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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >alpha 6 and beta 1 Integrin Heterodimer Mediates Schwann Cell Interactions with Axons and Facilitates Axonal Regeneration after Peripheral Nerve Injury
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alpha 6 and beta 1 Integrin Heterodimer Mediates Schwann Cell Interactions with Axons and Facilitates Axonal Regeneration after Peripheral Nerve Injury

机译:α6和β1整合蛋白异二聚体介导与轴突的施旺细胞相互作用,并促进外周神经损伤后的轴突再生

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摘要

Several isoforms of integrin subunits are expressed in Schwann cells and mediate Schwann cell interactions with axons. Here, we identify alpha 6 and beta 1 integrins as heterodimeric proteins expressed in Schwann cells and define their functions in axonal regeneration. alpha 6 and beta 1 integrins are induced in Schwann cells in the sciatic nerve after a crush injury, and the blocking of integrin activity by siRNA expression and by treatment with anti-integrin antibodies attenuates Schwann cell contact with cultured neurons and decreases neurite outgrowth. After nerve transection, the levels of alpha 6 and beta 1 integrins in the distal nerve stump are lower than those in the corresponding nerve area after a crush injury. Schwann cells prepared from the distal nerves 7 days after transection are less supportive of neurite outgrowth in co-cultured neurons than those prepared from the nerves 7 days after a crush injury. When the transected nerves are reconnected after a delay of 1 to 2 weeks, the induced levels of alpha 6 and beta 1 integrins in the reconnected distal nerves are significantly reduced compared to those in the nerves after a crush injury. These changes correlate with retarded axonal regeneration in animals that have experienced nerve transections and delayed coaptation, which implies an attenuated Schwann cell capacity to support axonal regeneration due to delayed Schwann cell contact with axons. The present data suggest that alpha 6 and beta 1 integrins induced in Schwann cells after nerve injury may play a role in mediating Schwann cell interactions with axons and promote axonal regeneration. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:整合蛋白亚基的几种同种型在施旺细胞中表达,并与轴突介导施旺细胞相互作用。这里,我们将α6和β1整合蛋白鉴定为施旺细胞中表达的异二聚体蛋白,并在轴突再生中定义其功能。在粉碎损伤后坐骨神经中的Schwann细胞中诱导α6和β1整合蛋白,并通过SiRNA表达阻断整联素活性和用抗整联蛋白抗体治疗衰减与培养的神经元的施曼细胞接触并降低神经突的出现。神经横衰期后,远端神经树桩中的α6和β1整合蛋白的水平低于挤压损伤后的相应神经区域中的水平。在经培养的神经元后7天后,从远端神经后7天从远端神经中制备的Schwann细胞比在挤压损伤后7天从神经制备的那些。当在延迟1至2周后重新连接肺部的神经时,与在挤压损伤后的神经中的那些相比,重组远端神经中的α6和β1整合蛋白的诱导水平显着降低。这些变化与具有经历神经横截面和延迟拟合的动物中的延迟轴突再生相关,这意味着由于延迟的施万细胞与轴突接触而导致的减毒的施万电池容量支持轴突再生。本数据表明,在神经损伤后施万细胞中诱导的α6和β1整合蛋白可能在介导与轴突中的施旺细胞相互作用并促进轴突再生中作用。 (c)2017年IBRO。 elsevier有限公司出版。保留所有权利。

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