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首页> 外文期刊>Human Molecular Genetics >Restoration of SMN in Schwann cells reverses myelination defects and improves neuromuscular function in spinal muscular atrophy
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Restoration of SMN in Schwann cells reverses myelination defects and improves neuromuscular function in spinal muscular atrophy

机译:雪旺细胞中SMN的恢复可逆转髓鞘缺损并改善脊髓性肌萎缩症的神经肌肉功能

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Spinal muscular atrophy (SMA) is a neuromuscular disease caused by low levels of SMN protein, primarily affecting lower motor neurons. Recent evidence from SMA and related conditions suggests that glial cells can influence disease severity. Here, we investigated the role of glial cells in the peripheral nervous system by creating SMA mice selectively overexpressing SMN in myelinating Schwann cells (Smn(-/-);SMN2(tg/0);SMN1(SC)). Restoration of SMN protein levels restricted solely to Schwann cells reversed myelination defects, significantly improved neuromuscular function and ameliorated neuromuscular junction pathology in SMA mice. However, restoration of SMN in Schwann cells had no impact on motor neuron soma loss from the spinal cord or ongoing systemic and peripheral pathology. This study provides evidence for a defined, intrinsic contribution of glial cells to SMA disease pathogenesis and suggests that therapies designed to include Schwann cells in their target tissues are likely to be required in order to rescue myelination defects and associated disease symptoms.
机译:脊髓性肌萎缩症(SMA)是一种由低水平的SMN蛋白引起的神经肌肉疾病,主要影响下运动神经元。 SMA和相关疾病的最新证据表明,神经胶质细胞可以影响疾病的严重程度。在这里,我们通过创建有选择性地在髓鞘雪旺细胞(Smn(-/-); SMN2(tg / 0); SMN1(SC))中过度表达SMN的SMA小鼠,研究了神经胶质细胞在周围神经系统中的作用。仅限于雪旺氏细胞的SMN蛋白水平的恢复可逆转SMA小鼠的髓鞘形成缺陷,显着改善神经肌肉功能并改善神经肌肉连接病理。然而,雪旺细胞中SMN的恢复对脊髓运动神经元的躯体丢失或正在进行的全身和周围病理没有影响。这项研究为神经胶质细胞对SMA疾病发病机制的明确的内在贡献提供了证据,并表明,为了挽救髓鞘缺损和相关疾病症状,可能需要采用旨在在其目标组织中包括雪旺氏细胞的疗法。

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