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斑马贻贝暴露于体外放射状冲击波下:对骨折不愈合治疗的影响。

Exposure of zebra mussels to radial extracorporeal shock waves: implications for treatment of fracture nonunions.

机构信息

Extracorporeal Shock Wave Research Unit, Chair of Neuroanatomy, Institute of Anatomy, Faculty of Medicine, LMU Munich, 80336, Munich, Germany.

Department of Musculoskeletal Disorders, Faculty of Medicine and Surgery, University of Salerno, Salerno, Italy.

出版信息

J Orthop Surg Res. 2021 Dec 4;16(1):707. doi: 10.1186/s13018-021-02852-1.

Abstract

BACKGROUND

Radial extracorporeal shock wave therapy (rESWT) is an attractive, non-invasive therapy option to manage fracture nonunions of superficial bones, with a reported success rate of approximately 75%. Using zebra mussels (Dreissena polymorpha), we recently demonstrated that induction of biomineralization after exposure to focused extracorporeal shock waves (fESWs) is not restricted to the region of direct energy transfer into calcified tissue. This study tested the hypothesis that radial extracorporeal shock waves (rESWs) also induce biomineralization in regions not directly exposed to the shock wave energy in zebra mussels.

METHODS

Zebra mussels were exposed on the left valve to 1000 rESWs at different air pressure (between 0 and 4 bar), followed by incubation in calcein solution for 24 h. Biomineralization was evaluated by investigating the fluorescence signal intensity found on sections of the left and right valves prepared two weeks after exposure.

RESULTS

General linear model analysis demonstrated statistically significant (p < 0.05) effects of the applied shock wave energy as well as of the side (left/exposed vs. right/unexposed) and the investigated region of the valve (at the position of exposure vs. positions at a distance to the exposure) on the mean fluorescence signal intensity values, as well as statistically significant combined energy × region and energy × side × region effects. The highest mean fluorescence signal intensity value was found next to the umbo, i.e., not at the position of direct exposure to rESWs.

CONCLUSIONS

As in the application of fESWs, induction of biomineralization by exposure to rESWs may not be restricted to the region of direct energy transfer into calcified tissue. Furthermore, the results of this study may contribute to better understand why the application of higher energy flux densities beyond a certain threshold does not necessarily lead to higher success rates when treating fracture nonunions with extracorporeal shock wave therapy.

摘要

背景

体外冲击波疗法(rESWT)是一种有吸引力的非侵入性治疗选择,可用于治疗浅层骨骨折不愈合,其成功率约为 75%。使用斑马贻贝(Dreissena polymorpha),我们最近证明,在受到聚焦体外冲击波(fESWs)的暴露后,生物矿化的诱导并不仅限于直接将能量传递到钙化组织的区域。本研究测试了以下假设:体外冲击波疗法(rESWs)也会在斑马贻贝中未直接暴露于冲击波能量的区域诱导生物矿化。

方法

将斑马贻贝的左壳暴露于不同气压(0 至 4 巴)下的 1000 次 rESWs,然后在钙黄绿素溶液中孵育 24 小时。通过研究暴露后两周制备的左壳和右壳切片的荧光信号强度来评估生物矿化。

结果

一般线性模型分析表明,应用的冲击波能量、壳的侧面(暴露的左侧/左壳 vs. 未暴露的右侧/右壳)和阀的研究区域(在暴露位置 vs. 远离暴露位置的位置)对平均荧光信号强度值有统计学上显著的(p<0.05)影响,以及统计学上显著的能量×区域和能量×侧面×区域效应。最高的平均荧光信号强度值出现在喙突旁边,即在未直接暴露于 rESWs 的位置。

结论

与 fESWs 的应用一样,暴露于 rESWs 诱导生物矿化可能不仅限于将能量直接传递到钙化组织的区域。此外,本研究的结果可能有助于更好地理解为什么当使用体外冲击波疗法治疗骨折不愈合时,应用高于一定阈值的更高能量通量密度不一定会导致更高的成功率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/807c/8642867/98ce1bf492a1/13018_2021_2852_Fig1_HTML.jpg

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