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基于藻酸盐的双交联策略组装的自修复水凝胶:机械性能的制备和评价。

Alginate-based self-healing hydrogels assembled by dual cross-linking strategy: Fabrication and evaluation of mechanical properties.

机构信息

Polymer Research Laboratory, Department of Chemistry, Institute for Advanced Studies in Basic Science (IASBS), Gava Zang, Zanjan 45137-66731, Iran.

Polymer Research Laboratory, Department of Chemistry, Institute for Advanced Studies in Basic Science (IASBS), Gava Zang, Zanjan 45137-66731, Iran.

出版信息

Int J Biol Macromol. 2021 Nov 30;191:139-151. doi: 10.1016/j.ijbiomac.2021.09.062. Epub 2021 Sep 17.

Abstract

One way to enhance the poor mechanical properties of the self-healing hydrogels based on host-guest (HG) interaction is employing the dual cross-linking method. Here, the alginate-based hydrogels based on HG complexation were prepared through the modification of alginate (ALG) polysaccharide with beta-cyclodextrin (βCD) and adamantane (Ad) as host and guest groups with different grafting values, respectively. The porous structure was confirmed for all ALG-CD:ALG-Ad hydrogels. The average pore size of ALG-CD:ALG-Ad hydrogel cross-linked by HG interactions was 288 μm. Mechanical properties of the alginate-based HG hydrogels were improved by incorporating Ca ions in their structure through dual cross-linking methodology. The maximum modulus of the porous dual-crosslinked hydrogel was reached up to 6500 Pa. The healing time of less than 5 s was obtained for the alginate-based hydrogels. The fabricated hydrogels can be used in 3D printing, tissue engineering, and drug delivery systems due to their biocompatibility and shear-thinning behavior.

摘要

一种增强基于主体客体(HG)相互作用的自修复水凝胶机械性能的方法是采用双重交联方法。在这里,通过用β-环糊精(βCD)和金刚烷(Ad)分别对藻酸盐多糖进行修饰,制备了基于 HG 络合的藻酸盐(ALG)水凝胶,作为主客体基团,具有不同的接枝值。所有 ALG-CD:ALG-Ad 水凝胶均证实具有多孔结构。通过 HG 相互作用交联的 ALG-CD:ALG-Ad 水凝胶的平均孔径为 288 μm。通过在其结构中掺入 Ca 离子,通过双重交联方法提高了藻酸盐基 HG 水凝胶的机械性能。多孔双重交联水凝胶的最大模量可达 6500 Pa。基于藻酸盐的水凝胶的愈合时间小于 5 s。由于其生物相容性和剪切稀化行为,所制备的水凝胶可用于 3D 打印、组织工程和药物输送系统。

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