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冲击波对 MDA-MB-231 细胞活力的影响。

Shock wave impact on the viability of MDA-MB-231 cells.

机构信息

Department of Naval Architecture and Marine Engineering, University of Michigan, Ann Arbor, Michigan, United States of America.

Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan, United States of America.

出版信息

PLoS One. 2020 Jun 4;15(6):e0234138. doi: 10.1371/journal.pone.0234138. eCollection 2020.

Abstract

Shock waves are gaining interests in biological and medical applications. In this work, we investigated the mechanical characteristics of shock waves that affect cell viability. In vitro testing was conducted using the metastatic breast epithelial cell line MDA-MB-231. Shock waves were generated using a high-power pulse laser. Two different coating materials and different laser energy levels were used to vary the peak pressure, decay time, and the strength of subsequent peaks of the shock waves. Within the testing capability of the current study, it is shown that shock waves with a higher impulse led to lower cell viability, a higher detached cell ratio, and a higher cell death ratio, while shock waves with the same peak pressure could lead to different levels of cell damage. The results also showed that the detached cells had a higher cell death ratio compared to the attached cells. Moreover, a critical shock impulse of 5 Pa·s was found to cause the cell death ratio of the detached cells to exceed 50%. This work has demonstrated that, within the testing range shown here, the impulse, rather than the peak pressure, is the governing shock wave parameter for the damage of MDA-MB-231 breast cancer cells. The result suggests that a lower-pressure shock wave with a longer duration, or multiple sequential low amplitude shock waves can be applied over a duration shorter than the fundamental response period of the cells to achieve the same impact as shock waves with a high peak pressure but a short duration. The finding that cell viability is better correlated with shock impulse rather than peak pressure has potential significant implications on how shock waves should be tailored for cancer treatments, enhanced drug delivery, and diagnostic techniques to maximize efficacy while minimizing potential side effects.

摘要

冲击波在生物和医学应用中越来越受到关注。在这项工作中,我们研究了影响细胞活力的冲击波的力学特性。体外测试使用转移性乳腺上皮细胞系 MDA-MB-231 进行。冲击波是使用高功率脉冲激光产生的。使用两种不同的涂层材料和不同的激光能量水平来改变冲击波的峰值压力、衰减时间和后续峰值的强度。在当前研究的测试能力范围内,表明具有更高脉冲的冲击波会导致更低的细胞活力、更高的脱落细胞比例和更高的细胞死亡率,而具有相同峰值压力的冲击波可能会导致不同程度的细胞损伤。结果还表明,与附着细胞相比,脱落细胞具有更高的细胞死亡率。此外,发现 5 Pa·s 的临界冲击波脉冲会导致脱落细胞的细胞死亡率超过 50%。这项工作表明,在所示的测试范围内,脉冲而不是峰值压力是导致 MDA-MB-231 乳腺癌细胞损伤的主导冲击波参数。结果表明,持续时间较长、峰值压力较低的冲击波,或多个连续的低幅度冲击波,可以在比细胞基本响应周期短的时间内施加,以实现与具有高峰值压力但持续时间短的冲击波相同的冲击。细胞活力与冲击波脉冲的相关性优于峰值压力的发现,对如何为癌症治疗、增强药物输送和诊断技术定制冲击波以最大程度提高疗效同时最小化潜在副作用具有潜在的重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70b6/7272042/f8be94dec743/pone.0234138.g001.jpg

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