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用于腹腔镜手术中组织牵拉的粘膜粘附聚合物薄膜:关于其力学性能的体外研究

Mucoadhesive polymer films for tissue retraction in laparoscopic surgery: Ex-vivo study on their mechanical properties.

作者信息

Wang Zhigang, Tai Lik-Ren, McLean Donald, Wright Emma J, Florence Gordon J, Brown Stuart I, Andre Pascal, Cuschieri Alfred

机构信息

Institute of Medical Science and Technology (IMSaT), University of Dundee, Wilson House, MediPark, Dundee DD2 1FD, UK.

出版信息

Biomed Mater Eng. 2014;24(1):445-51. doi: 10.3233/BME-130829.

Abstract

Safe and effective manipulation of soft tissue during laparoscopic procedures can be achieved by the use of mucoadhesive polymer films. A series of novel adhesive polymer films were formulated in house based on either Carbopol or Chitosan modified systems. The mechanical properties of the polymers and their adherence to bowel were evaluated using ex-vivo pig bowel immersed in 37°C water bath and connected to an Instron tensiometer. Young's modulus was 300 kPa for the Carbopol-polymer and 5 kPa for the Chitosan-polymer. The Chitosan-polymer exhibited much larger shear adhesion than its tensile adhesion: 3.4 N vs. 1.2. Both tensile and shear adhesions contributed to the large retraction force (2.6 N) obtained during l polymer-bowel retraction testing. Work of adhesion at the polymer/serosa interface, defined as the area under the force curve, was 64 mJ, which is appreciably larger than that reported with existing polymers. In conclusion, adhesive polymers can stick to the serosal side of the bowel with an adhesive force, which is sufficient to lift the bowel, providing a lower retraction stress than that caused by laparoscopic grasping which induces high localized pressures on the tissue.

摘要

在腹腔镜手术中,通过使用粘膜粘附聚合物薄膜可以实现对软组织的安全有效操作。基于卡波姆或壳聚糖改性体系,在内部制备了一系列新型粘附聚合物薄膜。使用浸泡在37°C水浴中的离体猪肠并连接到英斯特朗拉力试验机上,评估了聚合物的机械性能及其对肠的粘附性。卡波姆聚合物的杨氏模量为300 kPa,壳聚糖聚合物的杨氏模量为5 kPa。壳聚糖聚合物的剪切粘附力远大于其拉伸粘附力:分别为3.4 N和1.2 N。在聚合物-肠回缩测试中,拉伸和剪切粘附力都导致了较大的回缩力(2.6 N)。聚合物/浆膜界面的粘附功定义为力曲线下的面积,为64 mJ,明显大于现有聚合物的报道值。总之,粘附聚合物可以以足以提起肠的粘附力粘附在肠的浆膜侧,提供比腹腔镜抓持引起的回缩应力更低的回缩应力,腹腔镜抓持会在组织上产生高局部压力。

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