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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Rapid induction of functional and morphological continuity between severed ends of mammalian or earthworm myelinated axons.
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Rapid induction of functional and morphological continuity between severed ends of mammalian or earthworm myelinated axons.

机译:在哺乳动物或earth髓鞘轴突的切断末端之间快速诱导功能和形态学连续性。

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The inability to rapidly restore the loss of function that results from severance (cutting or crushing) of PNS and CNS axons is a severe clinical problem. As a novel strategy to help alleviate this problem, we have developed in vitro procedures using Ca2+-free solutions of polyethylene glycol (PEG solutions), which within minutes induce functional and morphological continuity (PEG-induced fusion) between the cut or crushed ends of myelinated sciatic or spinal axons in rats. Using a PEG-based hydrogel that binds to connective tissue to provide mechanical strength at the lesion site and is nontoxic to nerve tissues in earthworms and mammals, we have also developed in vivo procedures that permanently maintain earthworm myelinated medial giant axons whose functional and morphological integrity has been restored by PEG-induced fusion after axonal severance. In all these in vitro or in vivo procedures, the success of PEG-induced fusion of sciatic or spinal axons and myelinated medial giant axons is measured by the restored conduction of action potentials through the lesion site, the presence of intact axonal profiles in electron micrographs taken at the lesion site, and/or the intra-axonal diffusion of fluorescent dyes across the lesion site. These and other data suggest that the application of polymeric fusiogens (such as our PEG solutions), possibly combined with a tissue adherent (such as our PEG hydrogels), could lead to in vivo treatments that rapidly and permanently repair cut or crushed axons in the PNS and CNS of adult mammals, including humans.
机译:由于PNS和CNS轴突被切断(切断或压碎)而无法快速恢复功能丧失是一个严重的临床问题。作为缓解此问题的新策略,我们已经开发了使用不含Ca2 +的聚乙二醇溶液(PEG溶液)进行体外操作的方法,该溶液可在数分钟内诱导切割末端或压碎末端之间的功能和形态连续性(PEG诱导的融合)大鼠有髓的坐骨或脊髓轴突。使用结合到结缔组织上的聚乙二醇基水凝胶在病变部位提供机械强度并且对earth和哺乳动物的神经组织无毒,我们还开发了体内程序,可以永久保持maintain髓质内侧巨轴突的功能和形态完整性轴突切断后通过PEG诱导的融合已恢复原状。在所有这些体外或体内方法中,PEG诱导的坐骨神经或脊髓轴突与髓鞘内侧巨轴突融合的成功是通过病变部位动作电位的恢复,电子显微图中完整的轴突轮廓的存在来衡量的在病变部位摄取和/或荧光染料在轴突内扩散穿过病变部位。这些和其他数据表明,聚合物融合剂(例如我们的PEG溶液)的应用,可能与组织粘附物(例如我们的PEG水凝胶)结合使用,可能会导致体内治疗迅速,永久地修复切割或压碎的轴突。成年哺乳动物,包括人类的PNS和CNS。

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