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Investigation of an Optical Imaging Platform Integrated with an Ultrasound Application System for In Vitro Verification of Ultrasound-Mediated Drug Delivery

机译:用于超声介导的超声介导药物递送的超声施用系统集成的光学成像平台的研究

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摘要

Techniques that increase the permeability of the cell membrane and transfer drugs or genes to cells have been actively developed as effective therapeutic modalities. Also, in line with the development of these drug delivery techniques, the establishment of tools to verify the techniques at the cellular level is strongly required. In this study, we demonstrated an optical imaging platform integrated with an ultrasound application system to verify the feasibility of safe and efficient drug delivery through the cell membrane using ultrasound-microbubble cavitation. To examine the potential of the platform, fluorescence images of both Fura-2 AM and propidium iodide (PI) to measure calcium flux changes and intracellular PI delivery, respectively, during and after the ultrasound-microbubble cavitation in the cervical cancer cell were acquired. Using the optical imaging platform, we determined that calcium flux increased immediately after the ultrasound-microbubble cavitation and were restored to normal levels, and fluorescence signals from intracellular PI increased gradually after the cavitation. The results acquired by the platform indicated that ultrasound-microbubble cavitation can deliver PI into the cervical cancer cell without irreversible damage of the cell membrane. The application of an additional fluorescent imaging module and high-speed imaging modalities can provide further improvement of the performance of this platform. Also, as additional studies in ultrasound instrumentations to measure real-time cavitation signals progress, we believe that the ultrasound-microbubble cavitation-based sonoporation can be employed for safe and efficient drug and gene delivery to various cancer cells.
机译:增加了细胞膜和转移药物或基因对细胞的渗透性的技术已被主动开发为有效的治疗方式。此外,根据这些药物输送技术的发展,强烈需要建立工具以验证细胞水平的技术。在这项研究中,我们证明了一种与超声施用系统集成的光学成像平台,以验证使用超声微胶石空化通过细胞膜通过细胞膜进行安全和有效的药物递送的可行性。为了检查平台的潜力,呋喃-2AM和碘化丙锭(PI)的荧光图像分别获得宫颈癌细胞中超声微泡空化的钙通量变化和细胞内PI递送。使用光学成像平台,我们确定钙通量在超声微泡空化后立即增加,并且恢复到正常水平,并且在空化后,来自细胞内PI的荧光信号逐渐增加。该平台获得的结果表明,超声波微泡空化可以将PI输送到宫颈癌细胞中,而不会对细胞膜的不可逆损伤。额外的荧光成像模块和高速成像方式的应用可以进一步提高该平台的性能。此外,作为超声仪器中的额外研究来测量实时空化信号的进展,我们认为超声波微泡空化的超声厌声可用于安全和有效的药物和基因递送至各种癌细胞。

著录项

  • 作者

    Jong-ryul Choi; Juyoung Park;

  • 作者单位
  • 年度 2021
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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