首页> 美国卫生研究院文献>Tissue Engineering. Part A >Zonal Chondrocytes Seeded in a Layered Agarose Hydrogel Create Engineered Cartilage with Depth-Dependent Cellular and Mechanical Inhomogeneity
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Zonal Chondrocytes Seeded in a Layered Agarose Hydrogel Create Engineered Cartilage with Depth-Dependent Cellular and Mechanical Inhomogeneity

机译:带状琼脂糖凝胶中植入的带状软骨细胞创建工程软骨其深度依赖于细胞和机械的不均匀性

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摘要

We hypothesized that zonal populations of chondrocytes seeded into a bilayered scaffold with initially prescribed depth-varying, compressive material properties will lead to a biomimetic cartilage tissue construct with depth-dependent cellular and compressive mechanical inhomogeneity similar to that of the native tissue. Superficial zone chondrocytes (SZCs) and middle/deep zone chondrocytes (MDZCs) were isolated and encapsulated with 2% or 3% agarose to form single-layered constructs of 2% SZC, 3% SZC, 2% MDZC; bilayered constructs of 2% SZC/2% MDZC and 3% SZC/2% MDZC; and 2% mixed chondrocyte controls. For SZCs on day 42, increased glycosaminoglycan (GAG) and collagen was found with increased agarose concentration and when layered with MDZCs. Superficial zone protein increased with agarose concentration in bilayered constructs. For MDZCs, increased GAG content and regulation of cell proliferation was observed when layered with SZCs. Bilayered constructs possessed a depth-dependent compressive modulus qualitatively similar to that of native articular cartilage, whereas controls showed a U-shaped profile with stiffer peripheral edges and softer middle region. This study is the first to create an engineered cartilage tissue with depth-varying cellular as well as mechanical inhomogeneity. Future studies will determine if replicating inhomogeneity is advantageous in clinical applications of tissue engineered cartilage.
机译:我们假设,按最初规定的深度变化的抗压材料特性,播种到双层支架中的软骨细胞的区域性种群将导致仿生软骨组织构建体具有与天然组织相似的深度依赖性细胞和压缩机械不均匀性。分离浅表区软骨细胞(SZC)和中/深区软骨细胞(MDZC),并用2%或3%琼脂糖包封以形成2%SZC,3%SZC,2%MDZC的单层构建体。 2%SZC / 2%MDZC和3%SZC / 2%MDZC的双层结构;和2%的混合软骨细胞对照。对于第42天的SZC,当与MDZC分层时,发现糖胺聚糖(GAG)和胶原蛋白增加,琼脂糖浓度增加。在双层结构中,表面区域蛋白随琼脂糖浓度的增加而增加。对于MDZC,当与SZC分层时,观察到GAG含量增加和细胞增殖调控。双层构造具有与深度有关的压缩模量,其质量在本质上类似于天然关节软骨,而对照显示为U形轮廓,具有较硬的外围边缘和较软的中间区域。这项研究是第一个创建具有深度变化的细胞以及机械不均匀性的工程软骨组织的研究。未来的研究将确定复制非均质性在组织工程软骨的临床应用中是否有利。

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