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Enhanced Nutrient Transport Improves the Depth-Dependent Properties of Tri-Layered Engineered Cartilage Constructs with Zonal Co-Culture of Chondrocytes and MSCs

机译:增强的营养运输提高了软骨细胞和MSCs带状共培养三层工程软骨构建体的深度依赖性。

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摘要

Biomimetic design in cartilage tissue engineering is a challenge given the complexity of the native tissue. While numerous studies have generated constructs with near-native bulk properties, recapitulating the depth-dependent features of native tissue remains a challenge. Furthermore, limitations in nutrient transport and matrix accumulation in engineered constructs hinders maturation within the central core of large constructs. To overcome these limitations, we fabricated tri-layered constructs that recapitulate the depth-dependent cellular organization and functional properties of native tissue using zonally derived chondrocytes co-cultured with MSCs. We also introduced porous hollow fibers (HFs) and HFs/cotton threads to enhance nutrient transport. Our results showed that tri-layered constructs with depth-dependent organization and properties could be fabricated. The addition of HFs or HFs/threads improved matrix accumulation in the central core region. With HF/threads, the local modulus in the deep region of tri-layered constructs nearly matched that of native tissue, though the properties in the central regions remained lower. These constructs reproduced the zonal organization and depth-dependent properties of native tissue, and demonstrate that a layer-by-layer fabrication scheme holds promise for the biomimetic repair of focal cartilage defects.
机译:考虑到天然组织的复杂性,软骨组织工程中的仿生设计是一个挑战。尽管许多研究已经产生了具有近乎天然的本体性质的构建体,但是概括天然组织的深度依赖性特征仍然是一个挑战。此外,工程构建体中养分转运和基质积累的局限性阻碍了大型构建体中央核心的成熟。为了克服这些局限性,我们使用与MSCs共培养的区域性软骨细胞,构造了三层结构,可概括深度依赖的细胞组织和天然组织的功能特性。我们还引入了多孔空心纤维(HFs)和HFs /棉线,以增强营养物质的运输。我们的结果表明,可以制造具有深度依赖的组织和特性的三层结构。 HF或HF /线程的添加改善了中央核心区域中的矩阵累积。使用HF /螺纹,三层结构深部区域的局部模量与天然组织的局部模量几乎匹配,尽管中部区域的特性仍然较低。这些构造物再现了天然组织的带状组织和深度依赖性,并证明了逐层制造方案有望对关节软骨缺损进行仿生修复。

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