首页> 美国卫生研究院文献>Frontiers in Bioengineering and Biotechnology >The Importance of Controlled Mismatch of Biomechanical Compliances of Implantable Scaffolds and Native Tissue for Articular Cartilage Regeneration
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The Importance of Controlled Mismatch of Biomechanical Compliances of Implantable Scaffolds and Native Tissue for Articular Cartilage Regeneration

机译:关节软骨再生的可植入支架和天然组织的生物力学顺应性控制失配的重要性。

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摘要

Scaffolds for articular cartilage repair have to be optimally biodegradable with simultaneous promotion of hyaline cartilage formation under rather complex biomechanical and physiological conditions. It has been generally accepted that scaffold structure and composition would be the best when it mimics the structure of native cartilage. However, a reparative construct mimicking the mature native tissue in a healing tissue site presents a biological mismatch of reparative stimuli. In this work, we studied a new recombinant human type III collagen-polylactide (rhCol-PLA) scaffolds. The rhCol-PLA scaffolds were assessed for their relative performance in simulated synovial fluids of 1 and 4 mg/mL sodium hyaluronate with application of model-free analysis with Biomaterials Enhanced Simulation Test (BEST). Pure PLA scaffold was used as a control. The BEST results were compared to the results of a prior in vivo study with rhCol-PLA. Collectively the data indicated that a successful articular cartilage repair require lower stiffness of the scaffold compared to surrounding cartilage yet matching the strain compliance both in static and dynamic conditions. This ensures an optimal combination of load transfer and effective oscillatory nutrients supply to the cells. The results encourage further development of intelligent scaffold structures for optimal articular cartilage repair rather than simply trying to imitate the respective original tissue.
机译:在相当复杂的生物力学和生理条件下,用于关节软骨修复的支架必须能够最佳地生物降解,同时促进透明软骨的形成。人们普遍认为,当支架结构模仿天然软骨的结构时,其结构和组成将是最好的。然而,模仿在愈合组织部位中的成熟天然组织的修复构建体表现出修复刺激的生物学失配。在这项工作中,我们研究了一种新型的重组人III型胶原蛋白聚乳酸(rhCol-PLA)支架。使用无模型分析和生物材料增强模拟测试(BEST),对rhCol-PLA支架在1和4 mg / mL透明质酸钠的模拟滑液中的相对性能进行评估。纯PLA支架用作对照。将BEST结果与先前使用rhCol-PLA进行的体内研究结果进行了比较。总体而言,数据表明,与周围的软骨相比,成功的关节软骨修复需要较低的支架刚度,但在静态和动态条件下均应满足应变适应性。这确保了负载转移和向细胞提供有效振荡营养的最佳组合。结果鼓励进一步发展智能支架结构,以实现最佳的关节软骨修复,而不是简单地模仿各自的原始组织。

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