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首页> 外文期刊>Advanced Science >A Modular Assembly of Spinal Cord–Like Tissue Allows Targeted Tissue Repair in the Transected Spinal Cord
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A Modular Assembly of Spinal Cord–Like Tissue Allows Targeted Tissue Repair in the Transected Spinal Cord

机译:脊髓样组织的模块化组装,可在横断脊髓中进行靶向组织修复

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Tissue engineering–based neural construction holds promise in providing organoids with defined differentiation and therapeutic potentials. Here, a bioengineered transplantable spinal cord–like tissue (SCLT) is assembled in vitro by simulating the white matter and gray matter composition of the spinal cord using neural stem cell–based tissue engineering technique. Whether the organoid would execute targeted repair in injured spinal cord is evaluated. The integrated SCLT, assembled by white matter–like tissue (WMLT) module and gray matter–like tissue (GMLT) module, shares architectural, phenotypic, and functional similarities to the adult rat spinal cord. Organotypic coculturing with the dorsal root ganglion or muscle cells shows that the SCLT embraces spinal cord organogenesis potentials to establish connections with the targets, respectively. Transplantation of the SCLT into the transected spinal cord results in a significant motor function recovery of the paralyzed hind limbs in rats. Additionally, targeted spinal cord tissue repair is achieved by the modular design of SCLT, as evidenced by an increased remyelination in the WMLT area and an enlarged innervation in the GMLT area. More importantly, the pro‐regeneration milieu facilitates the formation of a neuronal relay by the donor neurons, allowing the conduction of descending and ascending neural inputs.
机译:基于组织工程的神经构造有望为类器官提供明确的分化和治疗潜力。在这里,通过使用基于神经干细胞的组织工程技术模拟脊髓的白质和灰质成分,在体外组装了生物工程化的可移植脊髓样组织(SCLT)。评估类器官是否将在受伤的脊髓中进行靶向修复。由白质样组织(WMLT)模块和灰质样组织(GMLT)模块组装而成的集成SCLT与成年大鼠脊髓具有相似的结构,表型和功能相似性。与背根神经节或肌肉细胞的器官型共培养表明,SCLT具有脊髓器官发生潜能,分别与靶标建立联系。将SCLT移植到横断的脊髓中可导致大鼠瘫痪的后肢明显恢复运动功能。另外,通过SCLT的模块化设计可实现靶向的脊髓组织修复,这在WMLT区域中的髓鞘增多和GMLT区域中的神经支配增加得到了证明。更重要的是,促再生环境促进了供体神经元形成神经元中继,允许传导递减的神经输入。

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