Myelin Ultrastructure Terminology in Disease and Recovery Processes.

IF 0.8 4区 医学 Q4 NEUROSCIENCES Archives Italiennes De Biologie Pub Date : 2019-09-30 DOI:10.12871/00039829201924
F Helvacioglu, A Dagdeviren
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引用次数: 4

Abstract

Ultrastructural evaluation of myelin coat helps to understand the possible background of pathological changes leading to deterioration or complete loss of nerve functions. A number of terms were previously introduced to describe the fine structural changes in myelin under various conditions. We believe that using a common terminology will be helpful to interpret the structure/function relationship in neurological disorders empowering the diagnosis and possible therapeutical approaches. In this paper, we present examples of ultrastructural changes in myelin during myelination, demyelination, re-myelination and dysmyelination processes and we reviewed the terminology previously used.We tried to include all studies reporting ultrastructural findings with no limitation to the experimental conditions, the species used and the disorders. The terminology used to describe the structural findings included compacted myelin, partially compacted myelin, noncompacted myelin, redundancy (hypermyelination, tomacula, myelinosome), splitting, complete circular splitting, myelin degradation, concentric lamellar bodies (myelin figures), loss of myelin lamellae, polyaxonal Schwann cells and necrotic cell debris.Ultrastructural data described in this paper aimed to provide a guide for future studies. We concluded that the evaluation of ultrastructural changes in any neurological disorder is greatly valuable for a better understanding of pathological and physiological changes occured. We also believe that supporting the ultrastructural findings with quantitative methods in the future will be of great value.

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疾病和恢复过程中的髓鞘超微结构术语。
髓鞘被膜的超微结构评价有助于了解导致神经功能恶化或完全丧失的病理改变的可能背景。以前引入了一些术语来描述髓磷脂在各种条件下的细微结构变化。我们相信,使用一个通用的术语将有助于解释神经系统疾病的结构/功能关系,从而增强诊断和可能的治疗方法。在本文中,我们介绍了在髓鞘形成、脱髓鞘形成、再髓鞘形成和髓鞘增生过程中髓鞘超微结构变化的例子,并回顾了以前使用的术语。我们试图纳入所有报告超微结构发现的研究,不受实验条件、使用的物种和疾病的限制。用于描述结构发现的术语包括紧致髓磷脂、部分紧致髓磷脂、非紧致髓磷脂、冗余(髓鞘增生、瘤状、髓蛋白体)、分裂、完全圆形分裂、髓磷脂降解、同心片层体(髓磷脂图)、髓磷脂片层丢失、多轴性雪旺细胞和坏死细胞碎片。本文描述的超微结构数据旨在为今后的研究提供指导。我们的结论是,评估任何神经系统疾病的超微结构变化对于更好地了解所发生的病理和生理变化具有重要价值。我们也相信,未来用定量方法来支持超微结构的发现将具有很大的价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives Italiennes De Biologie
Archives Italiennes De Biologie 医学-神经科学
CiteScore
2.10
自引率
30.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: Archives Italiennes de Biologie - a Journal of Neuroscience- was founded in 1882 and represents one of the oldest neuroscience journals in the world. Archives publishes original contributions in all the fields of neuroscience, including neurophysiology, experimental neuroanatomy and electron microscopy, neurobiology, neurochemistry, molecular biology, genetics, functional brain imaging and behavioral science. Archives Italiennes de Biologie also publishes monographic special issues that collect papers on a specific topic of interest in neuroscience as well as the proceedings of important scientific events. Archives Italiennes de Biologie is published in 4 issues per year and is indexed in the major collections of biomedical journals, including Medline, PubMed, Current Contents, Excerpta Medica.
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