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Optical Coherence Tomography Investigation of Growth Cycles of Engineered Skin Tissue

机译:光学相干层析成像技术对工程皮肤组织生长周期的研究

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Engineered skin tissues are widely used in dermatological, pharmacological and toxicological studies and as autologous transplants in wound healing. Due to the high demand for artificial skin equivalents, there is a need for an automation of the manual production process to achieve a high-grade product. Thus, non-invasive monitoring of engineered tissue during the growth cycles is of major significance to understand and consequently improve the growth characteristics of in vitro tissue. Prior to the framework of the automation of artificial humanoid 3d-skin tissue engineering, optimal growth parameters need to be determined. The successful engineering of humanoid tissue is strongly coupled to the composition and structure of the upper epidermal and dermal skin layers. The layers are based on primary humanoid keratinocytes and a collagen - fibroblasts matrix. We applied optical coherence tomography as tissue imaging technology, which offers great potential to detect and characterize the differentiation processes of engineered skin. OCT provides a high resolution in the micron range with an imaging depth of about 1.5mm in semitransparent tissue. Due to a high quality signal to noise ratio, even small changes in signal at the boundary of the skin layers are detectable. In a study, OCT tomograms were taken after each production step of the skin equivalents and compared to the images of histologies.
机译:工程皮肤组织广泛用于皮肤病学,药理学和毒理学研究,以及自体移植在伤口愈合中的应用。由于对人造皮肤等效物的高需求,因此需要手动生产过程的自动化以实现高质量的产品。因此,在生长周期中对工程组织进行非侵入式监测对于理解并因此改善体外组织的生长特性具有重要意义。在人工人形3d皮肤组织工程自动化框架之前,需要确定最佳生长参数。人形组织的成功改造与上表皮和真皮皮肤层的组成和结构紧密相关。这些层基于初级人形角质形成细胞和胶原-成纤维细胞基质。我们将光学相干层析成像技术用作组织成像技术,这为检测和表征工程皮肤的分化过程提供了巨大的潜力。 OCT在微米范围内提供高分辨率,并且在半透明组织中的成像深度约为1.5mm。由于高质量的信噪比,即使在皮肤层边界处的信号即使很小的变化也可以检测到。在一项研究中,在皮肤等效物的每个生产步骤之后拍摄了OCT断层图,并将其与组织学图像进行了比较。

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