Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91126, USA.
J Biomed Mater Res B Appl Biomater. 2012 Apr;100(3):618-23. doi: 10.1002/jbm.b.31981. Epub 2012 Feb 10.
A method for evaluating strength of adhesives for hydrogels and soft tissues is presented. Quantitative measurements of shear strength for applications in tissue engineering and biomedicine are performed in torsion using a rheometer. Small, disk shaped specimens of soft biological tissues and/or hydrogels (8 mm diameter, 1-2 mm thick) are mounted onto rheometer tools and then bonded together using the adhesive to be tested. The torsional loading geometry imposes simple shear without deforming the planar adhesive bond, in contrast to the lap-shear test. It retains the advantages of the napkin ring test while reducing artifacts due to cutting and handling soft specimens. The method is demonstrated by measuring the shear strength of two types of biomedical adhesives (cyanoacrylate and polyethylene glycol-based) between model hydrogels (gelatin) and tissues (corneal stroma and skin).
提出了一种用于评估水凝胶和软组织胶粘剂强度的方法。使用流变仪在扭转中对组织工程和生物医学应用中的剪切强度进行定量测量。使用小的圆盘状软生物组织和/或水凝胶(直径 8 毫米,厚 1-2 毫米)标本,将其安装到流变仪工具上,然后使用待测试的胶粘剂将它们粘合在一起。扭转加载几何形状施加简单的剪切,而不会使平面胶粘剂结合变形,与搭接剪切试验形成对比。它保留了餐巾环试验的优点,同时减少了由于切割和处理软标本而产生的伪影。该方法通过测量两种类型的生物医学胶粘剂(氰基丙烯酸酯和基于聚乙二醇的胶粘剂)在模型水凝胶(明胶)和组织(角膜基质和皮肤)之间的剪切强度来进行演示。