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Injured Achilles Tendons Treated with Adipose-Derived Stem Cells Transplantation and GDF-5

机译:脂肪干细胞移植和GDF-5处理的跟腱损伤

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摘要

Tendon injuries represent a clinical challenge in regenerative medicine because their natural repair process is complex and inefficient. The high incidence of tendon injuries is frequently associated with sports practice, aging, tendinopathies, hypertension, diabetes mellitus, and the use of corticosteroids. The growing interest of scientists in using adipose-derived mesenchymal stem cells (ADMSC) in repair processes seems to be mostly due to their paracrine and immunomodulatory effects in stimulating specific cellular events. ADMSC activity can be influenced by GDF-5, which has been successfully used to drive tenogenic differentiation of ADMSC in vitro. Thus, we hypothesized that the application of ADMSC in isolation or in association with GDF-5 could improve Achilles tendon repair through the regulation of important remodeling genes expression. Lewis rats had tendons distributed in four groups: Transected (T), transected and treated with ADMSC (ASC) or GDF-5 (GDF5), or with both (ASC+GDF5). In the characterization of cells before application, ADMSC expressed the positive surface markers, CD90 (90%) and CD105 (95%), and the negative marker, CD45 (7%). ADMSC were also differentiated in chondrocytes, osteoblast, and adipocytes. On the 14th day after the tendon injury, GFP-ADMSC were observed in the transected region of tendons in the ASC and ASC+GDF5 groups, and exhibited and/or stimulated a similar genes expression profile when compared to the in vitro assay. ADMSC up-regulated Lox, Dcn, and Tgfb1 genes expression in comparison to T and ASC+GDF5 groups, which contributed to a lower proteoglycans arrangement, and to a higher collagen fiber organization and tendon biomechanics in the ASC group. The application of ADMSC in association with GDF-5 down-regulated Dcn, Gdf5, Lox, Tgfb1, Mmp2, and Timp2 genes expression, which contributed to a lower hydroxyproline concentration, lower collagen fiber organization, and to an improvement of the rats’ gait 24 h after the injury. In conclusion, although the literature describes the benefic effect of GDF-5 for the tendon healing process, our results show that its application, isolated or associated with ADMSC, cannot improve the repair process of partial transected tendons, indicating the higher effectiveness of the application of ADMSC in injured Achilles tendons. Our results show that the application of ADMSC in injured Achilles tendons was more effective in relation to its association with GDF-5.
机译:肌腱损伤代表了再生医学的临床挑战,因为其天然修复过程复杂且效率低下。肌腱损伤的高发生率通常与运动习惯,衰老,肌腱病,高血压,糖尿病和皮质类固醇激素的使用有关。科学家对在修复过程中使用脂肪来源的间充质干细胞(ADMSC)的兴趣日益增长,这似乎主要是由于它们在刺激特定细胞事件中的旁分泌和免疫调节作用。 ADMSC的活性受GDF-5的影响,GDF-5已成功地用于体外驱动ADMSC的肌腱分化。因此,我们假设将ADMSC单独或与GDF-5联合使用可通过调节重要的重塑基因表达来改善跟腱修复。 Lewis大鼠的肌腱分布在四组中:横断(T),横断并用ADMSC(ASC)或GDF-5(GDF5)或两者(ASC + GDF5)处理。在应用前对细胞进行表征时,ADMSC表达了阳性表面标记CD90(90%)和CD105(95%),以及阴性标记CD45(7%)。 ADMSC还在软骨细胞,成骨细胞和脂肪细胞中分化。在肌腱损伤后的第14天,在ASC和ASC + GDF5组的肌腱横切区域中观察到GFP-ADMSC,与体外测定相比,GFP-ADMSC表现出和/或刺激了相似的基因表达谱。与T和ASC + GDF5组相比,ADMSC上调了Lox,Dcn和Tgfb1基因的表达,这有助于降低蛋白聚糖的排列,并有助于提高ASC组的胶原纤维组织和肌腱生物力学。 ADMSC的应用与GDF-5下调的Dcn,Gdf5,Lox,Tgfb1,Mmp2和Timp2基因表达有关,这有助于降低羟脯氨酸浓度,降低胶原纤维组织并改善大鼠步态受伤后24小时。总之,尽管文献描述了GDF-5对肌腱愈合过程的有益作用,但我们的结果表明,将其单独或与ADMSC结合使用,不能改善部分横断肌腱的修复过程,表明该方法具有更高的有效性。 ADMSC在跟腱受伤中的作用。我们的结果表明,ADMSC在跟腱损伤中的应用相对于与GDF-5的结合更有效。

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