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Nondestructive Assessment of Engineered Cartilage Constructs Using Near-Infrared Spectroscopy

机译:使用近红外光谱技术对工程软骨构造进行无损评估

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Noninvasive assessment of engineered cartilage properties would enable better control of the developing tissue towards the desired structural and compositional endpoints through optimization of the biochemical environment in real time. The objective of this study is to assess the matrix constituents of cartilage using near-infrared spectroscopy (NIRS), a technique that permits full-depth assessment of developing engineered tissue constructs. Mid-infrared (mid-IR) and NIR data were acquired from full-thickness cartilage constructs that were grown up to 4 weeks with and without mechanical stimulation. Correlations were assessed between established mid-IR peak areas that reflect the relative amount of collagen (amide I, amide II, and 1338 cm~(-1)) and proteoglycan (PG), (850 cm~(-1)), and the integrated area of the NIR water absorbance at 5190 cm~(-1). This analysis was performed to evaluate whether simple assessment of the NIR water absorbance could yield information about matrix development. It was found that an increase in the mid-IR PG absorbance at 850 cm~(-1) correlated with the area of the NIR water peak (Spearman's rho velence 0.95, p < 0.0001). In the second analysis, a partial least squares method (PLS1) was used to assess whether an extended NIR spectral range (5400-3800 cm~(-1)) could be utilized to predict collagen and proteoglycan content of the constructs based on mid-IR absorbances. A subset of spectra was randomly selected as an independent prediction set in this analysis. Average of the normalized root mean square errors of prediction of first-derivative NIR spectral models were 7percent for 850 cm~(-1)(PG), 11percent for 1338 cm~(-1) (collagen), 8percent for amide II (collagen), and 8percent for amide I (collagen). These results demonstrate the ability of NIRS to monitor macromolecular content of cartilage constructs and is the first step towards employing NIR to assess engineered cartilage in situ.
机译:通过实时优化生化环境,对软骨工程特性的非侵入性评估将能够更好地控制发育中的组织,使其朝向所需的结构和组成终点。这项研究的目的是使用近红外光谱(NIRS)评估软骨的基质成分,该技术可以对开发的工程组织构建体进行全面评估。中红外(mid-IR)和NIR数据是从全厚度的软骨构建体中获得的,这些构建体在有或没有机械刺激的情况下均可生长到4周。评估建立的中红外峰面积之间的相关性,该峰中峰面积反映了胶原蛋白(酰胺I,酰胺II和1338 cm〜(-1))与蛋白聚糖(PG)的相对量(850 cm〜(-1))和5190 cm〜(-1)处NIR吸水率的积分面积。进行该分析以评估对NIR吸水率的简单评估是否可以得出有关基质发育的信息。发现在850 cm〜(-1)处的中红外PG吸光度的增加与近红外水峰的面积相关(Spearman的流度为0.95,p <0.0001)。在第二项分析中,使用偏最小二乘方法(PLS1)评估是否可以利用扩展的NIR光谱范围(5400-3800 cm〜(-1))来预测基于中间构型的构建体的胶原蛋白和蛋白聚糖含量红外吸收。在此分析中,随机选择一个光谱子集作为独立的预测集。一阶NIR光谱模型的预测归一化均方误差的平均值为850 cm〜(-1)(PG)为7%,1338 cm〜(-1)(胶原)为11%,酰胺II(胶原为8%) ),酰胺I(胶原蛋白)的含量为8%。这些结果证明了NIRS监测软骨构建体大分子含量的能力,并且是朝着使用NIR评估原位工程化软骨的第一步。

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