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首页> 外文期刊>Journal of Therapeutic Ultrasound >Sonoporation efficacy on SiHa cells in vitro at raised bath temperatures—experimental validation of a prototype sonoporation device
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Sonoporation efficacy on SiHa cells in vitro at raised bath temperatures—experimental validation of a prototype sonoporation device

机译:在升高的浴温下体外对SiHa细胞的超声操作效力-原型声波穿孔装置的实验验证

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Background A device was devised which aimed to reduce the time and expertise required to perform sonoporation on adherent cell cultures. This prototype device was used to examine the superficial effect of bath temperature on sonoporation efficacy. Methods The prototype device consisted of six ultrasound transducers affixed beneath an Opticell stage. Six transducers with nominal diameters of 20 mm were constructed and the acoustic field of each was characterized using hydrophone scanning. A near field treatment plane was chosen for each transducer to minimize field heterogeneity in the near field. Cervical cancer-derived SiHa cells were exposed to nine different treatments in the presence of plasmid DNA-expressing green fluorescent protein (GFP). Ultrasound treatment with Definity ultrasound contrast agent (US+UCA) present, ultrasound treatment without contrast agent present (US), and a sham ultrasound treatment in the presence of ultrasound contrast agent (CA) were each performed at bath temperatures of 37, 39.5, and 42 °C. Each treatment was performed in biological triplicate. GFP expression and PARP expression following treatment were measured using fluorescent microscopy and digital image processing. Cell detachment was measured using phase contrast microscopy before and after treatment. Results Mean (± s.d.) transfection rates for the US+UCA treatment were 5.4(±0.92), 5.8(±1.3), and 5.3(±1.1) % at 37, 39.5, and 42 °C, respectively. GFP expression and cell detachment were both significantly affected by the presence of ultrasound contrast agent ( p 0.001, p 0.001). Neither GFP expression, PARP expression, or detachment differed significantly between bath temperatures. Conclusions Bath temperature did not impact the efficacy of sonoporation treatment on SiHa cells in vitro. The prototype device was found to be suitable for performing sonoporation on adherent cell cultures and will reduce the time and expertise required for conducting sonoporation experiments on adherent cell cultures in the future.
机译:背景技术设计了一种旨在减少在贴壁细胞培养上进行声穿孔的时间和专业知识的设备。该原型设备用于检查浴温对声波穿透效果的表面影响。方法原型设备由六个固定在Opticell平台下方的超声换能器组成。构造了六个标称直径为20 mm的换能器,并使用水听器扫描对每个换能器的声场进行了表征。为每个换能器选择一个近场治疗平面,以最小化近场中的场异质性。在表达质粒DNA的绿色荧光蛋白(GFP)的存在下,宫颈癌衍生的SiHa细胞接受了九种不同的处理。使用Definity超声造影剂(US + UCA)进行超声处理,不使用造影剂的超声处理(US)和在存在超声造影剂(CA)的情况下进行假超声处理均在浴温为37、39.5,和42℃。每种处理均一式三份进行。使用荧光显微镜和数字图像处理测量处理后的GFP表达和PARP表达。在处理之前和之后,使用相差显微镜测量细胞脱离。结果US + UCA处理的平均转染率(±s.d.)在37、39.5和42°C时分别为5.4(±0.92),5.8(±1.3)和5.3(±1.1)%。超声造影剂的存在显着影响了GFP的表达和细胞脱离(p <0.001,p <0.001)。在浴温之间,GFP表达,PARP表达或分离均无显着差异。结论浴温不影响声纳处理对SiHa细胞的体外疗效。发现该原型设备适用于在贴壁细胞培养上进行声穿孔,并且将减少将来在贴壁细胞培养上进行声穿孔实验所需的时间和专业知识。

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