Iran Polymer and Petrochemical Institute (IPPI), Tehran, Iran.
J Biomed Mater Res A. 2011 Nov;99(2):240-8. doi: 10.1002/jbm.a.33181. Epub 2011 Aug 16.
The study investigates the photo-polymerization shrinkage behavior, dynamic mechanical properties, and biocompatibility of cyanoacrylate bioadhesives containing POSS nanostructures and TMPTMA as crosslinking agents. Adhesives containing 2-octyl cyanoacrylate (2-OCA) and different percentages of POSS nanostructures and TMPTMA as crosslinking agents were prepared. The 1-phenyl-1, 2-propanedione (PPD) was incorporated as photo-initiator into the adhesive in 1.5, 3, and 4 wt %. The shrinkage strain of the specimens was measured using bonded-disk technique. Shrinkage strain, shrinkage strain rate, maximum and time at maximum shrinkage strain rate were measured and compared. Mechanical properties of the adhesives were also studied using dynamic mechanical thermal analysis (DMTA). Biocompatibility of the adhesives was examined by MTT method. The results showed that shrinkage strain increased with increasing the initiator concentration up to 3 wt % in POSS-containing and 1.5 wt % in TMPTMA-containing specimens and plateaued out at higher concentrations. By increasing the crosslinking agent, shrinkage strain, and shrinkage strain rate increased and the time at maximum shrinkage strain rate decreased. The study indicates that the incorporation of crosslinking agents into the cyanoacrylate adhesives resulted in improved mechanical properties. Preliminary MTT studies also revealed better biocompatibility profile for the adhesives containing crosslinking agents comparing to the neat specimens.
本研究调查了含有 POSS 纳米结构和 TMPTMA 作为交联剂的氰基丙烯酸酯生物胶粘剂的光聚合收缩行为、动态力学性能和生物相容性。制备了含有 2-辛基氰基丙烯酸酯 (2-OCA) 和不同百分比 POSS 纳米结构和 TMPTMA 作为交联剂的胶粘剂。将 1-苯基-1,2-丙二酮 (PPD) 作为光引发剂以 1.5、3 和 4 wt% 的比例掺入胶粘剂中。使用粘结盘技术测量试件的收缩应变。测量并比较了收缩应变、收缩应变速率、最大收缩应变速率和达到最大收缩应变速率的时间。还使用动态力学热分析 (DMTA) 研究了胶粘剂的力学性能。通过 MTT 法研究了胶粘剂的生物相容性。结果表明,收缩应变随引发剂浓度的增加而增加,在含有 POSS 的样品中达到 3wt%,在含有 TMPTMA 的样品中达到 1.5wt%,然后在更高的浓度下趋于稳定。随着交联剂的增加,收缩应变和收缩应变速率增加,达到最大收缩应变速率的时间减少。研究表明,将交联剂掺入氰基丙烯酸酯胶粘剂中可改善其力学性能。初步 MTT 研究还表明,与纯样品相比,含有交联剂的胶粘剂具有更好的生物相容性。