首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Testosterone propionate can promote effects of acellular nerve allograft‐seeded bone marrow mesenchymal stem cells on repairing canine sciatic nerve
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Testosterone propionate can promote effects of acellular nerve allograft‐seeded bone marrow mesenchymal stem cells on repairing canine sciatic nerve

机译:睾酮丙酸酯可以促进细胞神经同种异体移植种子骨髓间充质干细胞对修复犬坐骨神经的影响

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Abstract Peripheral human nerves fail to regenerate across long tube implants (2?cm), and tissue‐engineered nerve grafts represent a promising treatment alternative. The present study aims to investigate the testosterone propionate (TP) repair effect of acellular nerve allograft (ANA) seeded with allogeneic bone marrow mesenchymal stem cells (BMSCs) on 3‐cm canine sciatic nerve defect. ANA cellularized with allogeneic BMSCs was implanted to the defect, and TP was injected into the lateral crus of the defected leg. The normal group, the autograft group, the ANA?+?BMSCs group, the ANA group, and the nongrafted group were used as control. Five months postoperatively, dogs in the TP?+?ANA?+?BMSCs group were capable of load bearing, normal walking, and skipping, the autograft group and the ANA?+?BMSCs group demonstrated nearly the same despite a slight limp. The compound muscle action potentials (CMAPs) on the injured side to the uninjured site in the TP?+?ANA?+?BMSCs group were significantly higher than that in the ANA?+?BMSCs group [CMAPs ratio at A: F (3, 20)?=?191.40; 0.02, CMAPs ratio at B: F (3, 20)?=?43.27; 0.01]. Masson trichrome staining revealed that in the TP?+?ANA?+?BMSCs group, both the diameter ratio of the myelinated nerve and the thickness ratio of regenerated myelin sheath were significantly larger than that in the other groups [the diameter of myelinated nerve fibers: F (3, 56)?=?13.45; P ??.01, the thickness ratio of regenerated myelin sheath: F (3, 56)?=?51.25; P ??.01]. In conclusion, TP could significantly increase the repairing effects of the ANA?+?BMSCs group, and their combination was able to repair 3‐cm canine sciatic nerve defect. It therefore represents a promising therapeutic approach.
机译:摘要外周人体未能在长管植入物(& 2?cm)上进行再生,而组织工程神经移植物代表有前途的处理替代方案。本研究旨在探讨用同种异体骨髓间充质干细胞(BMSC)播种的睾酮丙酸酯(TP)修复效果在3厘米犬坐骨神经缺陷上。将与同种异体BMSC的ANA植入缺陷,将TP注入偏向的腿的侧面枯萎体中。正常组,自体移植组,ANA?+?BMSCS组,ANA组和非移植组被用作对照。术后五个月,TP的狗?+?ana?+?BMSCS组能够承载,正常行走和跳跃,自体移植组和ANA?+?BMSCS组尽管跛行略微呈现几乎相同。在TPα+α+的受伤部位上的复合肌动作电位(CMAP)对未加注位点的损伤部位(ANA≤α)显着高于ANAα+ + + + + + +α的α+?BMSCS组[A:F的CMAP比率(3 ,20)?=?191.40; 0.02,B:F(3,20)的Cmaps比率?=?43.27; 0.01] Masson Trichrome染色显示,在TP?+ααα+?BMSCS组中,肌肉髓神经的直径比和再生髓鞘的厚度比显着大于其他组的[骨髓神经纤维直径:F(3,56)?=?13.45; p?&lt ;?。01,再生髓鞘的厚度比:f(3,56)?=?51.25; p?&lt ;?。01]。总之,TP可以显着增加ANA + + BMSCs组的修复效果,它们的组合能够修复3厘米的犬坐骨神经缺陷。因此,它代表着一种有希望的治疗方法。

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