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Role of mast cells in wound healing process after glass - fiber composite implant in rats

机译:肥大细胞在玻璃纤维复合物植入大鼠伤口愈合过程中的作用。

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摘要

Glass-fiber composites are frequently used in dentistry. In order to evaluate their biocompatibility we tested, in an experimental model “in vivo”, their tissue response pointing our attention on presence of mast cells (MCs) and fibrotic process. Sprague Dawley rats were used for the experimental design. The fibers were introduced in a subcutaneous pocket along the middle dorsal line between the two scapulas for 7, 14 or 21 days. At the end of the treatments the skins were excised and then processed for Toluidine Blue, to determine the presence of MCs, and Picrosirius Red staining, to evaluate the presence of fibrotic tissue. Our preliminary results showed and increase of both MC number and deposition of collagen type I, which characterized the fibrotic tissue. So, subsequent aims of our study were to evaluate the role played by MCs in tissue fibrosis and to give a possible explanation regarding the mechanisms that were responsible of biological response observed, through the analyses of some proteins, such as metalloproteinase-2 (MMP-2), its inhibitor (TIMP-2) and transforming growth factor-β (TGF-β). Our data confirmed the involvement of TGF-β, released by MCs, in the disruption of the equilibrium between MMP-2 and TIMP-2 that were implicated in the enhancement of fibrosis. In summary, this study demonstrate that this type of materials induced an inflammatory response at the site of implant and help to clarify what type of mechanism and which proteins are involved in this biological response. Nevertheless, more extensive investigations are in progress to better evaluate the inflammatory process.
机译:玻璃纤维复合材料常用于牙科。为了评估它们的生物相容性,我们在“体内”实验模型中测试了它们的组织反应,使我们注意到了肥大细胞(MCs)和纤维化过程的存在。 Sprague Dawley大鼠用于实验设计。将纤维沿着两个肩cap骨之间的中背线引入皮下口袋,持续7、14或21天。在治疗结束时,切下皮肤,然后进行甲苯胺蓝处理,以确定MC的存在和Picrosirius Red染色,以评估纤维化组织的存在。我们的初步结果显示,MC数量和I型胶原沉积均增加,这是纤维化组织的特征。因此,我们研究的后续目标是评估MC在组织纤维化中的作用,并通过分析某些蛋白质(例如金属蛋白酶2(MMP- 2),其抑制剂(TIMP-2)和转化生长因子-β(TGF-β)。我们的数据证实了MCs释放的TGF-β参与了MMP-2和TIMP-2之间平衡的破坏,这与纤维化的增强有关。总而言之,这项研究表明,这种类型的材料在植入部位诱发了炎症反应,并有助于阐明这种生物学反应涉及的机制类型和蛋白质。然而,正在进行更广泛的研究以更好地评估炎症过程。

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