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Alternating electric fields (TTFields) inhibit metastatic spread of solid tumors to the lungs

机译:交变电场(TTFields)抑制实体瘤向肺的转移扩散

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摘要

Tumor treating fields (TTFields) are low intensity, intermediate frequency, alternating electric fields used to treat cancerous tumors. This novel treatment modality effectively inhibits the growth of solid tumors in vivo and has shown promise in pilot clinical trials in patients with advanced stage solid tumors. TTFields were tested for their potential to inhibit metastatic spread of solid tumors to the lungs in two animal models: (1) Mice injected with malignant melanoma cells (B16F10) into the tail vein, (2) New Zealand White rabbits implanted with VX-2 tumors within the kidney capsule. Mice and rabbits were treated using two-directional TTFields at 100–200 kHz. Animals were either monitored for survival, or sacrificed for pathological and histological analysis of the lungs. The total number of lung surface metastases and the absolute weight of the lungs were both significantly lower in TTFields treated mice then in sham control mice. TTFields treated rabbits survived longer than sham control animals. This extension in survival was found to be due to an inhibition of metastatic spread, seeding or growth in the lungs of TTFields treated rabbits compared to controls. Histologically, extensive peri- and intra-tumoral immune cell infiltration was seen in TTFields treated rabbits only. These results raise the possibility that in addition to their proven inhibitory effect on the growth of solid tumors, TTFields may also have clinical benefit in the prevention of metastatic spread from primary tumors.
机译:肿瘤治疗场(TTFields)是用于治疗癌性肿瘤的低强度,中频,交变电场。这种新颖的治疗方式可有效抑制体内实体瘤的生长,并已在晚期实体瘤患者的中试临床试验中显示出希望。在两个动物模型中测试了TTFields抑制实体瘤转移至肺部的潜力:(1)小鼠尾静脉注射了恶性黑色素瘤细胞(B16F10),(2)植入了VX-2的新西兰白兔肾囊内有肿瘤。使用双向TTField在100–200 kHz处对小鼠和兔子进行治疗。监测动物的存活,或处死动物以进行肺的病理和组织学分析。 TTFields处理的小鼠的肺表面转移总数和肺的绝对重量均显着低于假对照小鼠。 TTFields处理的兔子比假对照组的动物存活时间更长。发现存活的这种延长是由于与对照相比,TTFields处理的兔子的肺中的转移扩散,播种或生长受到抑制。在组织学上,仅在TTFields处理的兔子中观察到广泛的肿瘤周围和肿瘤内免疫细胞浸润。这些结果提出了这样的可能性:除了已证明的对实体瘤生长的抑制作用外,TTFields在预防原发肿瘤转移扩散方面也可能具有临床益处。

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