University of North Carolina at Chapel Hill, Joint Department of Biomedical Engineering, Chapel Hill, NC, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2010 Sep;57(9):1977-84. doi: 10.1109/TUFFC.2010.1645.
To study the potential effects of low-intensity pulsed ultrasound (LIPUS) on cell response in vitro, the ability to alter LIPUS parameters is required. However, commercial LIPUS systems have very little control over parameter selection. In this study, a custom LIPUS system was designed and validated by exploring the effects of using different pulse repetition frequency (PRF) parameters on human adipose derived adult stem cells (hASCs) and bone marrow derived mesenchymal stem cells (hMSCs), two common stem cell sources for creating bone constructs in vitro. Changing the PRF was found to affect cellular response to LIPUS stimulation for both cell types. Proliferation of LIPUS-stimulated cells was found to decrease for hASCs by d 7 for all three groups compared with unstimulated control cells (P = 0.008, 0.011, 0.014 for 1 Hz, 100 Hz and 1 kHz PRF, respectively) and for hMSCs by d 14 (donor 1: P = 0.0005, 0.0002, 0.0003; donor 2: P = 0.0003, 0.0002, 0.0001; for PRFs of 1 Hz, 100 Hz, and 1 kHz, respectively). Additionally, LIPUS was shown to strongly accelerate osteogenic differentiation of hASCs based on amount of calcium accretion normalized by total DNA (P = 0.003, 0.001, 0.003, and 0.032 between control/100 Hz, control/1 kHz, 1 Hz/1 kHz, and 100 Hz/1 kHz pulse repetition frequencies, respectively). These findings promote the study of using LIPUS to induce osteogenic differentiation and further encourage the exploration of LIPUS parameter optimization. The custom LIPUS system was successfully designed to allow extreme parameter variation, specifically PRF, and encourages further studies.
为了研究低强度脉冲超声(LIPUS)对体外细胞反应的潜在影响,需要改变 LIPUS 参数的能力。然而,商业 LIPUS 系统对参数选择的控制能力非常有限。在这项研究中,设计了一种定制的 LIPUS 系统,并通过探索使用不同脉冲重复频率(PRF)参数对人脂肪来源的成体干细胞(hASCs)和骨髓来源的间充质干细胞(hMSCs)的影响来验证该系统,这两种细胞类型都是体外构建骨组织的常见干细胞来源。结果发现,改变 PRF 会影响两种细胞类型对 LIPUS 刺激的细胞反应。与未刺激对照细胞相比,LIPUS 刺激的细胞增殖在第 7 天 hASCs 的所有三组中均减少(分别为 1 Hz、100 Hz 和 1 kHz PRF 组的 P = 0.008、0.011 和 0.014),在第 14 天 hMSCs 中也减少(供体 1:P = 0.0005、0.0002 和 0.0003;供体 2:P = 0.0003、0.0002 和 0.0001;分别为 1 Hz、100 Hz 和 1 kHz 的 PRF)。此外,研究表明,LIPUS 可以强烈促进 hASCs 的成骨分化,基于钙积累量与总 DNA 的归一化(P = 0.003、0.001、0.003 和 0.032,分别为对照/100 Hz、对照/1 kHz、1 Hz/1 kHz 和 100 Hz/1 kHz 脉冲重复频率之间)。这些发现促进了使用 LIPUS 诱导成骨分化的研究,并进一步鼓励探索 LIPUS 参数优化。定制的 LIPUS 系统成功设计为允许极端参数变化,特别是 PRF,并鼓励进一步研究。