Kamaev Pavel P, Hutcheson Joshua D, Wilson Michelle L, Prausnitz Mark R
School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30332-0100, USA.
J Acoust Soc Am. 2004 Apr;115(4):1818-25. doi: 10.1121/1.1624073.
Acoustic cavitation has been shown to deliver molecules into viable cells, which is of interest for drug and gene delivery applications. To address mechanisms of these acoustic bioeffects, this work measured the lifetime of albumin-stabilized cavitation bubbles (Optison) and correlated it with desirable (intracellular uptake of molecules) and undesirable (loss of cell viability) bioeffects. Optison was exposed to 500 kHz ultrasound (acoustic pressures of 0.6-3.0 MPa and energy exposures of 0.2-200 J/cm2) either with or without the presence of DU145 prostate cancer cells (10(6) cells/ml) bathed in calcein, a cell-impermeant tracer molecule. Bubble lifetime was determined using a Coulter counter and flow cytometer, while bioeffects were evaluated by flow cytometry. The lifetime of Optison cavitation nuclei was found to decrease and bioeffects (molecular uptake and loss of cell viability) were found to increase with increasing acoustic energy exposure. These bioeffects correlated well with the disappearance of bubbles, suggesting that contrast agent destruction either directly or indirectly affected cells, probably involving unstabilized cavitation nuclei created upon the destruction of Optison. Because Optison solutions presonicated to destroy all detectable bubbles also caused significant bioeffects, the indirect mechanism involving secondary cavitation bubbles is more likely.
已证明声空化可将分子递送至活细胞中,这在药物和基因递送应用方面具有重要意义。为了探究这些声学生物效应的机制,本研究测量了白蛋白稳定化空化泡(Optison)的寿命,并将其与理想的(分子的细胞内摄取)和不良的(细胞活力丧失)生物效应相关联。将Optison暴露于500 kHz超声(声压为0.6 - 3.0 MPa,能量暴露为0.2 - 200 J/cm²)下,实验中存在或不存在浸于钙黄绿素(一种细胞不透性示踪分子)中的DU145前列腺癌细胞(10⁶个细胞/ml)。使用库尔特计数器和流式细胞仪测定泡寿命,同时通过流式细胞术评估生物效应。发现随着声能暴露增加,Optison空化核的寿命缩短,生物效应(分子摄取和细胞活力丧失)增强。这些生物效应与气泡的消失密切相关,表明造影剂的破坏直接或间接影响细胞,可能涉及Optison破坏时产生的不稳定空化核。由于预超声处理以破坏所有可检测气泡的Optison溶液也会引起显著的生物效应,因此涉及二次空化泡的间接机制更有可能。