首页> 美国卫生研究院文献>Tissue Engineering. Part A >Intervertebral Disc Tissue Engineering Using a Novel Hyaluronic Acid–Nanofibrous Scaffold (HANFS) Amalgam
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Intervertebral Disc Tissue Engineering Using a Novel Hyaluronic Acid–Nanofibrous Scaffold (HANFS) Amalgam

机译:使用新型透明质酸-纳米纤维支架(HANFS)汞合金的椎间盘组织工程

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摘要

Degeneration of the intervertebral disc (IVD) represents a significant musculoskeletal disease burden. Although spinal fusion has some efficacy in pain management, spine biomechanics is ultimately compromised. In addition, there is inherent limitation of hardware-based IVD replacement prostheses, which underscores the importance of biological approaches to disc repair. In this study, we have seeded multipotent, adult human mesenchymal stem cells (MSCs) into a novel biomaterial amalgam to develop a biphasic construct that consisted of electrospun, biodegradable nanofibrous scaffold (NFS) enveloping a hyaluronic acid (HA) hydrogel center. The seeded MSCs were induced to undergo chondrogenesis in vitro in the presence of transforming growth factor-β for up to 28 days. The cartilaginous hyaluronic acid–nanofibrous scaffold (HANFS) construct architecturally resembled a native IVD, with an outer annulus fibrosus–like region and inner nucleus pulposus–like region. Histological and biochemical analyses, immunohistochemistry, and gene expression profiling revealed the time-dependent development of chondrocytic phenotype of the seeded cells. The cells also maintain the microarchitecture of a native IVD. Taken together, these findings suggest the prototypic potential of MSC-seeded HANFS constructs for the tissue engineering of biological replacements of degenerated IVD.
机译:椎间盘退变(IVD)代表着严重的肌肉骨骼疾病负担。尽管脊柱融合术在疼痛控制方面具有一定功效,但脊柱生物力学最终受到损害。此外,基于硬件的IVD置换假体存在固有的局限性,这突出了生物学方法对椎间盘修复的重要性。在这项研究中,我们已经将多能,成年人间充质干细胞(MSC)植入新型生物材料汞齐中,以开发一种双相构建体,该结构由包裹透明质酸(HA)水凝胶中心的电纺,可生物降解的纳米纤维支架(NFS)组成。在存在转化生长因子-β的情况下,诱导种子的MSC在体外进行软骨形成长达28天。软骨透明质酸-纳米纤维支架(HANFS)的结构在结构上类似于天然IVD,具有外部纤维环样区域和内部髓核样区域。组织学和生化分析,免疫组织化学和基因表达谱揭示了种子细胞软骨细胞表型的时间依赖性发展。这些细胞还维持天然IVD的微结构。综上所述,这些发现表明,由MSC播种的HANFS构建体的原型潜力可用于变性IVD的生物替代物的组织工程设计。

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