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首页> 外文期刊>Journal of Radiation Research: Official Organ of the Japan Radiation Research Society >Biological Effects of Low Intensity Ultrasound: The Mechanism Involved, and its Implications on Therapy and on Biosafety of Ultrasound
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Biological Effects of Low Intensity Ultrasound: The Mechanism Involved, and its Implications on Therapy and on Biosafety of Ultrasound

机译:低强度超声的生物学效应:涉及的机理及其对超声的治疗和生物安全性的影响

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摘要

The biological effects of low intensity ultrasound (US) in vitro; the mechanisms involved; and the factors that can enhance or inhibit these effects are reviewed. The lowest possible US intensities required to induce cell killing or to produce free radicals were determined. Following sonication in the region of these intensities, the effects of US in combination with either hyperthermia, hypotonia, echo-contrast agents (ECA), CO_2, incubation time, high cell density or various agents were examined. The results showed that hyperthermia, hypotonia and microbubbles are good enhancers of the bioeffects, while CO_2, incubation time and high cell density are good inhibitors. Cellular membrane damage is pivotal in the events leading to cell death, with the cellular damage-and-repair mechanism as an important determinant of the fate of the damaged cells. The optimal level of apoptosis (with minimal lysis) and optimal gene transfection efficiency were attained using a pulsed low intensity US. In summary, the findings suggest that low intensity US is potentially useful in therapy, while on the other hand, they also call for further investigation of such clinical scenarios as high-grade fever, edema or use of ECA which may lead to the lowering of the threshold for bioeffects with diagnostic US.
机译:低强度超声(US)的体外生物学效应;涉及的机制;并综述了可以增强或抑制这些作用的因素。确定了诱导细胞杀伤或产生自由基所需的最低US强度。在这些强度的区域进行超声处理后,检查了US与热疗,肌张力降低,回声造影剂(ECA),CO_2,温育时间,高细胞密度或各种药物联合使用的效果。结果表明,高热,低渗和微泡是生物效应的良好增强剂,而CO_2,温育时间和高细胞密度是良好的生物抑制剂。细胞膜损伤在导致细胞死亡的事件中至关重要,而细胞损伤修复机制是受损细胞命运的重要决定因素。使用脉冲低强度超声可获得最佳凋亡水平(裂解最少)和最佳基因转染效率。总之,研究结果表明,低强度超声可能在治疗中有用,另一方面,他们还呼吁进一步研究诸如高烧,水肿或使用ECA等临床情况,这些情况可能会降低诊断性美国的生物效应阈值。

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