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  • Sonic hedgehog and neurotrophin-3 increase oligodendrocyte numbers and myelination after spinal cord injury.

Sonic hedgehog and neurotrophin-3 increase oligodendrocyte numbers and myelination after spinal cord injury.

Integrative biology : quantitative biosciences from nano to macro (2014-05-31)
Aline M Thomas, Stephanie K Seidlits, Ashley G Goodman, Todor V Kukushliev, Donna M Hassani, Brian J Cummings, Aileen J Anderson, Lonnie D Shea
摘要

Spinal cord injury (SCI) results in loss of sensory and motor function below the level of injury and has limited available therapies. Multiple channel bridges have been investigated as a means to create a permissive environment for regeneration, with channels supporting axonal growth through the injury. Bridges support robust axon growth and myelination. Here, we investigated the cell types that myelinate axons in the bridges and whether over-expression of trophic factors can enhance myelination. Lentivirus encoding for neurotrophin-3 (NT3), sonic hedgehog (SHH) and the combination of these factors was delivered from bridges implanted into a lateral hemisection defect at T9/T10 in mice, and the response of endogenous progenitor cells within the spinal cord was investigated. Relative to control, the localized, sustained expression of these factors significantly increased growth of regenerating axons into the bridge and enhanced axon myelination 8 weeks after injury. SHH decreased the number of Sox2(+) cells and increased the number of Olig2(+) cells, whereas NT3 alone or in combination with SHH enhanced the numbers of GFAP(+) and Olig2(+) cells relative to control. For delivery of lentivirus encoding for either factor, we identified cells at various stages of differentiation along the oligodendrocyte lineage (e.g., O4(+), GalC(+)). Expression of NT3 enhanced myelination primarily by infiltrating Schwann cells, whereas SHH over-expression substantially increased myelination by oligodendrocytes. These studies further establish biomaterial-mediated gene delivery as a promising tool to direct activation and differentiation of endogenous progenitor cells for applications in regenerative medicine.

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Sigma-Aldrich
胶质纤维酸性蛋白(GFAP)单克隆抗体 小鼠抗, clone G-A-5, ascites fluid
Sigma-Aldrich
抗NG2硫酸软骨素蛋白聚糖抗体, Chemicon®, from rabbit
Sigma-Aldrich
抗Olig2抗体,克隆211F1.1, clone 211F1.1, from mouse
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单克隆抗 硫酸软骨素 小鼠抗, clone CS-56, ascites fluid
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抗-O4抗体,克隆81, clone 81 (mAB O4), Chemicon®, from mouse
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抗半乳糖脑苷脂抗体,克隆mGalC, clone mGalC, Chemicon®, from mouse
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抗胶质纤维酸性蛋白 兔抗, ~1 mg/mL, affinity isolated antibody, buffered aqueous solution
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Anti-Neurofilament 145 kDa Antibody, CT, clone 3H11, clone 3H11, Chemicon®, from mouse