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Ion-beam irradiated ePTFE as an aneurysm wrapping material

机译:离子束辐照ePTFE作为动脉瘤包裹材料

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摘要

Intracranial aneurysms are usually treated with either microsurgical clipping or endovascular coiling. However, as so called broad-neck aneurysms or aneurysms from which vessels branch out are not suitable for these treatment options, a wrapping technique using muslin gauze, muscle piece, or ePTFE is chosen for such cases in order to reinforce the aneurysm wall. The material for aneurysmal wrapping demands stable adherence to the aneurysm wall without reactive inflammatory response. We have developed a new ePTFE by ion-beam irradiation technique that is biologically inert and able to adhere firmly to biomedical tissue. Based on recent studies, Ar+ ions at an energy of 150 keV with a fluence of 5 x 10(14) ions/cm(2) were chosen to irradiate ePTFE. Cell adhesion tests and direct implantation of ion-beam irradiated ePTFE as wrapping material to rabbit common carotid arteries were examined. It was demonstrated that the surface of ion-beam irradiated ePTFE exhibits remarkably greater adhesion and promotes cell proliferation. The ion-beam irradiated ePTFE strongly adhered to the mural wall of the rabbit common carotid arteries inducing a little inflammatory reaction. The results of this investigation indicate that application of this technology would offer the best treatments for aneurysm wrapping. (c) 2007 Elsevier B.V. All rights reserved.
机译:颅内动脉瘤通常采用显微外科手术夹闭或血管内盘绕术治疗。然而,由于所谓的宽颈动脉瘤或血管分支出的动脉瘤不适合这些治疗选择,因此在这种情况下选择使用薄纱布,肌肉片或ePTFE的包裹技术以增强动脉瘤壁。用于动脉瘤包裹的材料需要稳定粘附在动脉瘤壁上,而无反应性炎症反应。我们已经开发出一种新的通过离子束辐照技术生产的ePTFE,该材料具有生物惰性,并且能够牢固地粘附于生物医学组织。根据最近的研究,选择能量为150 keV,通量为5 x 10(14)离子/ cm(2)的Ar +离子辐照ePTFE。进行了细胞粘附试验和离子束辐照ePTFE的直接植入,将其作为包裹材料包裹到兔颈总动脉。结果表明,离子束辐照的ePTFE表面表现出明显更大的附着力并促进细胞增殖。离子束辐照的ePTFE牢固地粘附在兔颈总动脉的壁上,引起少许炎症反应。这项研究的结果表明,这项技术的应用将为动脉瘤包裹提供最佳的治疗方法。 (c)2007 Elsevier B.V.保留所有权利。

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