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A Cellulose/Laponite Interpenetrated Polymer Network (IPN) Hydrogel: Controllable Double-Network Structure with High Modulus

机译:纤维素/ Laponite互穿聚合物网络(IPN)水凝胶:具有高模量的可控双网络结构。

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摘要

Laponite XLS™, which is a synthetic clay of nanometric dimensions containing a peptizing agent, has been associated with silanized hydroxypropylmethylcellulose (Si-HPMC) to form, after crosslinking, a novel composite hydrogel. Different protocols of sample preparation were used, leading to different morphologies. A key result was that the storage modulus of Si-HPMC/XLS composite hydrogel could be increased ten times when compared to that of pure Si-HPMC hydrogel using 2 wt % of Laponite. The viscoelastic properties of the composite formulations indicated that chemical and physical network structures co-existed in the Si-HPMC/XLS composite hydrogel. Images that were obtained from confocal laser scanning microscopy using labelled Laponite XLS in the composite hydrogels show two co-continuous areas: red light area and dark area. The tracking of fluorescent microspheres motions in the composite formulations revealed that the red-light area was a dense structure, whereas the dark area was rather loose without aggregated Laponite. This novel special double-network structure facilitates the composite hydrogel to be an adapted biomaterial for specific tissue engineering. Unfortunately, cytotoxicity’s assays suggested that XLS Laponites are cytotoxic at low concentration. This study validates that the hybrid interpenetrated network IPN hydrogel has a high modulus that has adapted for tissue engineering, but the cell’s internalization of Laponites has to be controlled.
机译:Laponite XLS™是一种纳米级的合成粘土,含有一种塑解剂,已与硅烷化的羟丙基甲基纤维素(Si-HPMC)结合形成交联后的新型复合水凝胶。使用了不同的样品制备方案,导致了不同的形态。关键结果是,与使用2 wt%的Laponite的纯Si-HPMC水凝胶相比,Si-HPMC / XLS复合水凝胶的储能模量可以提高十倍。复合配方的粘弹性特性表明,化学和物理网络结构在Si-HPMC / XLS复合水凝胶中共存。在复合水凝胶中使用标记的Laponite XLS从共聚焦激光扫描显微镜获得的图像显示出两个共同连续的区域:红光区域和暗区域。复合配方中荧光微球运动的跟踪显示,红光区域为致密结构,而暗区域则相当疏松,没有聚集的皂石。这种新颖的特殊双网状结构使复合水凝胶成为适合特定组织工程的生物材料。不幸的是,细胞毒性试验表明XLS Laponite在低浓度下具有细胞毒性。这项研究证实了混合互穿网络IPN水凝胶具有适用于组织工程的高模量,但必须控制Laponites的细胞内在化。

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