Key Laboratory of Macromolecular Science of Shaanxi Province, School of Chemistry and Materials Science, Shaanxi Normal University, Xi'an, People's Republic of China.
J Biomed Mater Res B Appl Biomater. 2010 Jan;92(1):243-54. doi: 10.1002/jbm.b.31511.
A novel nanohybrid hydrogel was in situ prepared by means of a free radical crosslinking polymerization route of methacrylic acid in the presence of multi-walled carbon nanotubes (MWCNTs). The structural and morphological characterizations revealed that poly(methacrylic acid) networks (PMAA) closely covered the MWCNTs, and a MWCNT-well-dispersed nanohybrid hydrogel was formed. The addition of MWCNTs strikingly improved pH response and mechanical properties, depending on the component ratios and particle sizes of MWCNTs as well as crosslinker concentrations. The swelling rate was obviously faster than that of the pure PMAA hydrogel. The hydrophilic nature of polyelectrolytes, the capillarity effect, cation-pi or charge-transfer interaction and hydrogen bonds, as well as a subtle balance among these interactions were adopted to interpret the above swelling behavior. Load transfer to the MWCNTs in the networks played important part in compression mechanical improvements. MTT assays were adopted to evaluate the cytocompatibility of the developed biomaterials. This smart hydrogel is expected to be used as potential candidate for specific biological applications.
一种新型纳米杂化水凝胶是通过在多壁碳纳米管(MWCNTs)存在下的自由基交联聚合路线原位制备的。结构和形态学特征表明,聚(甲基丙烯酸)网络(PMAA)紧密覆盖 MWCNTs,形成 MWCNT 分散良好的纳米杂化水凝胶。添加 MWCNTs 显著改善了 pH 响应和机械性能,这取决于 MWCNTs 的成分比和粒径以及交联剂浓度。溶胀率明显快于纯 PMAA 水凝胶。聚电解质的亲水性、毛细作用、阳离子-π 或电荷转移相互作用和氢键,以及这些相互作用之间的微妙平衡,被用来解释上述溶胀行为。网络中 MWCNTs 的负载转移在压缩力学性能的提高中起着重要作用。采用 MTT 分析评估了所开发生物材料的细胞相容性。这种智能水凝胶有望用作特定生物应用的潜在候选材料。