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A 3D-Bioprinted dual growth factor-releasing intervertebral disc scaffold induces nucleus pulposus and annulus fibrosus reconstruction

机译:释放椎间盘支架的3D-生物制药双重生长因子诱导核浆气和环纤维纤维术重建

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摘要

Regeneration of Intervertebral disc (IVD) is a scientific challenge because of the complex structure and composition of tissue, as well as the difficulty in achieving bionic function. Here, an anatomically correct IVD scaffold composed of biomaterials, cells, and growth factors were fabricated via three-dimensional (3D) bioprinting technology. Connective tissue growth factor (CTGF) and transforming growth factor-β3 (TGF-β3) were loaded onto polydopamine nanoparticles, which were mixed with bone marrow mesenchymal stem cells (BMSCs) for regenerating and simulating the structure and function of the nucleus pulposus and annular fibrosus. experiments confirmed that CTGF and TGF-β3 could be released from the IVD scaffold in a spatially controlled manner, and induced the corresponding BMSCs to differentiate into nucleus pulposus like cells and annulus fibrosus like cells. Next, the fabricated IVD scaffold was implanted into the dorsum subcutaneous of nude mice. The reconstructed IVD exhibited a zone-specific matrix that displayed the corresponding histological and immunological phenotypes: primarily type II collagen and glycosaminoglycan in the core zone, and type I collagen in the surrounding zone. The testing results demonstrated that it exhibited good biomechanical function of the reconstructed IVD. The results presented herein reveal the clinical application potential of the dual growth factors-releasing IVD scaffold fabricated via 3D bioprinting. However, the evaluation in large mammal animal models needs to be further studied.
机译:由于组织的复杂结构和组成以及达到仿生功能的难度,椎间盘(IVD)的再生是一种科学挑战。这里,通过三维(3D)生物监测技术制造由生物材料,细胞和生长因子组成的解剖学校正的IVD支架。将连接组织生长因子(CTGF)和转化的生长因子-β3(TGF-β3)加载到聚二胺纳米颗粒上,与骨髓间充质干细胞(BMSC)混合,用于再生和模拟核脉搏和环形的结构和功能纤维蕈类。实验证实,CTGF和TGF-β3可以以空间控制的方式从IVD支架释放,并诱导相应的BMSC,以区分细胞和环纤维等细胞。接下来,将制造的IVD支架植入裸鼠的背体皮下。重建的IVD显示出特异性基质,其显示相应的组织学和免疫表型:主要是II型胶原蛋白和糖胺聚糖在核心区,以及在周围区域的I型胶原蛋白。测试结果表明,它表现出重建IVD的良好生物力学功能。这里提出的结果揭示了通过3D生物印刷制造的释放IVD支架的双生长因子的临床应用潜力。然而,需要进一步研究大型哺乳动物动物模型的评估。

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