低幅高频振动可减少前列腺癌的体外生长和外渗

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摘要

在欧洲和北美,前列腺癌(PCa)仍然是最常见的恶性肿瘤之一,尽管在检测和治疗方面取得了进步,但死亡率仍然很高。由于体育锻炼对预防疾病复发和控制与治疗相关的副作用有好处,因此通常建议前列腺癌患者进行体育锻炼。然而,体育锻炼对于老年人或卧床不起的患者来说可能具有挑战性。因此,振动疗法被认为是一种安全、有效、易于操作的替代治疗方法,其效果可能与体育锻炼相似。具体来说,低幅高频(LMHF)振动已被证明可以减少乳腺癌向骨骼的外渗,并通过影响细胞活力减少其他类型癌症的增殖。在这里,我们研究了每天应用低频高频振动(0.3 克,60 赫兹,每天 1 小时,持续 3 天)对体外前列腺癌生长和骨转移的影响。我们的研究结果表明,LMHF 振动可通过减少细胞生长和增殖来显著减少集落的形成。此外,在三维细胞培养模型中,LMHF 振动可显著缩小 PC3 球形体的大小。此外,LMHF 振动通过刺激骨细胞和随后的骨细胞-内皮细胞交叉对话,减少了 PCa 细胞向骨微环境的外渗。这些发现凸显了 LMHF 振动在控制 PCa 生长和转移方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-magnitude high-frequency vibration reduces prostate cancer growth and extravasation in vitro

Prostate cancer (PCa) continues to rank among the most common malignancies in Europe and North America with significant mortality rates despite advancements in detection and treatment. Physical activity is often recommended to PCa patients due to its benefits in preventing disease recurrence and managing treatment-related side effects. However, physical activity may be challenging for elderly or bedridden patients. As such, vibration therapy has been proposed as a safe, effective, and easy to perform alternative treatment that may confer similar effects as physical exercise. Specifically, low-magnitude high frequency (LMHF) vibration has been shown to decrease breast cancer extravasation into the bone and reduce other types of cancer proliferation by impacting cell viability. Here, we investigated the effects of daily application of LMHF vibration (0.3 ​g, 60 ​Hz, 1 ​hour/day for 3 days) on prostate cancer growth and bone metastasis in vitro. Our findings suggest that LMHF vibration significantly reduces colony formation through a decrease in cell growth and proliferation. Moreover, using a 3D cell culture model, LMHF vibration significantly reduces PC3 spheroid size. Additionally, LMHF vibration reduces PCa cell extravasation into the bone microenvironment through the stimulation of osteocytes and subsequent osteocyte-endothelial cell cross talk. These findings highlight the potential of LMHF vibration for managing PCa growth and metastasis.

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