Arrested Oligodendrocyte Lineage Progression During Human Cerebral White Matter Development: Dissociation Between the Timing of Progenitor Differentiation and Myelinogenesis

S. Back, N. Luo, Natalia S. Borenstein, J. Volpe, H. Kinney
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引用次数: 178

Abstract

Immature oligodendrocytes (OLs) derive from a large pool of late OL progenitors that populate human cerebral white matter throughout the latter half of gestation. We recently reported that a minor population of immature OLs are present in human cerebral white matter for at least 3 months before these cells commit to myelinogenesis around 30 wk postconceptional age. Since this finding supports dissociation between the events that regulate human immature OL maturation and their commitment to myelinogenesis, we characterized here the cellular sequence of events that characterize immature OLs during the transition from a premyelinating to a myelinating state. Commitment of immature OLs to myelinogenesis in human cerebral white matter correlated with the longitudinal extension of specialized processes, designated “pioneer processes,” that made multiple types of apparent contacts with axons. This event coincided with the appearance of 3 distinct populations of sheaths that varied in their labeling for myelin basic protein (MBP). Since few axons initially labeled for MBP, this supported the occurrence in vivo of O4-negative, O1-positive premyelin sheaths that precede MBP-positive compacted myelin. These observations identify 3 sequential stages of early myelinogenesis: 1) the initial ensheathment of axons by premyelin sheaths generated by immature OLs; 2) the initial insertion of MBP into transitional sheaths; and 3) the generation of MBP-rich mature myelin.
人类脑白质发育过程中少突胶质细胞谱系阻滞:祖细胞分化时间与髓鞘形成时间的分离
未成熟少突胶质细胞(OLs)来源于大量晚期OL祖细胞,这些祖细胞在妊娠后期填充人类大脑白质。我们最近报道了少量未成熟ol在人类大脑白质中存在至少3个月,这些细胞在受孕后30周左右开始髓鞘形成。由于这一发现支持了调节人类未成熟OL成熟和髓鞘形成的事件之间的分离,我们在这里描述了未成熟OL在从预髓鞘形成到髓鞘形成状态转变过程中的细胞序列。人类大脑白质中未成熟ol参与髓鞘形成与特定过程的纵向延伸相关,称为“先锋过程”,与轴突进行多种类型的明显接触。这一事件与3个不同的鞘群的出现相吻合,这些鞘群在髓鞘碱性蛋白(MBP)的标记上有所不同。由于很少有轴突最初标记为MBP,这支持了在MBP阳性的致密髓磷脂之前,o4阴性和o1阳性的髓鞘前鞘在体内的发生。这些观察结果确定了早期髓鞘形成的三个连续阶段:1)未成熟OLs产生的髓鞘在轴突上形成初始鞘;2) MBP初始插入过渡鞘;3)生成富含mbp的成熟髓磷脂。
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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