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首页> 外文期刊>Biotechnology Advances: An International Review Journal >BB14, a Nerve Growth Factor (NGF)-like peptide shown to be effective in reducing reactive astrogliosis and restoring synaptic homeostasis in a rat model of peripheral nerve injury
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BB14, a Nerve Growth Factor (NGF)-like peptide shown to be effective in reducing reactive astrogliosis and restoring synaptic homeostasis in a rat model of peripheral nerve injury

机译:BB14,一种神经生长因子(NGF)样肽,在减少周围神经损伤的大鼠模型中显示出可有效减少反应性星形胶质增生和恢复突触稳态的作用

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Peptidomimetics hold a great promise as therapeutic agents for neurodegenerative disorders. We previously described a Nerve Growth Factor (NGF)-like peptide, now named BB14, which was found to act as a strong TrkA agonist and to be effective in the sciatic nerve injury model of neuropathic pain. In this report we present the effects of BB14 in reducing reactive astrocytosis and reverting neuroplastic changes of the glutamate/GABAergic circuitry in the lumbar spinal cord following spared nerve injury (SNI) of the sciatic nerve. Immunohistochemical analysis of spinal cord sections revealed that SNI was associated with increased microglial (Iba1) and astrocytic (GFAP) responses, indicative of reactive gliosis. These changes were paralleled by (i) decreased glial aminoacid transporters (GLT1 and GlyT1) and increased levels of (ii) neuronal glutamate transporter EAAC1, (iii) neuronal vesicular GABA transporter (vGAT) and (iv) the GABAergic neuron marker GAD65/67. A remarkable increase of the Glutamate/GABA ratio and the reduction of glutathione (GSH) levels were also indicative of modifications of glial function in neuroprotection. All these molecular changes were found to be linked to an alteration of endogenous NGF metabolism, as demonstrated by decreased levels of mature NGF, increase of proNGF and increased activity of NGF-degrading methallo-proteinases (MMPs). Biochemical alterations and SNI-related neuropathic behavior, characterized by allodynia and hyperalgesia, were reversed by 7-days i.t, administration of the NGF-like peptide BB14, as well as by increasing endogenous NGF levels by it. infusion of GM6001, a MMPs inhibitor. All together, while confirming the correlation between reactive astrogliosis and perturbation of synaptic circuitry in the SNI model of peripheral nerve injury, these data strongly support the beneficial effect of BB14 in reducing reactive astrogliosis and restoring synaptic homeostasis under pathological conditions linked to alteration of NGF availability and signaling, thereby suggesting a potential role of BB14 as a therapeutic agent. (C) 2011 Published by Elsevier Inc.
机译:拟肽药物有望作为神经退行性疾病的治疗剂。我们之前曾描述过一种类似于神经生长因子(NGF)的肽,现在称为BB14,它被发现可作为强TrkA激动剂并在神经性疼痛的坐骨神经损伤模型中有效。在本报告中,我们介绍了坐骨神经神经损伤(SNI)后腰椎脊髓中BB14减少反应性星形细胞增多和恢复谷氨酸/ GABA能回路的神经塑性变化的作用。脊髓切片的免疫组织化学分析显示,SNI与小胶质细胞(Iba1)和星形胶质细胞(GFAP)反应增加有关,提示反应性神经胶质增生。这些变化与(i)胶质氨基酸转运蛋白(GLT1和GlyT1)降低和(ii)神经元谷氨酸转运蛋白EAAC1,(iii)神经元囊泡GABA转运蛋白(vGAT)和(iv)GABA能神经元标记GAD65 / 67的水平升高同时发生。谷氨酸/ GABA比的显着增加和谷胱甘肽(GSH)水平的降低也表明神经保护中神经胶质功能的改变。已发现所有这些分子变化均与内源性NGF代谢的改变有关,如成熟NGF水平降低,proNGF增加和NGF降解甲基纤维素(MMPs)活性增加所证明。以异常性疼痛和痛觉过敏为特征的生化改变和与SNI相关的神经病行为在7天即给予NGF样肽BB14以及通过其增加内源性NGF水平后得以逆转。输注MMPs抑制剂GM6001。综上所述,尽管在周围神经损伤的SNI模型中证实了反应性星形胶质增生和突触回路微扰之间的相关性,这些数据强烈支持BB14在减少与神经生长因子可用性相关的病理条件下的反应性星形胶质增生和恢复突触稳态的有益作用。和信号传导,从而暗示了BB14作为治疗剂的潜在作用。 (C)2011由Elsevier Inc.出版

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