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血细胞与生物材料的动态接触:根据国际标准对流动腔系统进行验证。

Dynamic blood cell contact with biomaterials: validation of a flow chamber system according to international standards.

作者信息

Otto M, Klein C L, Köhler H, Wagner M, Röhrig O, Kirkpatrick C J

机构信息

Institute of Pathology, Johannes Gutenberg-University D-55101 Mainz Germany.

出版信息

J Mater Sci Mater Med. 1997 Mar;8(3):119-29. doi: 10.1023/a:1018515001850.

Abstract

The increasing number of patients requiring prosthetic substitution of segments of the vascular system strongly supports the need to optimize a relevant, standardized testing panel for new materials designed for synthetic vascular prostheses. The ISO gives the standard requirements for testing biomaterials provided for implantation. Our primary interest was the establishment of a reliable in vitro panel as a useful and relevant screening system for vascular implant devices to evaluate blood/device interactions under flow conditions. The aim of the present study was to evaluate influences of different flow conditions on blood cell-biomaterial interactions with special emphasis on the interactions of human granulocytes (PMN) and polymeric surfaces. PMN were isolated and vital cells were quantified by flow cytometrical analysis directly before, as well as immediately after the experiments. The viscosity of the final cellular suspension was analysed by using a computerized cone-plate rheometer. As reference materials we used FEP-teflon, PVC-DEHD, PU, PP and PE. Dacron and ePTFE synthetic vascular protheses were tested in a comparative way to those references. The adhesion processes were observed over a period of 40 minutes under arterial (shear stress 0.74 Pa) and venous (shear stress 0.16 Pa) flow conditions in a parallel plate flow chamber system under highly standardized conditions and laminar flow. The cells were observed with the help of inverse light microscopy. Cell behaviour was recorded and analysed in both analogue (video) and digital (imaging system) modes. Samples of the cell suspensions were obtained at regular time intervals and analysed by enzyme linked immuno sorbent assay (ELISA) to quantify LTB4 release. Irrespective of the material, approximately 3 to 4 times more PMN adhered to the biomaterial surfaces under venous flow conditions compared to the arterial. Shear intensity did not influence the running order of biomaterials with respect to cell numbers. This response in descending order at the end of the experiments was as follows: PU, PVC-DEHD, PP, PE and ePTFE. The biochemical analyses indicate that in the system used only a weak effect on LTB4 release induced by the different materials could be determined. A significant effect caused by flow conditions was not observed. Further experiments, both static as well as dynamic, must be performed for multiple, relevant parameters of haemocompatibility, for potential biomaterials as well as those currently in use in vascular prostheses.

摘要

需要进行血管系统节段假体置换的患者数量不断增加,这有力地支持了为合成血管假体设计的新材料优化相关标准化测试组的必要性。国际标准化组织(ISO)给出了植入用生物材料的标准测试要求。我们主要关注的是建立一个可靠的体外测试组,作为血管植入装置的有用且相关的筛选系统,以评估流动条件下的血液/装置相互作用。本研究的目的是评估不同流动条件对血细胞与生物材料相互作用的影响,特别强调人类粒细胞(PMN)与聚合物表面的相互作用。分离出PMN,并在实验前及实验后立即通过流式细胞术分析对活细胞进行定量。使用计算机化锥板流变仪分析最终细胞悬液的粘度。作为参考材料,我们使用了全氟乙烯丙烯共聚物(FEP)-聚四氟乙烯、聚氯乙烯-二(2-乙基己基)己二酸酯(PVC-DEHD)、聚氨酯(PU)、聚丙烯(PP)和聚乙烯(PE)。对涤纶和膨体聚四氟乙烯(ePTFE)合成血管假体与这些参考材料进行了对比测试。在高度标准化条件和层流的平行板流动腔系统中,在动脉(剪切应力0.74 Pa)和静脉(剪切应力0.16 Pa)流动条件下观察40分钟的粘附过程。借助倒置光学显微镜观察细胞。以模拟(视频)和数字(成像系统)模式记录和分析细胞行为。在固定时间间隔获取细胞悬液样本,并通过酶联免疫吸附测定(ELISA)分析以定量白三烯B4(LTB4)释放。无论材料如何,与动脉流动条件相比,静脉流动条件下粘附到生物材料表面的PMN数量大约多3至4倍。剪切强度对生物材料在细胞数量方面的排列顺序没有影响。实验结束时按降序排列的这种反应如下:PU、PVC-DEHD、PP、PE和ePTFE。生化分析表明,在所使用的系统中,只能确定不同材料对LTB4释放的微弱影响。未观察到流动条件引起的显著影响。对于潜在生物材料以及目前用于血管假体的材料,必须针对血液相容性的多个相关参数进行进一步的静态和动态实验。

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