Towards an Understanding of the Dentate Gyrus Hilus.

IF 2.4 3区 医学 Q3 NEUROSCIENCES Hippocampus Pub Date : 2025-01-01 DOI:10.1002/hipo.23677
Helen E Scharfman
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Abstract

For many years, the hilus of the dentate gyrus (DG) was a mystery because anatomical data suggested a bewildering array of cells without clear organization. Moreover, some of the anatomical information led to more questions than answers. For example, it had been identified that one of the major cell types in the hilus, the mossy cell, innervates granule cells (GCs). However, mossy cells also targeted local GABAergic neurons. Furthermore, it was not yet clear if mossy cells were glutamatergic or GABAergic. This led to many debates about the role of mossy cells. However, it was clear that hilar neurons, including mossy cells, were likely to have very important functions because they provided strong input to GCs. Hilar neurons also attracted attention in epilepsy because pathological studies showed that hilar neurons were often lost, but GCs remained. Vulnerability of hilar neurons also occurred after traumatic brain injury and ischemia. These observations fueled an interest to understand hilar neurons and protect them, an interest that continues to this day. This article provides a historical and personal perspective into the ways that I sought to contribute to resolving some of the debates and moving the field forward. Despite several technical challenges the outcomes of the studies have been worth the effort with some surprising findings along the way. Given the growing interest in the hilus, and the advent of multiple techniques to selectively manipulate hilar neurons, there is a great opportunity for future research.

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对齿状回的认识。
多年来,齿状回(DG)的门是一个谜,因为解剖学数据表明它是一组令人眼花缭乱的细胞,没有明确的组织。此外,一些解剖学信息导致了更多的问题而不是答案。例如,已经确定门部的主要细胞类型之一,苔藓细胞,支配颗粒细胞(GCs)。然而,苔藓细胞也靶向局部gaba能神经元。此外,尚不清楚苔藓细胞是谷氨酸能还是gaba能。这引发了许多关于苔藓细胞作用的争论。然而,很明显,门状神经元,包括苔藓细胞,可能具有非常重要的功能,因为它们为GCs提供了强大的输入。肺门神经元在癫痫中也引起了人们的注意,因为病理研究表明肺门神经元经常丢失,但GCs仍然存在。创伤性脑损伤和脑缺血后,门部神经元也出现易损。这些观察激发了人们对了解和保护hilar神经元的兴趣,这种兴趣一直持续到今天。这篇文章提供了一个历史的和个人的视角,我试图为解决一些争论和推动这个领域向前发展做出贡献。尽管有一些技术上的挑战,但研究的结果是值得努力的,沿途有一些令人惊讶的发现。鉴于对门门的兴趣日益浓厚,以及有选择地操纵门门神经元的多种技术的出现,未来的研究有很大的机会。
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来源期刊
Hippocampus
Hippocampus 医学-神经科学
CiteScore
5.80
自引率
5.70%
发文量
79
审稿时长
3-8 weeks
期刊介绍: Hippocampus provides a forum for the exchange of current information between investigators interested in the neurobiology of the hippocampal formation and related structures. While the relationships of submitted papers to the hippocampal formation will be evaluated liberally, the substance of appropriate papers should deal with the hippocampal formation per se or with the interaction between the hippocampal formation and other brain regions. The scope of Hippocampus is wide: single and multidisciplinary experimental studies from all fields of basic science, theoretical papers, papers dealing with hippocampal preparations as models for understanding the central nervous system, and clinical studies will be considered for publication. The Editor especially encourages the submission of papers that contribute to a functional understanding of the hippocampal formation.
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