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Quantitative ultrasound can assess the regeneration process of tissue-engineered cartilage using a complex between adherent bone marrow cells and a three-dimensional scaffold

机译:定量超声可以使用粘附的骨髓细胞和三维支架之间的复合物来评估组织工程软骨的再生过程

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摘要

Articular cartilage (hyaline cartilage) defects resulting from traumatic injury or degenerative joint disease do not repair themselves spontaneously. Therefore, such defects may require novel regenerative strategies to restore biologically and biomechanically functional tissue. Recently, tissue engineering using a complex of cells and scaffold has emerged as a new approach for repairing cartilage defects and restoring cartilage function. With the advent of this new technology, accurate methods for evaluating articular cartilage have become important. In particular, in vivo evaluation is essential for determining the best treatment. However, without a biopsy, which causes damage, articular cartilage cannot be accurately evaluated in a clinical context. We have developed a novel system for evaluating articular cartilage, in which the acoustic properties of the cartilage are measured by introducing an ultrasonic probe during arthroscopy of the knee joint. The purpose of the current study was to determine the efficacy of this ultrasound system for evaluating tissue-engineered cartilage in an experimental model involving implantation of a cell/scaffold complex into rabbit knee joint defects. Ultrasonic echoes from the articular cartilage were converted into a wavelet map by wavelet transformation. On the wavelet map, the percentage maximum magnitude (the maximum magnitude of the measurement area of the operated knee divided by that of the intact cartilage of the opposite, nonoperated knee; %MM) was used as a quantitative index of cartilage regeneration. Using this index, the tissue-engineered cartilage was examined to elucidate the relations between ultrasonic analysis and biochemical and histological analyses. The %MM increased over the time course of the implant and all the hyaline-like cartilage samples from the histological findings had a high %MM. Correlations were observed between the %MM and the semiquantitative histologic grading scale scores from the histological findings. In the biochemical findings, the chondroitin sulfate content increased over the time course of the implant, whereas the hydroxyproline content remained constant. The chondroitin sulfate content showed a similarity to the results of the %MM values. Ultrasonic measurements were found to predict the regeneration process of the tissue-engineered cartilage as a minimally invasive method. Therefore, ultrasonic evaluation using a wavelet map can support the evaluation of tissue-engineered cartilage using cell/scaffold complexes.
机译:由外伤或退行性关节疾病引起的关节软骨(透明软骨)缺陷不会自发修复。因此,这些缺陷可能需要新颖的再生策略来恢复生物学和生物力学功能的组织。近来,使用细胞和支架复合物的组织工程已经出现,作为修复软骨缺损和恢复软骨功能的新方法。随着这项新技术的出现,评估关节软骨的准确方法变得越来越重要。特别地,体内评估对于确定最佳治疗至关重要。但是,如果不进行会造成损害的活检,则无法在临床上准确评估关节软骨。我们已经开发了一种用于评估关节软骨的新型系统,其中通过在膝关节的关节镜检查期间引入超声探头来测量软骨的声学特性。本研究的目的是确定在涉及将细胞/支架复合物植入兔膝关节缺损的实验模型中,该超声系统用于评估组织工程软骨的功效。通过小波变换将来自关节软骨的超声回波转换为小波图。在小波图上,最大百分比百分比(手术膝盖的测量区域的最大大小除以相对的非手术膝盖的完整软骨的最大大小;%MM)被用作软骨再生的定量指标。使用该指标,对组织工程软骨进行了检查,以阐明超声分析与生化和组织学分析之间的关系。 %MM随植入物的时间进程而增加,并且从组织学发现的所有透明状软骨样品均具有较高的%MM。从组织学结果中观察到%MM与半定量组织学分级量表得分之间存在相关性。在生化发现中,硫酸软骨素含量随植入物的时间变化而增加,而羟脯氨酸含量保持恒定。硫酸软骨素含量与%MM值的结果相似。发现超声测量可以预测组织工程软骨的再生过程,并将其作为一种微创方法。因此,使用小波图的超声评估可以支持使用细胞/支架复合物评估组织工程软骨。

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