Department of Biology, Faculty of Natural Sciences, Vytautas Magnus University, Vileikos 8, Kaunas LT-44404, Lithuania.
Technol Cancer Res Treat. 2012 Aug;11(4):375-87. doi: 10.7785/tcrt.2012.500285. Epub 2012 Mar 1.
Cell sonoporation enables the delivery of various exogenous molecules into the cells. To maximize the percentage of reversibly sonoporated cells and to increase cell viability we propose a model for implicit dosimetry for adjustment of ultrasound (US) exposure duration. The Chinese hamster ovary cell suspension was supplemented with microbubbles (MB) and exposed to US, operating at the frequency of 880kHz, with a 100% duty cycle and with an output peak negative pressure (PNP) of 500kPa for durations ranging from 0.5 to 30s. Using diagnostic B-scan imaging we showed that the majority of the MB at 500kPa US peak negative pressure undergo sonodestruction in less than a second. During this time maximal number of reversibly sonoporated cells was achieved. Increase of US exposure duration did not increase sonoporated cell number, however it induced additional cell viability decrease. Therefore aiming to achieve the highest level of reversibly sonoporated cells and also to preserve the highest level of cell viability, the duration of US exposure should not exceed the duration needed for complete MB sonodestruction.
细胞电穿孔使各种外源分子进入细胞成为可能。为了使可逆电穿孔细胞的百分比最大化,并提高细胞活力,我们提出了一种用于超声(US)暴露时间调整的隐式剂量学模型。在频率为 880kHz、占空比为 100%、输出峰值负压(PNP)为 500kPa 的条件下,向含有微泡(MB)的中国仓鼠卵巢细胞悬浮液中施加 US,作用时间范围为 0.5 到 30 秒。使用诊断 B 型扫描成像,我们发现,在 500kPa 的 US 峰值负压下,大多数 MB 在不到一秒的时间内发生了声致破坏。在此期间,实现了最多数量的可逆电穿孔细胞。增加 US 暴露时间不会增加电穿孔细胞的数量,但会导致额外的细胞活力下降。因此,为了达到最高水平的可逆电穿孔细胞,并保持最高水平的细胞活力,US 暴露的持续时间不应超过完全 MB 声致破坏所需的时间。