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Biocomposite Hydrogels with Carboxymethylated, Nanofibrillated Cellulose Powder for Replacement of the Nucleus Pulposus

机译:具有羧基甲基化,纳米原纤化纤维素粉的生物复合水凝胶,可替代肺核

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摘要

Biocomposite hydrogels with carboxymethylated, nanofibrillated cellulose (c-NFC) powder were prepared by UV polymerization of N-vinyl-2-pyrrolidone with Tween 20 trimethacrylate as a cross-linking agent for replacement of the native, human nucleus pulposus (NP) in intervertebral disks. The swelling ratios and the moduli of elasticity in compression of neat and biocomposite hydrogels were evaluated in dependence of c-NFC concentration (ranging from 0 to 1.6% v/v) and degree of substitution (DS, ranging from 0 to 0.23). The viscoelastic properties in shear and the material relaxation behavior in compression were measured for neat and biocomposite hydrogels containing 0.4% v/v of fibrils (DS ranging from 0 to 0.23), and their morphologies were characterized by cryo-scanning electron microscopy (cryo-SEM). The obtained results show that the biocomposite hydrogels can successfully mimic the mechanical and swelling behavior of the NP. In addition, the presence of the c-NFC shows lower strain values after cyclic compression tests and consequently creates improved material relaxation properties compared with neat hydrogels. Among the tested samples, the biocomposite hydrogel containing 0.4% v/v of c-NFC with a DS of 0.17 shows the closest behavior to native NP. Further investigation should focus on evaluation and improvement of the long-term relaxation behavior.
机译:通过N-乙烯基-2-吡咯烷酮与Tween 20三甲基丙烯酸酯作为交联剂的UV聚合反应制备具有羧甲基化的纳米原纤化纤维素(c-NFC)粉末的生物复合水凝胶,以取代椎间盘中的天然人髓核(NP)。磁盘。根据c-NFC浓度(0至1.6%v / v)和取代度(DS,0至0.23),评估纯净和生物复合水凝胶的溶胀率和压缩弹性模量。测量了含有0.4%v / v纤维(DS范围从0到0.23)的纯净和生物复合水凝胶的剪切粘弹性和压缩时的材料松弛行为,并通过低温扫描电子显微镜(cryo- SEM)。所得结果表明,生物复合水凝胶可以成功地模拟NP的机械和溶胀行为。另外,c-NFC的存在在循环压缩试验后显示出较低的应变值,因此与纯水凝胶相比,具有改善的材料松弛性能。在测试样品中,生物复合水凝胶含有0.4%v / v的c-NFC,DS为0.17,显示出与天然NP最接近的行为。进一步的研究应集中于评估和改善长期松弛行为。

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