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首页> 外文期刊>Acta biomaterialia >Temporal development of near-native functional properties and correlations with qMRI in self-assembling fibrocartilage treated with exogenous lysyl oxidase homolog 2
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Temporal development of near-native functional properties and correlations with qMRI in self-assembling fibrocartilage treated with exogenous lysyl oxidase homolog 2

机译:用外源性溶酶氧化酶同源物处理的自组装纤维纤维近天然功能性和与QMRI相关性的临时型功能性能和相关性

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Graphical abstract Display Omitted Abstract Advances in cartilage tissue engineering have led to constructs with mechanical integrity and biochemical composition increasingly resembling that of native tissues. In particular, collagen cross-linking with lysyl oxidase has been used to significantly enhance the mechanical properties of engineered neotissues. In this study, development of collagen cross-links over time, and correlations with tensile properties, were examined in self-assembling neotissues. Additionally, quantitative MRI metrics were examined in relation to construct mechanical properties as well as pyridinoline cross-link content and other engineered tissue components. Scaffold-free meniscus fibrocartilage was cultured in the presence of exogenous lysyl oxidase, and assessed at multiple time points over 8weeks starting from the first week of culture. Engineered constructs demonstrated a 9.9-fold increase in pyridinoline content, reaching 77% of native tissue values, after 8weeks of culture. Additionally, engineered tissues reached 66% of the Young’s modulus in the radial direction of native tissues. Further, collagen cross-links were found to correlate with tensile properties, contributing 67% of the tensile strength of engineered neocartilages. Finally, examination of quantitative MRI metrics revealed several correlations with mechanical and biochemical properties of engineered constructs. This study displays the importance of culture duration for collagen cross-link formation, and demonstrates the potential of quantitative MRI in investigating properties of engineered cartilages. Statement of Significance This is the first study to demonstrate near-native cross-link content in an engineered tissue, and the first study to quantify pyridinoline cross-link development over time in a self-assembling tissue. Additionally, this work shows the relative contributions of collagen and pyridinoline to the tensile properties of collagenous tissue for the first time. Furthermore, this is the first investigation to identify a relationship between qMRI metrics and the pyridinoline cross-link content of an engineered collagenous tissue.
机译:图形摘要显示屏省略了软骨组织工程的摘要摘要导致机械完整性和生化组合物的构建越来越多地类似于天然组织。特别地,与溶酶氧化酶交联的胶原蛋白已被用于显着增强工程学新生种的机械性能。在本研究中,在自组装新生儿中检查随时间随时间的交叉链路的开发和与拉伸性质的相关性。另外,研究了定量MRI度量,以构建机械性能以及吡啶啉胆碱交联含量和其他工程化组织成分。在外源溶酶氧化酶存在下培养了无支腿弯月面纤维纤维,并且在培养的第一周开始,在8周的多个时间点评估。工程构建体展示了吡啶醇含量的9.9倍,达到77%的天然组织值,在8周后培养。另外,工程组织在本地组织的径向方向上达到杨氏模量的66%。此外,发现胶原蛋白的交联与拉伸性能相关,有助于改造新核的拉伸强度的67%。最后,检查定量MRI度量标准揭示了与工程构建体的机械和生化特性的几个相关性。本研究显示胶原交联形成的培养持续时间的重要性,并证明了在调查工程软骨的性质方面的定量MRI的潜力。重要性陈述这是第一研究在工程组织中展示近乎天然的交联含量,以及第一次研究以在自组装组织中量化吡啶啉胆碱交联显影的研究。另外,这项工作表明胶原蛋白和吡啶啉的相对贡献首次表明了胶原蛋白与胶原组织的拉伸性质。此外,这是鉴定QMRI度量与工程胶原组织的吡啶碱基交联含量之间的关系的第一次研究。

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