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Biocompatibility of modified ePTFE for an artificial dura mater

机译:改性ePTFE在人造硬脑膜中的生物相容性

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摘要

Expanded polytetrafluoroethylene (ePTFE) is one of the biomedical materials and is most extensively used in surgical repair in various anatomical sites. However, ePTFE as an artificial dura mater is often associated with postoperative leakage of the cerebrospinal fluid (CSF) because of its very low adhesiveness to fibrin glue and surrounding tissue. To overcome CSF leakage the effects of ion-beam irradiation to ePTFE surface were examined. The surfaces of ePTFE were irradiated with 50 or 150 keV Ar~+-beam with fluences of 1 x 10~(14), 5 x 10~(14) and 1 x 10~(15) ions/cm~2. L929 fibroblasts were cultured for 24 h on the ePTFE that included the irradiated domains and non-irradiated area. It was confirmed that fibroblasts adhered better to the irradiated domains compared with non-irradiated domain, however the difference was not noted among the individual irradiation conditions. A dural defect surgically created in a rabbit skull was patched with ion-beam irradiated ePTFE. CSF leakage was observed in the case with non-irradiated ePTFE and 50 keV with 1 x 10~(14) and 5 x 10~(14) ions/cm~2 irradiated ePTFE, but CSF leakage did not occur in cases with other ion-beam irradiated ePTFE. A histological study indicated that fibroblast-like cells invaded and anchored into the gaps of the ePTFE surface created by ion-beam irradiation.
机译:膨体聚四氟乙烯(ePTFE)是生物医学材料之一,在各种解剖部位的手术修复中得到了最广泛的应用。然而,由于ePTFE作为人造硬脑膜的材料,其与纤维蛋白胶和周围组织的粘附性非常低,因此常常与术后脑脊液(CSF)渗出有关。为了克服CSF泄漏,检查了离子束照射到ePTFE表面的影响。用50或150 keV Ar〜+束辐照ePTFE表面,其通量分别为1 x 10〜(14),5 x 10〜(14)和1 x 10〜(15)离子/ cm〜2。 L929成纤维细胞在ePTFE上培养24小时,该ePTFE包括受辐照区域和未辐照区域。可以确认,与未照射区域相比,成纤维细胞对照射区域的粘附性更好,但是在各个照射条件之间未发现差异。用离子束辐照的ePTFE修补了在兔子颅骨中外科产生的硬脑膜缺损。在未辐照ePTFE和50 keV,1 x 10〜(14)和5 x 10〜(14)离子/ cm〜2辐照的ePTFE的情况下观察到CSF泄漏,但在其他离子的情况下未发生CSF泄漏。束辐照的ePTFE。组织学研究表明,成纤维细胞样细胞侵入并锚定在离子束辐照产生的ePTFE表面的间隙中。

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