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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Real-Time Spectroscopic Analysis of Extracellular Matrix Produced by MC3T3-E1 Preosteoblastic Cells Cultured Under Dynamic Conditions
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Real-Time Spectroscopic Analysis of Extracellular Matrix Produced by MC3T3-E1 Preosteoblastic Cells Cultured Under Dynamic Conditions

机译:动态条件下培养的MC3T3-E1骨前成骨细胞产生的细胞外基质的实时光谱分析

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The deposition of extracellular matrix (ECM) produced by osteoblasts is one of the first steps in bone formation. Composition and structure of the ECM influence the development and strength of bone, as well as the onset of its mineralization. Since ECM is secreted onto the surface where the cells attach, Fourier transform infrared (FT-IR) attenuated total reflection (ATR), as a surface sensitive technique, provides a useful tool for its investigation, as ECM instead of the cells is predominantly detected by the IR beam. The purpose of the present study was to develop the FT-IR ATR technique so that real-time measurements of the ECM produced by MC3T3-E1 osteoblasts could be obtained in situ. Measurements were performed using polarized incident IR light to apply a procedure for solvent compensation which reduces the influence of culture medium on the evaluation of the amide I and II bands. The formation of ECM took place in a flow-through chamber under dynamic conditions by applying a constant flow of culture medium and was tracked over a time period of two weeks by evaluation of the integrated absorbance of amide I and II bands reflecting the amount and isotropic arrangement of amide bonds in the ECM. Cultures without ascorbic acid had a reduced protein concentration that enabled the analysis of cell-mediated matrix accumulation. Presence and proliferation of cells after two weeks of permanent flow-through of culture medium was shown by cell counting exhibiting a 67percent increase in cell number as well as by crystal violet and live/dead staining. These results demonstrate the application of FT-IR ATR spectroscopy for monitoring matrix formation.
机译:成骨细胞产生的细胞外基质(ECM)的沉积是骨形成的第一步。 ECM的组成和结构会影响骨骼的发育和强度,以及其矿化的开始。由于ECM分泌到细胞附着的表面上,因此作为一种表面敏感技术,傅里叶变换红外(FT-IR)衰减全反射(ATR)为研究提供了有用的工具,因为主要检测到的是ECM而不是细胞通过红外光束。本研究的目的是开发FT-IR ATR技术,以便可以就地获得MC3T3-E1成骨细胞产生的ECM的实时测量值。使用偏振入射红外光进行测量,以应用溶剂补偿程序,从而减少培养基对酰胺I和II谱带评估的影响。 ECM的形成是在动态条件下,通过施加恒定的培养基流量在流通室中进行的,并通过评估反映该数量和各向同性的酰胺I和II谱带的积分吸光度来跟踪两周的时间ECM中酰胺键的排列。没有抗坏血酸的培养物具有降低的蛋白质浓度,从而能够分析细胞介导的基质蓄积。通过细胞计数显示细胞数目增加67%以及结晶紫和活/死染色显示细胞永久流通两周后细胞的存在和增殖。这些结果证明了FT-IR ATR光谱技术在监测基质形成中的应用。

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