这些观察结果,通过与PMEA的比较,讨论了PPGest的血液相容性与水结构之间的关系,并讨论了基于PPG/PPO的聚合物性能良好的原因。

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