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从医学应用角度看交联柠檬酸基弹性体的结构-性能相关性研究进展。

Advancements in structure-property correlation studies of cross-linked citric acid-based elastomers from the perspective of medical application.

机构信息

Department of Biotechnology and Physical Chemistry, Faculty of Chemical Engineering and Technology, Cracow University of Technology, Warszawska 24, 31-155 Kraków, Poland.

出版信息

J Mater Chem B. 2021 Aug 28;9(32):6425-6440. doi: 10.1039/d1tb01078f. Epub 2021 Jul 29.

Abstract

Herein, a renewed prominence towards the synthesis of poly(alkylene citrate) (PAC) biomaterials and their detailed chemical, structural and mechanical characterization has been reported. Based on the modifications to the PAC synthesis protocol introduced in this study, the fabrication process was significantly streamlined, the reaction yields were increased, and the homogeneity of the final materials was found to be substantially improved. Comprehensive nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry (MS) studies of the fabricated prepolymers shed light on the mechanism of the PAC cross-linking process and supported the design of materials with enhanced biocompatibility. Therefore, the initial molar ratio of the reagents involved in the synthesis of PAC materials was found to be pivotal to both the biological and mechanical properties of the final products. Moreover, cell viability and proliferation assays revealed enhanced biocompatibility of the materials formulated with a molar ratio of diol over citric acid (3 : 2 mol/mol) in comparison to the most commonly described 1 : 1 analogue without affecting the possibility of further functionalization. Furthermore, this work creates a new paradigm for prospective studies on the properties of modified PAC materials and their application in medicine and tissue engineering.

摘要

本文重新强调了聚(烷撑柠檬酸酯)(PAC)生物材料的合成及其详细的化学、结构和机械特性的研究。基于本研究中对 PAC 合成方案的修改,制造工艺得到了显著简化,反应收率得到了提高,并且最终材料的均匀性得到了实质性的改善。对制备的预聚物进行全面的核磁共振(NMR)光谱和质谱(MS)研究,揭示了 PAC 交联过程的机制,并支持了具有增强生物相容性的材料的设计。因此,发现 PAC 材料合成中涉及的试剂的初始摩尔比对于最终产物的生物学和机械性能都至关重要。此外,细胞活力和增殖实验表明,与最常见的描述为 1:1 摩尔比的类似物相比,用二醇与柠檬酸的摩尔比(3:2mol/mol)配制的材料具有增强的生物相容性,而不会影响进一步功能化的可能性。此外,这项工作为改性 PAC 材料的性能及其在医学和组织工程中的应用的前瞻性研究创造了一个新的范例。

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