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首页> 外文期刊>Open Journal of Biophysics >Non-Thermal Radio Frequency Stimulation of Tubulin Polymerization in Vitro: A Potential Therapy for Cancer Treatment
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Non-Thermal Radio Frequency Stimulation of Tubulin Polymerization in Vitro: A Potential Therapy for Cancer Treatment

机译:微管蛋白聚合的非热射频刺激体外:潜在的癌症治疗方法。

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The use of radio frequency energy is an established technology for certain oncology therapies. Direct inputs of radio frequency (RF) energy as thermal energy are applied to ablate tumors or catalyze secondary reactions in adjunct treatments against certain tumor types. Yet, other applications are being developed which take advantage of properties of RFs that impinge on biological proteins and cells without thermal effects. Here we report a proof-of-concept application of specific, digitally encoded, low power (non-thermal) radio frequency energy in an in vitro preparation of a tubulin polymerization assay. The radio frequency energy signal, designated M2(3), was applied to the tubulin polymerization assay samples during spectrophotometric measurements to assess the effectiveness for enhancing tubulin polymerization. A commercially available taxane (paclitaxel) that promotes tubulin polymerization was used as a control to assess the effectiveness of the M2(3) radio frequency energy signal on tubulin polymerization rates. A low power, specific, digital radio frequency energy signal is capable of promoting tubulin polymerization as effectively as a commercially available taxane.
机译:射频能量的使用是某些肿瘤治疗的既定技术。射频(RF)能量作为热能的直接输入被用于消融肿瘤或催化针对某些肿瘤类型的辅助治疗中的次级反应。然而,正在开发利用射频(RF)特性的其他应用,这些特性会在不产生热效应的情况下撞击生物蛋白质和细胞。在这里,我们报告了在微管蛋白聚合测定的体外制备中特定的,数字编码的,低功率(非热)射频能量的概念验证应用。在分光光度法测量期间,将名为M2(3)的射频能量信号应用于微管蛋白聚合测定样品,以评估增强微管蛋白聚合的有效性。促进微管蛋白聚合的市售紫杉烷(紫杉醇)用作对照,以评估M2(3)射频能量信号对微管蛋白聚合速率的有效性。低功率,特定的数字射频能量信号能够像商业上的紫杉烷一样有效地促进微管蛋白的聚合。

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