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The Effects of Crosslinking on the Rheology and Cellular Behavior of Polymer-Based 3D-Multilayered Scaffolds for Restoring Articular Cartilage

机译:交联对聚合物基3D多层支架恢复关节软骨流变和细胞行为的影响

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摘要

Polymer-based tri-layered (bone, intermediate and top layers) scaffolds used for the restoration of articular cartilage were prepared and characterized in this study to emulate the concentration gradient of cartilage. The scaffolds were physically or chemically crosslinked. In order to obtain adequate scaffolds for the intended application, the impact of the type of calcium phosphate used in the bone layer, the polymer used in the intermediate layer and the interlayer crosslinking process were analyzed. The correlation among SEM micrographs, physical-chemical characterization, swelling behavior, rheological measurements and cell studies were examined. Storage moduli at 1 Hz were 0.3–1.7 kPa for physically crosslinked scaffolds, and 4–5 kPa (EDC/NHS system) and 15–20 kPa (glutaraldehyde) for chemically crosslinked scaffolds. Intrinsic viscoelasticity and poroelasticity were considered in discussing the physical mechanism dominating in different time/frequency scales. Cell evaluation showed that all samples are available as alternatives to repair and/or substitute cartilage in articular osteoarthritis.
机译:制备用于恢复关节软骨的聚合物基三层(骨,中间层和顶层)支架,并在该研究中表征,以模拟软骨浓度梯度。支架物理或化学交联。为了获得预期应用的足够支架,分析了骨层中使用的磷酸钙类型的影响,中间层中使用的聚合物和中间层交联过程。研究了SEM显微照片,物理化学表征,肿胀行为,流变测量和细胞研究的相关性。对于物理交联的支架,1Hz的储存模量为0.3-1.7kPa,4-5kPa(EDC / NHS系统)和15-20kPa(戊二醛),用于化学交联支架。考虑了在讨论不同时间/频率尺度的占据主导地位的物理机制时,考虑了固有粘弹性和孔弹性。细胞评估表明,所有样品都可以作​​为修复和/或替代关节骨关节炎的替代品的替代品。

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