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Study of the cell activity in three-dimensional cell culture by using Raman spectroscopy

机译:用拉曼光谱法研究三维细胞培养中的细胞活性

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The purpose of this study is to develop a estimation technique of local cell activity in cultured 3D cell aggregate with gelatin hydrogel microspheres by using Raman spectroscopy. It is an invaluable technique allowing real-time, nondestructive, and invasive measurement. Cells in body generally exist in 3D structure, which physiological cell-cell interaction enhances cell survival and biological functions. Although a 3D cell aggregate is a good model of the cells in living tissues, it was difficult to estimate their physiological conditions because there is no effective technique to make observation of intact cells in the 3D structure. In this study, cell aggregates were formed by MC3T-E1 (pre-osteoblast) cells and gelatin hydrogel microspheres. In appropriate condition MC3T-E1 cells can differentiate into osteoblast. We assume that the activity of the cell would be different according to the location in the aggregate because the cells near the surface of the aggregate have more access to oxygen and nutrient. Raman imaging technique was applied to measure 3D image of the aggregate. The concentration of the hydroxyapatite (HA) is generated by osteoblast was estimated with a strong band at 950-970 cm~(-1) which assigned to PO_4~(3-) in HA. It reflects an activity of the specific site in the cell aggregate. The cell density in this specific site was analyzed by multivariate analysis of the 3D Raman image. Hence, the ratio between intensity and cell density in the site represents the cell activity.
机译:本研究的目的是通过使用拉曼光谱,在培养的3D细胞聚集体中发育培养的3D细胞聚集体中局部细胞活性的估计技术。它是一种宝贵的技术,允许实时,无损和侵入性测量。体内的细胞通常存在于3D结构中,生理细胞 - 细胞相互作用增强细胞存活和生物学功能。尽管3D细胞聚集体是活组织中细胞的良好模型,但难以估计其生理条件,因为没有有效的技术来观察3D结构中的完整细胞。在该研究中,通过MC3T-E1(预成骨细胞)细胞和明胶水凝胶微球形成细胞聚集体。在适当的情况下,MC3T-E1细胞可以分化为成骨细胞。我们假设细胞的活性根据聚集体中的位置而不同,因为聚集体表面附近的细胞具有更多对氧气和营养的进入。拉曼成像技术应用于测量聚集体的3D图像。羟基磷灰石(HA)的浓度由成骨细胞产生,其估计在950-970cm〜(-1)的强带,其分配给HA中的PO_4〜(3-)。它反映了细胞骨料中特定部位的活性。通过对3D拉曼图像的多变量分析来分析该特定部位中的细胞密度。因此,位点中强度和细胞密度之间的比率表示细胞活性。

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