Division of Glycoscience, Department of Chemistry, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, AlbaNova University Centre, 106 91, Stockholm, Sweden.
Wallenberg Wood Science Center, Department of Fibre and Polymer Technology, KTH Royal Institute of Technology, 100 44, Stockholm, Sweden.
Sci Rep. 2020 Oct 20;10(1):17842. doi: 10.1038/s41598-020-74860-w.
A delignified wood template with hydrophilic characteristics and high porosity was obtained by removal of lignin. Gelatin was infiltrated into the delignified wood and further crosslinked with a natural crosslinker genipin to form hydrogels. The composite hydrogels showed high mechanical strength under compression and low swelling in physiological condition. The effect of genipin concentrations (1, 50 and 100 mM) on structure and properties of the composite hydrogels were studied. A porous honeycomb structure with tunable pore size and porosity was observed in the freeze-dried composite hydrogels. High elastic modulus of 11.82 ± 1.51 MPa and high compressive yield stress of 689.3 ± 34.9 kPa were achieved for the composite hydrogel with a water content as high as 81%. The equilibrium water uptake of the freeze-dried hydrogel in phosphate buffered saline at 37 °C was as low as 407.5%. These enables the delignified wood structure an excellent template in composite hydrogel preparation by using infiltration and in-situ synthesis, particularly when high mechanical strength and stiffness are desired.
通过去除木质素,得到具有亲水性和高孔隙率的脱木质素木材模板。明胶被渗透到脱木质素木材中,并进一步与天然交联剂京尼平交联,形成水凝胶。在压缩下,复合材料水凝胶表现出高机械强度和低生理条件下的高膨胀率。研究了京尼平浓度(1、50 和 100 mM)对复合水凝胶结构和性能的影响。在冷冻干燥的复合水凝胶中观察到具有可调孔径和孔隙率的多孔蜂窝结构。对于含水量高达 81%的复合水凝胶,实现了 11.82 ± 1.51 MPa 的高弹性模量和 689.3 ± 34.9 kPa 的高压缩屈服应力。在 37°C 的磷酸盐缓冲盐水中,冻干水凝胶的平衡吸水率低至 407.5%。这些使脱木质素木材结构成为通过渗透和原位合成制备复合水凝胶的优异模板,特别是在需要高机械强度和刚性时。