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胃饥饿素介导的神经系统损伤后的再生与可塑性

Ghrelin-Mediated Regeneration and Plasticity After Nervous System Injury.

作者信息

Stoyanova Irina, Lutz David

机构信息

Department of Anatomy and Cell Biology, Medical University Varna, Varna, Bulgaria.

Department of Neuroanatomy and Molecular Brain Research, Ruhr University Bochum, Bochum, Germany.

出版信息

Front Cell Dev Biol. 2021 Mar 25;9:595914. doi: 10.3389/fcell.2021.595914. eCollection 2021.

Abstract

The nervous system is highly vulnerable to different factors which may cause injury followed by an acute or chronic neurodegeneration. Injury involves a loss of extracellular matrix integrity, neuronal circuitry disintegration, and impairment of synaptic activity and plasticity. Application of pleiotropic molecules initiating extracellular matrix reorganization and stimulating neuronal plasticity could prevent propagation of the degeneration into the tissue surrounding the injury. To find an omnipotent therapeutic molecule, however, seems to be a fairly ambitious task, given the complex demands of the regenerating nervous system that need to be fulfilled. Among the vast number of candidates examined so far, the neuropeptide and hormone ghrelin holds within a very promising therapeutic potential with its ability to cross the blood-brain barrier, to balance metabolic processes, and to stimulate neurorepair and neuroactivity. Compared with its well-established systemic effects in treatment of metabolism-related disorders, the therapeutic potential of ghrelin on neuroregeneration upon injury has received lesser appreciation though. Here, we discuss emerging concepts of ghrelin as an omnipotent player unleashing developmentally related molecular cues and morphogenic cascades, which could attenuate and/or counteract acute and chronic neurodegeneration.

摘要

神经系统极易受到各种不同因素的影响,这些因素可能导致损伤,进而引发急性或慢性神经退行性变。损伤包括细胞外基质完整性丧失、神经回路瓦解以及突触活性和可塑性受损。应用能够启动细胞外基质重组并刺激神经可塑性的多效性分子,可以防止退变扩散到损伤周围的组织中。然而,鉴于再生神经系统需要满足的复杂需求,找到一种万能的治疗分子似乎是一项相当艰巨的任务。在目前已检测的大量候选分子中,神经肽和激素胃饥饿素具有非常有前景的治疗潜力,它能够穿过血脑屏障、平衡代谢过程并刺激神经修复和神经活性。尽管胃饥饿素在治疗与代谢相关疾病方面的全身效应已得到充分证实,但其对损伤后神经再生的治疗潜力却较少受到关注。在此,我们讨论胃饥饿素作为一种万能因子释放与发育相关分子信号和形态发生级联反应的新观点,这可能减轻和/或对抗急性和慢性神经退行性变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d45/8046019/90e7a3137a4c/fcell-09-595914-g001.jpg

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