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Enhancement of periodontal tissue regeneration by conditioned media from gingiva-derived or periodontal ligament-derived mesenchymal stem cells: a comparative study in rats

机译:来自Gingiva衍生的或牙周韧带衍生的间充质干细胞的调节培养基的牙周组织再生的增强:大鼠的比较研究

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Evidence has demonstrated conditioned medium (CM) from periodontal ligament stem cells (PDLSCs) improved periodontal regeneration. Gingival mesenchymal stem cells (GMSCs) have been considered an alternative strategy for regenerative medicine. To determine whether GMSC-CM could promote periodontal wound healing, we compared the effects of GMSC-CM and PDLSC-CM on periodontal regeneration and the underlying mechanisms in rat periodontal defects. Cell-free CMs were collected from PDLSCs, GMSCs, and gingival fibroblasts (GFs) using ultracentrifugation (100-fold concentration). Periodontal defects were created on the buccal side of the first molar in the left mandible of 90 rats by a surgical method. Collagen membranes loaded with concentrated CMs (α-MEM, GF-CM, GMSC-CM, PDLSC-CM) were transplanted into periodontal defects. After 1, 2, and 4?weeks, the animals were sacrificed and specimens including the first molar and the surrounding tissues were separated and decalcified. Hematoxylin-eosin and Masson’s trichrome staining were performed to evaluate periodontal regeneration. Immunohistochemical staining for tumor necrosis factor (TNF)-α, interleukin (IL)-1β, and IL-10 was conducted to analyze inflammation. Immunohistochemistry of BSP-II and Runx2 was performed to analyze osteoblast differentiation. Histological analysis showed the amount of newly formed periodontal tissue was significantly higher in both the GMSC-CM and PDLSC-CM groups than in the other groups, with no significant difference between these two groups. At 1 and 2?weeks, the expression levels of TNF-α and IL-1β were significantly lower in the GMSC-CM and PDLSC-CM groups than in the other three groups, while there was no significant difference between these two groups. IL-10 expression was significantly higher in the GMSC-CM group than in the PDLSC-CM group and the other three groups. At 1, 2, and 4?weeks, BSP-II and Runx2 expressions were significantly higher in the GMSC-CM and PDLSC-CM groups than in the other three groups, with no significant difference between the two groups. Our results demonstrate that GMSC-CM transplantation can significantly promote periodontal regeneration in rats and achieve the same effect as PDLSC-CM. The mechanism of periodontal regeneration may involve the regulation of inflammatory factors and the promotion of osteogenic differentiation of bone progenitor cells in the wound region by CMs from MSCs.
机译:证据已经证明了来自牙周韧带干细胞(PDLSCs)的调节培养基(CM)改善了牙周再生。牙龈间充质干细胞(GMSCs)被认为是再生医学的替代策略。为了确定GMSC-CM是否可以促进牙周伤口愈合,比较GMSC-CM和PDLSC-CM对牙周再生的影响以及大鼠牙周缺陷中的潜在机制。使用超速离心(100倍浓度)从PDLSC,GMSC和牙龈成纤维细胞(GFS)收集无细胞CMS。通过手术方法在左侧颌骨左侧颌骨左侧的第一磨牙的颊侧产生牙周缺陷。将浓缩CMS(α-MEM,GF-CM,GMSC-CM,PDLSC-CM)一起装载的胶原膜移植到牙周缺陷中。在1,2和4℃之后,处死动物,分离和脱钙,包括第一摩尔和周围组织的标本。进行苏木精 - 曙红和马隆的三色染色以评估牙周再生。进行肿瘤坏死因子(TNF)-α,白细胞介素(IL)-1β和IL-10的免疫组织化学染色以分析炎症。进行BSP-II和RUNX2的免疫组织化学以分析成骨细胞分化。组织学分析显示GMSC-CM和PDLSC-CM组中新形成的牙周组织的量显着高于其他基团,这两组之间没有显着差异。在1和2?周,GMSC-CM和PDLSC-CM组中TNF-α和IL-1β的表达水平显着低于其他三组,而这两组之间没有显着差异。 GMSC-CM组中的IL-10表达明显高于PDLSC-CM组和其他三组。在1,2和4?周,GMSC-CM和PDLSC-CM组中BSP-II和RUNX2表达显着高于其他三组,两组之间没有显着差异。我们的结果表明,GMSC-CM移植可以显着促进大鼠的牙周再生,并达到与PDLSC-CM相同的效果。牙周再生的机制可能涉及调节炎症因子和促进伤口区域中骨祖细胞的骨质骨质分化通过CMS来自MSCs。

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