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Microtissue Engineered Constructs with Living Axons for Targeted Nervous System Reconstruction

机译:具有活体轴突的微组织工程构建体用于靶向神经系统重建。

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摘要

As a common feature of many neurological diseases and injury, the loss of axon pathways can have devastating effects on function. Here, we demonstrate a new strategy to restore damaged axon pathways using transplantable miniature constructs consisting of living neurons and axonal tracts internalized within hydrogel tubes. These hydrogel microconduits were developed through an iterative process to support neuronal survival and directed axon growth. The design included hollow agarose tubes providing a relatively stiff outer casing to direct constrained unidirectional outgrowth of axons through a central soft collagen matrix, with overall dimensions of 250 μm inner diameter ×500 μm outer diameter and extending up to several centimeters. The outer casing was also designed to provide structural support of neuronal/axonal cultures during transplantation of the construct. Using neuron culture conditions optimized for the microconduits, dissociated dorsal root ganglia neurons were seeded in the collagen at one end of the conduits. Over the following week, high-resolution confocal microscopy demonstrated that the neurons survived and the somata remained in a tight cluster at the original seeding site. In addition, robust outgrowth of axons from the neurons was found, with axon fascicles constrained in a longitudinal projection along the internal collagen canal and extending over 5 mm in length. Notably, this general geometry recapitulates the anatomy of axon tracts. As such, these constructs may be useful to repair damaged axon projections by providing a transplantable bridge of living axons. Moreover, the small size of the construct permits follow-on studies of minimally invasive transplantation into potentially sensitive regions of the nervous system.
机译:作为许多神经系统疾病和损伤的共同特征,轴突通路的丧失可能对功能产生毁灭性影响。在这里,我们演示了使用可移植的微型结构恢复受损轴突途径的新策略,该微型结构由活体神经元和水凝胶管内部的轴突束组成。这些水凝胶微导管是通过迭代过程开发的,以支持神经元存活和定向轴突生长。该设计包括空心琼脂糖管,该空心琼脂糖管提供了一个相对较硬的外壳,可将受约束的轴突单向定向通过中心柔软的胶原蛋白基质,其内径为250μm的内径×500μm的外径,并延伸至几厘米。外壳还被设计为在构造物的移植期间提供神经元/轴突培养物的结构支持。使用针对微导管优化的神经元培养条件,将分离的背根神经节神经元播种在导管一端的胶原蛋白中。在接下来的一周中,高分辨率共聚焦显微镜显示了神经元得以幸存,并且在原始的播种部位,躯体仍保持紧密的簇状。此外,发现神经元的轴突生长牢固,轴突束沿内部胶原管的纵向投影受到限制,并延伸超过5毫米。值得注意的是,这种一般的几何形状概括了轴突束的解剖结构。因此,这些构建体可通过提供活轴突的可移植桥来修复受损的轴突突起。此外,构建体的小尺寸允许对微创移植到神经系统潜在敏感区域的后续研究。

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