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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Preparation and characterization of double macromolecular network (DMMN) hydrogels based on hyaluronan and high molecular weight poly(ethylene glycol)
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Preparation and characterization of double macromolecular network (DMMN) hydrogels based on hyaluronan and high molecular weight poly(ethylene glycol)

机译:基于透明质酸和高分子量聚乙二醇的双大分子网络(DMMN)水凝胶的制备与表征

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摘要

Abundant research efforts have been devoted to meet the demands for high-strength hydrogels in biomedical applications. Double-network (DN) hydrogels and homogeneous hydrogels are two typical samples. In this study, a novel ultra-strong and resilient double macromolecular network (DMMN) hydrogel system has been developed via a two-step sequential cross-linking process using hyaluronan (HA) and high molecular weight poly(ethylene glycol) (PEG) for the first and second network, respectively. A lower concentration of the HA precursor solution and a higher concentration of the PEG precursor solution as well as a higher molecular weight of the PEG precursor are beneficial to produce high-strength DMMN gels. Dynamic light scattering measurements demonstrate that DMMN gels possess the more evenly distributed polymer networks; the distinctive double and relatively evenly distributed networks of the DMMN gel make it combine the current DN and homogeneous network strategies for preparing robust hydrogels. The optimized DMMN gel is capable of sustaining up to 50 MPa of compressive stress. Besides, DMMN gels exhibit excellent cytocompatibility. This study expands the DN principle in designing and fabricating high-strength hydrogels with biocompatible macromolecules that show a promising prospect for biomedical applications.
机译:为了满足生物医学应用中对高强度水凝胶的需求,已经进行了大量的研究工作。双网(DN)水凝胶和均质水凝胶是两个典型的样品。在这项研究中,通过使用透明质酸(HA)和高分子量聚乙二醇(PEG)的两步顺序交联过程,开发了一种新型的超强弹性双高分子网络(DMMN)水凝胶系统。第一和第二网络。较低浓度的HA前体溶液和较高浓度的PEG前体溶液以及较高分子量的PEG前体有利于生产高强度DMMN凝胶。动态光散射测量结果表明,DMMN凝胶具有更均匀分布的聚合物网络。 DMMN凝胶独特的双重且相对均匀分布的网络使它结合了目前的DN和均相网络策略来制备坚固的水凝胶。优化的DMMN凝胶能够承受高达50 MPa的压应力。此外,DMMN凝胶表现出优异的细胞相容性。这项研究扩展了DN原理在设计和制造具有生物相容性大分子的高强度水凝胶中的应用,这些分子在生物医学应用中显示出广阔的前景。

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