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In-vitro stimulation of cells of the musculoskeletal system with focused Low-Intensity Pulsed Ultrasound (FLIPUS): Analyses of cellular activities in response to the optimized acoustic dose

机译:聚焦低强度脉冲超声(FLIPUS)体外刺激肌肉骨骼系统细胞:分析细胞活动对最佳声剂量的响应

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Low-Intensity Pulsed Ultrasound (LIPUS) is a safe treatment for fresh fractures, delayed- and non-union bone. Certain inconsistency is associated with the reported in-vitro data, which could be attributed to difficulties in reproducing similar conditions using unfocused transducers in experimental in-vitro set-ups. In our study we address the above issues by using focused LIPUS (FLIPUS), which avoids the previously described potential sources of physical side-effects and therefore, allows more robust “acoustic dose” definition and an “acoustic dose - observed effect” correlation in an in-vitro setting. In our experiments all relevant sound field parameters were measured and adjusted such that they provide an optimal and even sound transmission. Five days after daily FLIPUS stimulation, gene expression of osteopontin (OPN), Runx2, collagen-1 (Col-1), E11 antigen and dentin matrix protein-1 (DMP-1) was up-regulated in rat mesenchymal stem cells (rMSCs). These cells under reduced nutrient supply also showed higher proliferation rate on days 3 and 4. Enhanced proliferation on days 2, 3 and 4 was observed in murine MC3T3-E1 pre-osteoblasts after the FLIPUS treatment under similar conditions. Increased expressions of early response genes c-jun and cyclooxygenase-2 (COX-2) were observed 30 min post-FLIPUS-exposure in the same cells. FLIPUS induced enhanced phosphorylation of Smad1/5/8 (mothers against decapentaplegic) transcription factors in MC3T3-E1s, when Bone Morphogenetic Protein-2 (BMP-2) and FLIPUS were applied simultaneously. These results indicate that FLIPUS is a convenient set-up to study the mechanism of bone regeneration in response to ultrasound in vitro.
机译:低强度脉冲超声(LIPUS)是新鲜骨折,延迟和不愈合骨的安全治疗方法。某些不一致与所报告的体外数据有关,这可能归因于在体外实验中使用未聚焦的换能器难以再现类似条件。在我们的研究中,我们通过使用聚焦LIPUS(FLIPUS)解决了上述问题,该方法避免了先前描述的物理副作用的潜在来源,因此允许更可靠的“声学剂量”定义和“声学剂量-观察到的效应”相关性。体外环境。在我们的实验中,对所有相关的声场参数进行了测量和调整,以便它们提供最佳且均匀的声音传输。每天进行FLIPUS刺激五天后,大鼠间充质干细胞(rMSCs)中骨桥蛋白(OPN),Runx2,胶原蛋白1(Col-1),E11抗原和牙本质基质蛋白1(DMP-1)的基因表达上调。 )。在营养供应减少的情况下,这些细胞在第3天和第4天也显示出较高的增殖速率。在相似条件下,经过FLIPUS处理的鼠MC3T3-E1前成骨细胞在第2、3和4天观察到增强的增殖。 FLIPUS暴露后30分钟,在同一细胞中观察到早期反应基因c-jun和环氧合酶2(COX-2)的表达增加。当同时应用骨形态发生蛋白2(BMP-2)和FLIPUS时,FLIPUS诱导了MC3T3-E1s中Smad1 / 5/8(抗去碳酸胆碱的母亲)转录因子的增强磷酸化。这些结果表明,FLIPUS是一种方便的装置,用于研究体外对超声响应的骨再生机制。

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