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Monitoring adipose-derived stem cells within 3D carrier by combined dielectric spectroscopy and spectral domain optical coherence topography

机译:通过组合介电谱和光谱域光学相干形貌监测3D载体中脂肪来源的干细胞

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Monitoring non-invasively the cellular events in three dimensional carriers is a major challenge for tissue engineering and regenerative medicine that prevents time-lapsed studies over large population of sample. The potential of optical coherence tomography has been demonstrated to assess tissue formation within porous matrices. In this study we explore the combination of dielectric spectroscopy (DS) and spectral domain optical coherence tomography (SDOCT) to quality assess ADSCs loaded in three dimensional carriers. A SDOCT (930nm, FWHM 90nm) was combined to an open ended coaxial probe connected to material analyser, and broadband measurements between 20MHz and lGHz were synchronized with Labview. Both ADSCs maintained in undifferentiated state within 3D carrier and induced towards osteoblasts were monitored with this multimodality technique and their DS spectra were acquired at high cell concentration simultaneously to 3D imaging. This multimodality technique will be instrumental to assess non-invasively cell loaded carriers for cell therapy.
机译:非侵入性地监测三维载体中的细胞事件是组织工程学和再生医学的主要挑战,这阻止了对大量样本进行时效研究。光学相干断层扫描的潜力已被证明可评估多孔基质内的组织形成。在这项研究中,我们探索了介电谱(DS)和光谱域光学相干断层扫描(SDOCT)的组合,以对加载在三维载体中的ADSC进行质量评估。将SDOCT(930nm,FWHM 90nm)与连接到材料分析仪的开放式同轴探头组合,并将20MHz至1GHz之间的宽带测量与Labview同步。用这种多模态技术监测在3D载体内保持未分化状态并诱导成骨细胞的两种ADSC,并在3D成像的同时以高细胞浓度获取其DS光谱。这种多模态技术将有助于评估用于细胞治疗的非侵入性细胞负载载体。

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