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Structural and Functional Imaging of Engineered Tissue Development using an Integrated OCT and Multi-Photon Microscope

机译:使用集成OCT和多光子显微镜的工程组织开发结构和功能成像

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Recent advances in the field of tissue engineering have led to the development of complex three-dimensional tissue constructs. It has become clear, however, that the traditional tools used for studying standard cell cultures are not always adequate for diagnostically studying thick, highly-scattering cultured tissues. Furthermore, many techniques used for studying three-dimensional constructs are invasive or require exogenous fluorophores, which damage the tissue and prevent time-course studies of tissue development. An integrated optical coherence tomography (OCT) and multi-photon microscope (MPM) has been constructed for visualizing 3-D engineered tissues. OCT was used for imaging structure and cell organization, while MPM was used for assessing functional properties of cells. We demonstrate technical developments involved in the construction of this instrument and its use in the non-destructive investigation of cell movement and tissue organization in engineered tissues. Cells labeled with GFP and exogenous fluorescent probes have also been imaged with OCT and confocal microscopy. Studies indicate that an integrated microscope has the potential to be an enabling diagnostic tool for future studies in the growth and organization of engineering tissues and in cell-cell and cell-matrix interactions.
机译:组织工程领域的最新进展导致复杂的三维组织构建体的发展。然而,已经清楚地清楚地,用于研究标准细胞培养物的传统工具并不总是足以用于诊断上研究厚,高度散射的培养组织。此外,用于研究三维构建体的许多技术是侵入性的或需要外源荧光团,其损害组织并预防组织发育的时间过程研究。已经构建了集成光学相干断层扫描(OCT)和多光子显微镜(MPM)以可视化3D工程组织。 OCT用于成像结构和细胞组织,而MPM用于评估细胞的功能性质。我们展示了参与该仪器建设的技术开发及其在工程组织中的细胞运动和组织组织的非破坏性调查中的用途。用GFP和外源荧光探针标记的细胞也与OCT和共聚焦显微镜进行了成像。研究表明,集成显微镜有可能成为未来研究工程组织和细胞 - 细胞和细胞 - 基质相互作用的未来研究的诊断工具。

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