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Tissue Engineering by Molecular Disassembly and Reassembly: Biomimetic Retention of Mechanically Functional Aggrecan in Hydrogel

机译:通过分子分解和重组的组织工程:仿生保留在水凝胶中的机械功能Aggrecan。

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摘要

In vitro assembly of key functional extracellular matrix constituents for tissue-engineered constructs may provide a tool to modulate the retention of proteoglycan (PG) aggregates, which are crucial to compressive biomechanical properties of connective tissues. This study tested the hypotheses that (1) biomimetic molecular reassembly of PG aggregates (native aggrecan [AGC] with hyaluronan [HA] ± link protein [LP]) affects AGC retention kinetics in hydrogel constructs, (2) the compressive properties of such hydrogel constructs are related to the content of retained AGC, and (3) the reassembly method is compatible with chondrocytes. Addition of HA to AGC in hydrogel constructs increased AGC retention in a dose-dependent manner, and the addition of LP to AGC + HA further enhanced AGC retention. The level of AGC retention, in turn, was associated with increased equilibrium compressive stress of the constructs. Chondrocytes could be included in the process, and maintained expression of the chondrogenic phenotype, secreting type II collagen but little type I collagen. Thus, by altering the assembly of PG aggregates with HA ± LP, which affects AGC retention, it may be possible to achieve the targeted levels of PG components to modulate the mechanical properties of the engineered construct for cartilage as well as other tissues containing PG and PG aggregates.
机译:组织工程构建体的关键功能细胞外基质成分的体外组装可提供调节蛋白聚糖(PG)聚集体保留的工具,这对结缔组织的压缩生物力学特性至关重要。这项研究检验了以下假设:(1)PG聚集体(天然聚集蛋白聚糖[AGC]与乙酰透明质酸[HA]±link蛋白[LP])的仿生分子重组会影响水凝胶结构中AGC的保留动力学,(2)这种水凝胶的压缩特性构建体与保留的AGC的含量有关,(3)重组方法与软骨细胞相容。将HA加到水凝胶构建物中的AGC上以剂量依赖的方式增加了AGC的保留,并且将LP加到AGC ++ HA中进一步增加了AGC的保留。反过来,AGC保留的水平与结构的平衡压应力增加有关。软骨细胞可以包括在该过程中,并保持软骨形成表型的表达,分泌II型胶原,但分泌很少的I型胶原。因此,通过用HA + / -LP改变PG聚集体的组装,这会影响AGC的保留,有可能达到PG成分的目标水平,从而调节工程化构建体的软骨以及其他含有PG和PG的组织的机械性能。 PG聚集体。

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