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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Engineering zonal cartilaginous tissue by modulating oxygen levels and mechanical cues through the depth of infrapatellar fat pad stem cell laden hydrogels
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Engineering zonal cartilaginous tissue by modulating oxygen levels and mechanical cues through the depth of infrapatellar fat pad stem cell laden hydrogels

机译:通过促进氧化素脂肪垫干细胞升水胶囊的深度调节氧水平和机械提示来工程间带状组织

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摘要

Engineering tissues with a structure and spatial composition mimicking those of native articular cartilage (AC) remains a challenge. This study examined if infrapatellar fat pad-derived stem cells (FPSCs) can be used to engineer cartilage grafts with a bulk composition and a spatial distribution of matrix similar to the native tissue. In an attempt to mimic the oxygen gradients and mechanical environment within AC, FPSC-laden hydrogels (either 2 mm or 4 mm in height) were confined to half of their thickness and/or subjected to dynamic compression (DC). Confining FPSC-laden hydrogels was predicted to accentuate the gradient in oxygen tension through the depth of the constructs (higher in the top and lower in the bottom), leading to enhanced glycosaminoglycan (GAG) and collagen synthesis in 2 mm high tissues. When subjected to DC alone, both GAG and collagen accumulation increased within 2 mm high unconfined constructs. Furthermore, the dynamic modulus of constructs increased from 0.96 MPa to 1.45 MPa following the application of DC. There was no synergistic benefit of coupling confinement and DC on overall levels of matrix accumulation; however in all constructs, irrespective of their height, the combination of these boundary conditions led to the development of engineered tissues that spatially best resembled native AC. The superficial region of these constructs mimicked that of native tissue, staining weakly for GAG, strongly for type II collagen, and in 4 mm high tissues more intensely for proteoglycan 4 (lubricin). This study demonstrated that FPSCs respond to joint-like environmental conditions by producing cartilage tissues mimicking native AC. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:具有模仿本机关节软骨(AC)的结构和空间组合物的工程组织仍然是一个挑战。该研究检查了替代侵入素脂肪垫衍生的干细胞(FPSC)可以用来用块状组合物和类似于天然组织的基质的空间分布来工程工程覆盖物。在模拟AC中的氧气梯度和机械环境中,将FPSC-Laden水凝胶(高度为2mm或4mm)被限制在其厚度的一半和/或进行动态压缩(DC)。预计将通过构建体的深度(底部的顶部和下部更高)的深度突出氧气张力梯度,导致2mM高组织中增强的糖胺聚糖(GAG)和胶原合成的血管张力的梯度通过氧气张力(较高和下部)。当单独进行DC时,GAG和胶原蛋白累积在2mm高的非整理结构中增加。此外,在应用DC后,构建体的动态模量从0.96MPa增加到1.45MPa。耦合限制和直流对基质积累的总水平没有协同效益;然而,在所有构造中,无论它们的高度如何,这些边界条件的结合导致了在空间上最佳类似的天然AC的工程组织的发展。这些构建体的浅地区域模仿了天然组织,弱堵塞的牙龈染色,对于II型胶原蛋白,并且在4mm高组织中对于蛋白多糖4(润滑油)。本研究表明,FPSCS通过制造模拟天然AC的软骨组织来响应与相似的环境条件。版权所有(c)2016 John Wiley&Sons,Ltd。

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