首页> 外文会议>International Symposium on Therapeutic Ultrasound (2002- ) >Bioeffective Ultrasound at Very Low Doses: Reversible Manipulation of Neuronal Cell Morphology and Function in Vitro
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Bioeffective Ultrasound at Very Low Doses: Reversible Manipulation of Neuronal Cell Morphology and Function in Vitro

机译:生物切换超声,非常低剂量:在体外可逆操纵神经元细胞形态和功能

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Direct and safe manipulation of neurons by external means is an increasingly studied therapeutic modality with the potential to treat many neurological diseases. Anticipating such future applications, we investigated reversible bioeffects of very low dose focused ultrasound on neuronal cell morphology and function in vitro. To test morphological changes, undifferentiated PC 12 cells were serum-cultured. The culture plates were placed on an inverted optical microscope. An f/1.1 ultrasound transducer with a water-filled coupling cone was focused on the culture and excited with 30-ms 4.67-MHz 100-kPa pulses. To test functional changes, rat hippocampal slices were cultured and individually transferred to the well of a 60-channel multi electrode array. An f/2.1 ultrasound transducer with a water-filled coupling cone was focused on a culture and excited with 100-mus 4.04-MHz 77-kPa pulses. The culture was stimulated before and after the ultrasonic stimulus with a 100-mus 100-muA biphasic electrical stimulus. Optical microscopy of PC12 cultures under insonification revealed that cells that were clustered near the ultrasound focal region elongated by approximately 2 mum during insonification and returned to approximately their original shapes following insonification. We conclude that the acoustic radiation force is capable of reversibly deforming cultured cells. In the rat hippocampal cultures, the ultrasonically and electrically evoked responses exhibited similar biphasic waveforms. In addition, robust electrically evoked responses following insonification indicated that the insonified cultures remained viable. We conclude that low-dose ultrasound can stimulate neurons; the mechanism is currently under investigation.
机译:通过外部手段直接和安全操纵神经元是一种越来越多的治疗方式,具有治疗许多神经疾病的潜力。预测这种未来的应用,我们研究了非常低剂量聚焦超声波在神经元细胞形态和功能中的可逆生物效应。为了测试形态变化,未分化的PC 12细胞是血清培养的。将培养板置于倒置的光学显微镜上。具有水填充耦合锥的F / 1.1超声换能器聚焦在培养物上,并用30-MS 4.67-MHz 100-kPa脉冲激发。为了测试功能变化,培养大鼠海马切片并单独转移到60通道多电极阵列的井中。具有水填充耦合锥的F / 2.1超声换能器聚焦在培养物上,并用100亩4.04-MHz 77-KPA脉冲激发。在用100亩100-Mua双相电刺激之前和之后刺激培养物之前和之后。在胰发质下PC12培养物的光学显微镜显示,在胰突然期间,在超声焦点区域附近聚集的细胞约2米,并在胰腺后恢复到大约其原始形状。我们得出结论,声辐射力能够可逆地变形培养细胞。在大鼠海马培养物中,超声和电诱发的反应表现出类似的双相波形。此外,渗透后的稳健电诱发的反应表明,灭绝的培养物保持不变。我们得出结论,低剂量超声可以刺激神经元;该机制目前正在调查中。

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