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激光阱单细胞电离:测量BT20乳腺癌细胞辐射剂量和电荷的初步研究。

Single cell ionization by a laser trap: a preliminary study in measuring radiation dose and charge in BT20 breast carcinoma cells.

作者信息

Kelley Michele, Gao Ying, Erenso Daniel

机构信息

Department of Physics and Astronomy, Middle Tennessee State University, Murfreesboro, Tennessee 37132, USA.

Tennesse Center for Botanical Medicine Research and Department of Biology, Middle Tennessee State University, Murfreesboro, Tennessee 37132, USA.

出版信息

Biomed Opt Express. 2016 Aug 12;7(9):3438-3448. doi: 10.1364/BOE.7.003438. eCollection 2016 Sep 1.

Abstract

In this work, a preliminary study in the application of a laser trap for ionization of living carcinoma cells is presented. The study was conducted using BT20 breast carcinoma cells cultured and harvested in our laboratory. Each cell, for a total of 50 cells, was trapped and ionized by a high intensity infrared laser at 1064 nm. The threshold radiation dose and the resultant charge from the ionization for each cell were determined. With the laser trap serving as a radiation source, the cell underwent dielectric breakdown of the membrane. When this process occurs, the cell becomes highly charged and its dielectric susceptibility changes. The charge creates an increasing electrostatic force while the changing dielectric susceptibility diminishes the strength of the trapping force. Consequently, at some instant of time the cell gets ejected from the trap. The time inside the trap while the cell is being ionized, the intensity of the radiation, and the post ionization trajectory of the cell were used to determine the threshold radiation dose and the charge for each cell. The measurement of the charge vs ionization radiation dose at single cell level could be useful in the accuracy of radiotherapy as the individual charges can collectively create a strong enough electrical interaction to cause dielectric breakdown in other cells in a tumor.

摘要

在这项工作中,展示了一项关于激光阱用于活癌细胞电离的初步研究。该研究使用在我们实验室培养和收获的BT20乳腺癌细胞进行。总共50个细胞中的每个细胞都被1064nm的高强度红外激光捕获并电离。确定了每个细胞的阈值辐射剂量和电离产生的电荷。以激光阱作为辐射源,细胞经历了膜的介电击穿。当这个过程发生时,细胞会带上高电荷,其介电敏感性会发生变化。电荷产生不断增加的静电力,而不断变化的介电敏感性会削弱捕获力的强度。因此,在某个时刻细胞会从阱中弹出。细胞在阱内被电离的时间、辐射强度以及细胞电离后的轨迹被用于确定每个细胞的阈值辐射剂量和电荷。在单细胞水平上测量电荷与电离辐射剂量,对于放射治疗的准确性可能是有用的,因为单个电荷可以共同产生足够强的电相互作用,从而导致肿瘤中其他细胞的介电击穿。

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Dielectric breakdown of cell membranes.细胞膜的介电击穿。
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