首页> 外文期刊>Annals of the New York Academy of Sciences >Effects of ultrasound, radial extracorporeal shock waves, and electrical stimulation on rat bone defect healing
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Effects of ultrasound, radial extracorporeal shock waves, and electrical stimulation on rat bone defect healing

机译:超声波,径向体外冲击波和电刺激对大鼠骨缺损愈合的影响

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Fractures associated with osteoporosis are a major public health concern. Current treatments for fractures are limited to surgery or fixation, leading to long-term bedrest, which is linked to increased mortality. Alternatively, utilization of physical agents has been suggested as a promising therapeutic approach for fractures. Here, we examined the effects of ultrasound, radial extracorporeal shock waves, and electrical stimulation on normal or osteoporotic fracture healing. Femoral bone defects were created in normal or ovariectomized rats. Rats were divided into four groups: untreated, and treated with ultrasound, shock waves, or electrical stimulation after surgery. Samples were collected at 2 or 4 weeks after surgery, and the healing process was evaluated with micro-CT, histological, and immunohistochemical analyses. Ultrasound at intensities of 0.5 and 1.0 W/cm(2), but not 0.05 W/cm(2), accelerated new bone formation. Shock wave exposure also increased newly formed bone, but formed abnormal periosteal callus around the defect site. Conversely, electrical stimulation did not affect the healing process. Ultrasound exposure increased osteoblast activity and cell proliferation and decreased sclerostin-positive osteocytes. We demonstrated that higher-intensity ultrasound and radial extracorporeal shock waves accelerate fracture healing, but shock wave treatment may increase the risk of periosteal callus formation.
机译:与骨质疏松症相关的骨折是一个主要的公共卫生问题。目前对骨折的治疗限于手术或固定,导致长期卧板,与增加的死亡率有关。或者,已经提出了物理剂的利用作为骨折的有希望的治疗方法。在这里,我们检查了超声,径向体外冲击波和电刺激对正常或骨质疏松骨折愈合的影响。在正常或卵巢切除大鼠中产生股骨缺陷。将大鼠分为四组:未处理,并在手术后用超声波,冲击波或电刺激治疗。在手术后2或4周收集样品,并用微型CT,组织学和免疫组化分析评价愈合过程。超声,强度为0.5和1.0W / cm(2),但不是0.05W / cm(2),加速新的骨形成。冲击波暴露还增加了新形成的骨骼,但在缺陷部位周围形成了异常的骨膜愈伤组织。相反,电刺激不会影响愈合过程。超声曝光增加了成骨细胞活性和细胞增殖,并且减少了硬化剂阳性骨细胞。我们证明,更高强度的超声和径向体外冲击波加速骨折愈合,但冲击波处理可能会增加骨膜愈伤组织形成的风险。

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