Papadimitriou John, Petros Peter
University of Western Australia, Perth, Western Australia, Australia.
Hernia. 2005 Mar;9(1):75-8. doi: 10.1007/s10029-004-0286-6. Epub 2004 Nov 19.
The tissue reaction to implanted monofilamentous and multifilamentous polypropylene mesh was compared in samples removed at operation from the perivaginal area of a 58 year old patient. The fibrils of both were surrounded by collagenous connective tissue, collagen types I and III, and proteoglycans. Smaller, less compacted bundles were seen in the vicinity of the monofilamentous mesh than around the multifilamentous mesh, and in addition, a greater number of inflammatory cells and larger multinucleate giant cells were seen apposed to the monofilamentous mesh. Following this, eight rats were implanted with multifilamentous synthetic polypropylene tape and examined at two, four, six and eight weeks after surgery. Macrophages and multinucleated giant cells were seen in the immediate vicinity of the fibrils, while fibrovascular connective tissue surrounded the implantation site. These observations do not support the prevailing hypotheses that macrophages cannot penetrate between the fibrils of multifilament tape. They do suggest that differences in tensile strength may be present in the artificial neoligaments created by the two tapes.
在一名58岁患者阴道周围区域手术切除的样本中,对植入的单丝和多丝聚丙烯网片的组织反应进行了比较。两者的纤维均被I型和III型胶原结缔组织、胶原蛋白和蛋白聚糖包围。在单丝网片附近可见较小、较疏松的束状结构,而在多丝网片周围则较少,此外,在单丝网片附近可见更多的炎性细胞和更大的多核巨细胞。在此之后,将八只大鼠植入多丝合成聚丙烯带,并在术后两周、四周、六周和八周进行检查。在纤维紧邻区域可见巨噬细胞和多核巨细胞,而植入部位周围为纤维血管结缔组织。这些观察结果不支持巨噬细胞无法穿透多丝带纤维之间的普遍假设。它们确实表明,两种带材制成的人工新韧带可能存在拉伸强度差异。