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Biological Cardiac Tissue Effects of High-Energy Heavy Ions – Investigation for Myocardial Ablation

机译:高能重离子的生物心脏组织效应–心肌消融研究

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摘要

Noninvasive X-ray stereotactic treatment is considered a promising alternative to catheter ablation in patients affected by severe heart arrhythmia. High-energy heavy ions can deliver high radiation doses in small targets with reduced damage to the normal tissue compared to conventional X-rays. For this reason, charged particle therapy, widely used in oncology, can be a powerful tool for radiosurgery in cardiac diseases. We have recently performed a feasibility study in a swine model using high doses of high-energy C-ions to target specific cardiac structures. Interruption of cardiac conduction was observed in some animals. Here we report the biological effects measured in the pig heart tissue of the same animals six months after the treatment. Immunohistological analysis of the target tissue showed (1.) long-lasting vascular damage, i.e. persistent hemorrhage, loss of microvessels, and occurrence of siderophages, (2.) fibrosis and (3.) loss of polarity of targeted cardiomyocytes and wavy fibers with vacuolization. We conclude that the observed physiological changes in heart function are produced by radiation-induced fibrosis and cardiomyocyte functional inactivation. No effects were observed in the normal tissue traversed by the particle beam, suggesting that charged particles have the potential to produce ablation of specific heart targets with minimal side effects.
机译:对于患有严重心律不齐的患者,无创X射线立体定向治疗被认为是导管消融的有希望的替代方法。与传统的X射线相比,高能重离子可以在小的目标中提供高剂量的辐射,而对正常组织的损害则减少了。因此,在肿瘤学中广泛使用的带电粒子疗法可以成为心脏疾病放射外科的强大工具。我们最近在猪模型中进行了可行性研究,使用高剂量的高能C离子靶向特定的心脏结构。在某些动物中观察到心脏传导受阻。在这里,我们报告了治疗六个月后在相同动物的猪心脏组织中测得的生物学效应。对目标组织的免疫组织学分析显示:(1。)长期血管损伤,即持续性出血,微血管丢失和噬菌体的发生,(2。)纤维化和(3.)靶向心肌细胞和波浪状纤维的极性丧失空泡化。我们得出结论,观察到的心脏功能的生理变化是由辐射诱导的纤维化和心肌细胞功能失活产生的。在被粒子束穿过的正常组织中未观察到任何影响,表明带电粒子具有产生特定心脏靶标的消融的潜力,且副作用最小。

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