首页> 外文期刊>Glia >Astrocyte progenitor transplantation promotes regeneration of bulbospinal respiratory axons, recovery of diaphragm function, and a reduced macrophage response following cervical spinal cord injury
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Astrocyte progenitor transplantation promotes regeneration of bulbospinal respiratory axons, recovery of diaphragm function, and a reduced macrophage response following cervical spinal cord injury

机译:星形胶质细胞祖细胞移植促进宫颈脊髓损伤后膈肌呼应的再生,膜脊髓损伤减少

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摘要

Stem/progenitor cell transplantation delivery of astrocytes is a potentially powerful strategy for spinal cord injury (SCI). Axon extension into SCI lesions that occur spontaneously or in response to experimental manipulations is often observed along endogenous astrocyte "bridges," suggesting that augmenting this response via astrocyte lineage transplantation can enhance axon regrowth. Given the importance of respiratory dysfunction post-SCI, we transplanted glial-restricted precursors (GRPs)-a class of lineage-restricted astrocyte progenitors-into the C2 hemisection model and evaluated effects on diaphragm function and the growth response of descending rostral ventral respiratory group (rVRG) axons that innervate phrenic motor neurons (PhMNs). GRPs survived long term and efficiently differentiated into astrocytes in injured spinal cord. GRPs promoted significant recovery of diaphragm electromyography amplitudes and stimulated robust regeneration of injured rVRG axons. Although rVRG fibers extended across the lesion, no regrowing axons re-entered caudal spinal cord to reinnervate PhMNs, suggesting that this regeneration response-although impressive-was not responsible for recovery. Within ipsilateral C3-5 ventral horn (PhMN location), GRPs induced substantial sprouting of spared fibers originating in contralateral rVRG and 5-HT axons that are important for regulating PhMN excitability; this sprouting was likely involved in functional effects of GRPs. Finally, GRPs reduced the macrophage response (which plays a key role in inducing axon retraction and limiting regrowth) both within the hemisection and at intact caudal spinal cord surrounding PhMNs. These findings demonstrate that astrocyte progenitor transplantation promotes significant plasticity of rVRG-PhMN circuitry and restoration of diaphragm function and suggest that these effects may be in part through immunomodulation.
机译:星形胶质细胞的茎/祖细胞移植递送是脊髓损伤(SCI)的潜在强大的策略。轴突延伸成自发或响应实验操纵的SCI病变通常沿着内源性星形胶质细胞“桥梁”,表明通过星形胶质细胞谱系移植增强这种反应可以增强轴突再生。鉴于SCI后呼吸功能障碍的重要性,我们将脊髓型预测的前体(GRPS)-A类血管胶质细胞祖细胞祖细胞移植到C2的半联模型中,并评估了膜片功能的影响和下降鼻腔腹部呼吸组的生长反应(RVRG)轴突,称为膈电机神经元(PHMN)。 GROP存活长期,有效地分化为受伤脊髓的星形胶质细胞。 GRP促进了膜片电谱的显着恢复,刺激了RVRG轴突的刺激鲁棒再生。虽然RVRG纤维在病变中延伸,但没有重新开始的轴突重新进入尾部脊髓以重新培养,这表明这种再生反应 - 虽然令人印象深刻 - 不负责任。在同侧C3-5腹侧喇叭(PHMN位置)内,GRPS诱导源自对侧RVRG和5-HT轴突的腐烂纤维的大量萌芽,这对于调节PHMN兴奋性很重要;这种发芽可能参与GRP的功能效果。最后,GRP减少了巨噬细胞反应(在诱导轴颈缩回和限制再生中起关键作用)在周围和完整的尾部脊髓周围的PHMNS内。这些发现表明,星形胶质细胞祖介质移植促进了RVRG-PHMN电路的显着可塑性,并恢复隔膜功能,并表明这些效应可以部分通过免疫调节。

著录项

  • 来源
    《Glia》 |2019年第3期|共15页
  • 作者单位

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

    Temple Univ Sch Med Shriners Hosp Dept Neurosci Pediat Res Ctr Philadelphia PA USA;

    Arcadia Univ Dept Biol Glenside PA USA;

    Thomas Jefferson Univ Sidney Kimmel Med Coll Vickie &

    Jack Farber Inst Neurosci Dept Neurosci 900 Walnut St JHN 469 Philadelphia PA 19107 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

    5-HT; breathing; GRP; phrenic motor neurons; regrowth; SCI; sprouting; stem cell;

    机译:5-HT;呼吸;GRP;PRENIC MOTOR神经元;再生;SCI;发芽;干细胞;
  • 入库时间 2022-08-20 03:19:41

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