首页> 美国卫生研究院文献>Journal of Neurotrauma >Dissociated Predegenerated Peripheral Nerve Transplants for Spinal Cord Injury Repair: A Comprehensive Assessment of Their Effects on Regeneration and Functional Recovery Compared to Schwann Cell Transplants
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Dissociated Predegenerated Peripheral Nerve Transplants for Spinal Cord Injury Repair: A Comprehensive Assessment of Their Effects on Regeneration and Functional Recovery Compared to Schwann Cell Transplants

机译:解离的预变性周围神经移植修复脊髓损伤:与施万细胞移植相比其对再生和功能恢复的影响的综合评估

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摘要

Several recent studies suggest that predegenerated nerves (PDNs) or dissociated PDNs (dPDNs) can improve behavioral and histological outcomes following transplantation into the injured rat spinal cord. In the current study we tested the efficacy of dPDN transplantation by grafting cells isolated from the sciatic nerve 7 days after crush. We did not replicate one study, but rather assessed what appeared, based on five published reports, to be a reported robust effect of dPDN grafts on corticospinal tract (CST) regeneration and locomotor recovery. Using a standardized rodent spinal cord injury model (200 kD IH contusion) and transplantation procedure (injection of GFP+ cells 7 days post-SCI), we demonstrate that dPDN grafts survive within the injured spinal cord and promote the ingrowth of axons to a similar extent as purified Schwann cell (SC) grafts. We also demonstrate for the first time that while both dPDN and SC grafts promote the ingrowth of CGRP axons, neither graft results in mechanical or thermal hyperalgesia. Unlike previous studies, dPDN grafts did not promote long-distance axonal growth of CST axons, brainstem spinal axons, or ascending dorsal column sensory axons. Moreover, using a battery of locomotor tests (Basso Beattie Bresnahan [BBB] score, BBB subscore, inked footprint, Catwalk, and ladderwalk), we failed to detect any beneficial effects of dPDN transplantation on the recovery of locomotor function after SCI. We conclude that dPDN transplants are not sufficient to promote CST regeneration or locomotor recovery after SCI.
机译:最近的一些研究表明,预变性神经(PDNs)或解离的PDNs(dPDNs)可以改善移植到受损大鼠脊髓后的行为和组织学结果。在当前的研究中,我们通过压榨7天后从坐骨神经分离的细胞移植来测试dPDN移植的功效。我们没有重复一项研究,而是根据五份已发表的报告评估了出现的结果,即报道的dPDN移植物对皮质脊髓束(CST)再生和运动恢复的强大作用。使用标准的啮齿动物脊髓损伤模型(200 kD IH挫伤)和移植程序(在SCI后7天注射GFP + 细胞),我们证明dPDN移植物在受损脊髓内存活并促进轴突向内生长的程度与纯化的施旺细胞(SC)移植物相似。我们还首次证明,虽然dPDN和SC移植均可促进CGRP轴突的向内生长,但两个移植均不会导致机械或热痛觉过敏。与以前的研究不同,dPDN移植物不能促进CST轴突,脑干脊柱轴突或背柱感觉轴突的长距离轴突生长。此外,使用一系列运动测试(Basso Beattie Bresnahan [BBB]分数,BBB分数,着墨足迹,走秀和阶梯走道),我们未能检测到dPDN移植对SCI后运动功能恢复的任何有益影响。我们得出的结论是,dPDN移植不足以促进SCI后CST再生或运动恢复。

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