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Magnetomotive optical coherence microscopy for cell dynamics and biomechanics

机译:磁动力光学相干显微镜用于细胞动力学和生物力学

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摘要

Magnetomotive microscopy techniques are introduced to investigate cell dynamics and biomechanics. These techniques are based on magnetomotive transducers present in cells and optical coherence imaging techniques. In this study, magnetomotive transducers include magnetic nanoparticles (MNPs) and fluorescently labeled magnetic microspheres, while the optical coherence imaging techniques include integrated optical coherence (OCM)and multiphoton (MPM) microscopy,and diffraction phase microscopy (DPM). Samples used in this study are murine macrophage cells in culture that were incubated with magnetomotive transducers. MPMis used to visualize multifunctional microspheres based on their fluorescence, while magnetomotive OCM detects sinusoidal displacements of the sample induced by a magnetic field. DPM is used to image single cells at a lower frequency magnetic excitation, and with its Fourier transform light scattering (FTLS) analysis, oscillation amplitude is obtained, indicating the relative biomechanical properties of macrophage cells. These magnetomotive microscopy method shave potential to be used to image and measure cell dynamics and biomechanical properties. The ability to measure and understand biomechanical properties of cells and their microenvironments, especially for tumor cells, is of great importance and may provide insight for diagnostic and subsequently therapeutic interventions.
机译:引入了磁动显微镜技术来研究细胞动力学和生物力学。这些技术基于细胞中存在的磁动换能器和光学相干成像技术。在这项研究中,磁动换能器包括磁性纳米颗粒(MNP)和荧光标记的磁性微球,而光学相干成像技术包括集成光学相干(OCM)和多光子(MPM)显微镜以及衍射相显微镜(DPM)。本研究中使用的样品是培养中的鼠巨噬细胞,并与磁动换能器一起孵育。 MPMi用于根据其荧光可视化多功能微球,而磁动OCM则检测由磁场引起的样品的正弦位移。 DPM用于在较低频率的磁激发下对单个细胞进行成像,并通过其傅里叶变换光散射(FTLS)分析获得振荡幅度,表明巨噬细胞的相对生物力学特性。这些磁动力显微镜方法具有潜在的潜力,可用于成像和测量细胞动力学和生物力学特性。测量和理解细胞及其微环境(尤其是肿瘤细胞)的生物力学特性的能力非常重要,可以为诊断和随后的治疗干预提供见识。

著录项

  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Beckman Institute for Advanced Science and Technology,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801 Department of Electrical and Computer Engineering,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801;

    Beckman Institute for Advanced Science and Technology,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801 Department of Electrical and Computer Engineering,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801;

    Beckman Institute for Advanced Science and Technology,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801;

    Beckman Institute for Advanced Science and Technology,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801 Department of Physics,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801;

    Beckman Institute for Advanced Science and Technology,University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801 Department of Chemistry, University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, IL, USA 61801;

    et al;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    Magnetic tweezers; optical coherence microscopy; diffraction phase microscopy; cell biomechanics;

    机译:磁性镊子;光学相干显微镜衍射相显微镜细胞生物力学;
  • 入库时间 2022-08-26 13:44:36

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