Sanders Lindsey, Stone Roland, Webb Kenneth, Mefford Thompson, Nagatomi Jiro
Department of Bioengineering, Clemson University, Clemson, South Carolina, 29634.
J Biomed Mater Res A. 2015 Mar;103(3):861-8. doi: 10.1002/jbm.a.35310. Epub 2014 Aug 20.
Although a number of tissue adhesives and sealants for surgical use are currently available, attaining a useful balance in high strength, high compliance, and low swelling has proven difficult. Recent studies have demonstrated that a four-arm poly(propylene oxide)-poly(ethylene oxide) block copolymer, Tetronic, can be chemically modified to form a hydrogel tissue adhesive (Cho et al., Acta Biomater 2012;8:2223-2232; Barrett et al., Adv Health Mater 2012;1-11; Balakrishnan, Evaluating mechanical performance of hydrogel-based adhesives for soft tissue applications. Clemson University, All Theses, Paper 1574: Tiger Prints; 2013). Building on the success of these studies, this study explored bifunctionalization of Tetronic with acrylates for chemical crosslinking of the hydrogel and N-hydroxysuccinimide (NHS) for reaction with tissue amines. The adhesive bond strengths of various uni and bifunctional Tetronic blends (T1107 ACR: T1107 ACR/NHS) determined by lap shear testing ranged between 8 and 74 kPa, with the 75:25 (T1107 ACR: T1107 ACR/NHS) blend displaying the highest value. These results indicated that addition of NHS led to improvement of tissue bond strength over acrylation alone. Furthermore, ex vivo pressure tests using the rat bladder demonstrated that the bifunctional Tetronic adhesive exhibited high compliance and maintained pressures under hundreds of filling and emptying cycles. Together, the results of this study provided evidence that the bifunctional Tetronic adhesive with a proper blend ratio may be used to achieve an accurate balance in bulk and tissue bond strengths, as well as the compliance and durability for soft tissue such as the bladder.
尽管目前有多种用于手术的组织粘合剂和密封剂,但要在高强度、高顺应性和低肿胀之间达到理想的平衡却很困难。最近的研究表明,一种四臂聚(环氧丙烷)-聚(环氧乙烷)嵌段共聚物Tetronic可以进行化学改性以形成水凝胶组织粘合剂(Cho等人,《生物材料学报》2012年;8:2223 - 2232;Barrett等人,《先进健康材料》2012年;1 - 11;Balakrishnan,评估用于软组织应用的水凝胶基粘合剂的机械性能。克莱姆森大学,所有论文,第1574号论文:老虎印记;2013年)。基于这些研究的成功,本研究探索了用丙烯酸酯对Tetronic进行双功能化以实现水凝胶的化学交联,并用N - 羟基琥珀酰亚胺(NHS)与组织胺反应。通过搭接剪切试验测定的各种单功能和双功能Tetronic共混物(T1107 ACR:T1107 ACR/NHS)的粘合强度在8至74 kPa之间,其中75:25(T1107 ACR:T1107 ACR/NHS)共混物显示出最高值。这些结果表明,添加NHS比单独丙烯酸化能提高组织粘合强度。此外,使用大鼠膀胱进行的体外压力测试表明,双功能Tetronic粘合剂表现出高顺应性,并在数百次填充和排空循环下保持压力。总之,本研究结果证明,具有适当混合比例 的双功能Tetronic粘合剂可用于在本体和组织粘合强度以及膀胱等软组织的顺应性和耐久性方面实现精确平衡。