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Electroacupuncture Facilitates the Integration of Neural Stem Cell-Derived Neural Network with Transected Rat Spinal Cord

机译:电针促进神经干细胞源性神经网络与横断大鼠脊髓的整合

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Highlights ? EA promotes the survival and synapse formation of NSC-derived neurons in grafted NN ? EA strengthens synaptic integration of grafted NN with the spinal cord neural circuit ? EA enhances NT-3 level and activates NT-3/TRKC/AKT pathway in the injury/graft site ? The combination therapy increases axonal regeneration and spinal functional recovery Summary The hostile environment of an injured spinal cord makes it challenging to achieve higher viability in a grafted tissue-engineered neural network used to reconstruct the spinal cord circuit. Here, we investigate whether cell survival and synaptic transmission within an NT-3 and TRKC gene-overexpressing neural stem cell-derived neural network scaffold (NN) transplanted into transected spinal cord could be promoted by electroacupuncture (EA) through improving the microenvironment. Our results showed that EA facilitated the cell survival, neuronal differentiation, and synapse formation of a transplanted NN. Pseudorabies virus tracing demonstrated that EA strengthened synaptic integration of the transplanted NN with the host neural circuit. The combination therapy also promoted axonal regeneration, spinal conductivity, and functional recovery. The findings highlight EA as a potential and safe supplementary therapeutic strategy to reinforce the survival and synaptogenesis of a transplanted NN as a neuronal relay to bridge the two severed ends of an injured spinal cord.
机译:强调 ? EA促进嫁接的NN中NSC衍生神经元的存活和突触形成。 EA增强了移植神经与脊髓神经回路的突触整合? EA能增加损伤/移植部位的NT-3水平并激活NT-3 / TRKC / AKT途径?组合疗法可增强轴突再生和脊髓功能恢复摘要受伤的脊髓的恶劣环境使其在用于重建脊髓回路的嫁接组织工程神经网络中实现更高的生存能力具有挑战性。在这里,我们研究电针(EA)是否可以通过改善微环境来促进NT-3和TRKC基因过表达的神经干细胞衍生的神经网络支架(NN)移植到横断脊髓中的细胞存活和突触传递。我们的结果表明,EA促进了移植的NN的细胞存活,神经元分化和突触形成。伪狂犬病病毒追踪表明,EA增强了移植的NN与宿主神经回路的突触整合。联合疗法还促进了轴突再生,脊髓电导率和功能恢复。这些发现突显了EA是一种潜在且安全的辅助治疗策略,可以增强移植的NN的存活和突触形成,作为桥接受损脊髓两个断裂端的神经元中继。

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