首页> 外文期刊>Journal of neurotrauma >Repairing large radial nerve defects by acellular nerve allografts seeded with autologous bone marrow stromal cells in a monkey model.
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Repairing large radial nerve defects by acellular nerve allografts seeded with autologous bone marrow stromal cells in a monkey model.

机译:通过在猴模型中植入自体骨髓基质细胞的脱细胞神经同种异体移植修复较大的large神经缺损。

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摘要

In this study, we aimed to evaluate the potential of tissue-engineered nerve grafts created from acellular allogenic nerve tissues combined with autologous bone marrow stromal cells (BMSCs) for repairing large peripheral nerve lesions. In a rhesus monkey model, a 2.5-cm-long gap was created in the radial nerve, followed by implantation of either autografts or acellular allografts seeded with autologous BMSCs, Schwann cells (SCs), or no cells. Five months after surgery nerve regeneration was assessed functionally, electrophysiologically, and histomorphometrically. Compared to non-cell-laden allografts, BMSC-laden allografts remarkably facilitated the recovery of the grasping functions of the animals. This functional improvement was coupled with increased nerve conduction velocities and peak amplitudes of compound motor action potentials, and greater axon growth, as well as higher target muscle weight. Moreover, the intensities of nerve regeneration in the BMSC-laden group were comparable to those achieved with SC-laden allografts and autografts. Our data highlight the potential of BMSC-seed allografts for the repair of long peripheral nerve lesions, and reveal comparable regeneration intensities achieved by BMSC-, and SC-laden allografts, as well as autografts. Given their wide availability, BMSCs may represent a promising cell source for tissue-engineered nerve grafts.
机译:在这项研究中,我们旨在评估由脱细胞异体神经组织与自体骨髓基质细胞(BMSC)结合产生的组织工程神经移植物修复大周围神经病变的潜力。在恒河猴模型中,在radial神经中形成一个2.5厘米长的间隙,然后植入自体移植或无细胞同种异体移植物,植入自体BMSC,雪旺氏细胞(SCs)或不植入任何细胞。手术五个月后,从功能,电生理和组织形态学方面评估了神经再生。与没有细胞的同种异体移植相比,具有BMSC的同种异体移植显着促进了动物抓握功能的恢复。这种功能上的改善与神经传导速度和复合运动动作电位峰值幅度的增加,轴突的生长更大以及目标肌肉的重量增加有关。此外,BMSC负荷组的神经再生强度与SC负荷同种异体移植和自体移植所达到的强度相当。我们的数据突出了BMSC种子同种异体移植物修复长周围神经病变的潜力,并揭示了BMSC和SC载有同种异体移植物以及自体异种移植物所具有的相当的再生强度。鉴于其广泛的可用性,BMSCs可能代表组织工程化的神经移植的有希望的细胞来源。

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