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In vivo effects of focused shock waves on tumor tissue visualized by fluorescence staining techniques

机译:通过荧光染色技术将聚焦冲击波对肿瘤组织的体内作用可视化

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Shock waves can cause significant cytotoxic effects in tumor cells and tissues both in vitro and in vivo. However, understanding the mechanisms of shock wave interaction with tissues is limited. We have studied in vivo effects of focused shock waves induced in the syngeneic sarcoma tumor model using the TUNEL assay, immunohistochemical detection of caspase-3 and hematoxylin-eosin staining. Shock waves were produced by a multichannel pulsed-electrohydraulic discharge generator with a cylindrical ceramic-coated electrode. In tumors treated with shock waves, a large area of damaged tissue was detected which was clearly differentiated from intact tissue. Localization and a cone-shaped region of tissue damage visualized by TUNEL reaction apparently correlated with the conical shape and direction of shock wave propagation determined by high-speed shadowgraphy. A strong TUNEL reaction of nuclei and nucleus fragments in tissue exposed to shock waves suggested apoptosis in this destroyed tumor area. However, specificity of the TUNEL technique to apoptotic cells is ambiguous and other apoptotic markers (caspase-3) that we used in our study did not confirmed this observation. Thus, the generated fragments of nuclei gave rise to a false TUNEL reaction not associated with apoptosis. Mechanical stress from high overpressure shock wave was likely the dominant pathway of tumor damage. (C) 2014 Elsevier B.V. All rights reserved.
机译:冲击波可在体内和体外对肿瘤细胞和组织产生明显的细胞毒性作用。但是,了解冲击波与组织相互作用的机制是有限的。我们已经研究了在同种肉瘤肿瘤模型中诱导的聚焦冲击波的体内效应,使用TUNEL分析,caspase-3的免疫组织化学检测和苏木精-伊红染色。冲击波是由带有圆柱形陶瓷涂层电极的多通道脉冲电液放电发生器产生的。在用冲击波治疗的肿瘤中,检测到大面积的受损组织,这明显不同于完整的组织。通过TUNEL反应观察到的组织损伤的局部区域和锥形区域,显然与高速影象法确定的冲击波传播的圆锥形状和方向相关。暴露于冲击波的组织中细胞核和细胞核碎片发生强烈的TUNEL反应,提示该破坏的肿瘤区域发生凋亡。但是,TUNEL技术对凋亡细胞的特异性尚不明确,我们在研究中使用的其他凋亡标记物(caspase-3)并未证实这一发现。因此,产生的细胞核片段引起与细胞凋亡无关的假TUNEL反应。来自高超压冲击波的机械应力可能是肿瘤损害的主要途径。 (C)2014 Elsevier B.V.保留所有权利。

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