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功能化纤维素纳米纤维作为交联剂制备壳聚糖自修复水凝胶和形状记忆冰晶。

Functionalized Cellulose Nanofibers as Crosslinkers to Produce Chitosan Self-Healing Hydrogel and Shape Memory Cryogel.

机构信息

Institute of Polymer Science and Engineering, National Taiwan University, Taipei 10617, Taiwan, ROC.

National Synchrotron Radiation Research Center, Hsinchu 30076, Taiwan, ROC.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 17;14(32):36353-36365. doi: 10.1021/acsami.2c07170. Epub 2022 Aug 5.

Abstract

Cellulose nanofibers functionalized with multiple aldehyde group were synthesized as the crosslinker to produce composite self-healing hydrogel and shape memory cryogel from chitosan. The hydrogel possessed effective self-healing (∼100% efficiency) and shear-thinning properties. The cryogel had macroporous structure, large water absorption (>4300%), and high compressibility. Both hydrogel and cryogel were injectable. In particular, the cryogel (nanocellulose/chitosan 1:6) revealed thermally induced shape memory, the mechanism of which was elucidated by in situ small-angle X-ray scattering (SAXS) and wide-angle X-ray scattering (WAXS) as changes in orientation of the induced crystalline structure during the shape memory program. The shape memory cryogel with a large size (15 mm × 10 mm × 1.1 mm) injected through a 16 G syringe needle was recoverable in 37 °C water. Moreover, the cryogel was cytocompatible and promoted cell growth. The nanocellulose-chitosan composite hydrogel and cryogel are injectable and degradable biomaterials with adjustable mechanical properties for potential medical applications.

摘要

纤维素纳米纤维经过多醛基功能化后作为交联剂,用于制备壳聚糖基复合自修复水凝胶和形状记忆冷冻凝胶。该水凝胶具有有效的自修复(~100%效率)和剪切稀化性能。冷冻凝胶具有大孔结构、高吸水性(>4300%)和高压缩性。水凝胶和冷冻凝胶均具有可注射性。特别是冷冻凝胶(纳米纤维素/壳聚糖 1:6)表现出热致形状记忆性能,其机制通过原位小角 X 射线散射(SAXS)和广角 X 射线散射(WAXS)进行了阐明,这是在形状记忆过程中诱导结晶结构的取向变化。通过 16G 注射器针头注射的尺寸较大(15mm×10mm×1.1mm)的形状记忆冷冻凝胶在 37°C 水中可恢复。此外,该冷冻凝胶具有细胞相容性并促进细胞生长。纳米纤维素-壳聚糖复合水凝胶和冷冻凝胶是可注射和可降解的生物材料,具有可调节的机械性能,有望用于医学应用。

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