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A Combinational Therapy of Articular Cartilage Defects: Rapid and Effective Regeneration by Using Low-Intensity Focused Ultrasound After Adipose Tissue-Derived Stem Cell Transplantation

机译:关节软骨缺损的组合治疗:通过使用低强度聚焦超声检查脂肪组织衍生的干细胞移植后快速有效的再生

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Background: Although low-intensity pulsed ultrasound has been reported to be potential cartilage regeneration, there still unresolved treatment due to cartilage fibrosis and degeneration by a lack of rapid and high-efficiency treatment. The purpose of this study was to investigate the effect of a combination therapy of focused acoustic force and stem cells at site for fast and efficient healing on cartilage regeneration. Methods: Using a rat articular cartilage defects model, one million adipose tissue-derived stem cells (ASCs) were injected into the defect site, and low-intensity focused ultrasound (LOFUS) in the range of 100-600 mV was used for 20 min/day for 2 weeks. All experimental groups were sacrificed after 4 weeks in total. The gross appearance score and hematoxylin and eosin (H&E), Alcian blue, and Safranin O staining were used for measuring the chondrogenic potential. The cartilage characteristics were observed, and type II collagen, Sox 9, aggrecan, and type X collagen were stained with immunofluorescence. The results of the comprehensive analysis were calculated using the Mankin scoring method. Results: The gross appearance scores of regenerated cartilage and chondrocyte-like cells in H&E images were higher in LOFUS-treated groups compared to those in negative control or ASC-treated groups. Safranin O and Alcian blue staining demonstrated that the 100 and 300 mV LOFUS groups showed greater synthesis of glycosaminoglycan and proteoglycan. The ASC + LOFUS 300 mV group showed positive regulation of type II collagen, Sox 9 and aggrecan and negative regulation of type X collagen, which indicated the occurrence of cartilage regeneration based on the Mankin score result. Conclusion: The combination therapy, which involved treatment with ASC and 300 mV LOFUS, quickly and effectively reduced articular cartilage defects.
机译:背景:虽然据报道,虽然低强度脉冲超声是潜在的软骨再生,但由于软骨纤维化和缺乏快速和高效的治疗,仍有未解决的治疗。本研究的目的是探讨聚焦声学力和干细胞在现场进行联合治疗的效果,以快速有效地愈合软骨再生。方法:使用大鼠关节软骨缺陷模型,将一百万脂肪组织衍生的干细胞(ASCS)注入缺陷部位,使用100-600mV范围内的低强度聚焦超声(叶谱)20分钟/天2周。总共4周后,所有实验组都被处死。总体外观评分和血清素和曙红(H&E),Alcian Blue和Safranin O染色用于测量软骨内潜力。观察到软骨特性,均染色II型胶原蛋白,SOX 9,蛋白和X型胶原蛋白,具有免疫荧光。综合分析结果采用了人工人的评分方法计算。结果:与阴性对照或ASC处理基团中的那些相比,H&E图像中再生软骨和软骨细胞样细胞的总体外观分数较高。 Safranin O和Alcian Blue染色表明,100和300 mV叶叶组显示出更大的糖胺聚糖和蛋白多糖的合成。 ASC +叶300mV组显示II型胶原蛋白,SOX 9和蛋白的抗体调节和X胶原型负调节,这表明基于人工人的评分结果发生了软骨再生。结论:组合治疗,涉及ASC和300 mV叶的治疗,快速有效地减少关节软骨缺陷。

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