人类大脑中经久不衰的争议故事

Zhipeng Niu, Tanya Capolicchio
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引用次数: 0

摘要

成人海马神经发生(AHN)是一种被充分研究的现象,涉及海马齿状回区域的神经祖细胞衍生新的神经元,该区域负责认知功能,如学习和记忆储存。此外,海马体被认为与阿尔茨海默病等神经系统疾病有关。尽管AHN已经在动物模型中广泛观察了20年,但其在人类中的存在和持续性在学术界一直存在广泛的争论,主要基于死后免疫组织化学标记。通过PubMed和谷歌Scholar搜索“成人神经发生”,对143篇与AHN的发现史、啮齿动物的检测、人体解剖部分的免疫组织化学研究以及针对AHN的治疗开发最相关的文章进行了回顾。这篇综述文章强调了目前对啮齿动物和人类AHN的理解,其在神经退行性疾病和治疗中的意义,以及在研究人类AHN时遇到的不一致和方法上的差异。此外,AHN与情绪障碍和阿尔茨海默病等疾病之间的相关性仍未得到很好的确定,报道的结果相互矛盾。转录组学方法的标准化和增加死后人脑样本的可用性对于推进AHN研究至关重要。这篇综述文章试图发现成人神经发生的迷人和有争议的世界及其治疗神经系统疾病的潜在意义。除了对AHN存在的讨论之外,用这些补充知识来解决破坏性疾病可以导致治疗进步,这在很大程度上不仅依赖于对AHN存在的理解,而且依赖于对其可用性的机制的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enduring Controversial Story in the Human Brain
Adult hippocampal neurogenesis (AHN) is a well-studied phenomenon that involves the derivation of new neurons from neural progenitor cells in the dentate gyrus region of the hippocampus, an area responsible for cognitive functions such as learning and memory storage. Moreover, the hippocampus is known to be implicated in neurological conditions such as Alzheimer's disease. Although AHN has been extensively observed in animal models for twenty years, its existence and persistence in humans have been widely debated in academia, heavily based on post-mortem immunohistochemical markers. Using the search engines PubMed and Google Scholar for “Adult Human Neurogenesis,” 143 articles that were most relevant to the history of AHN discovery, detection in rodents, immunohistochemical studies on post-mortem human sections, and therapeutic development targeting AHN were reviewed. This review article highlights the current understanding of AHN in rodents and humans, its implications in neurodegenerative diseases and therapeutics, and the inconsistencies and methodological variabilities encountered in studying AHN in humans. Furthermore, the correlation between AHN and diseases such as mood disorders and Alzheimer's disease is still not well established, with conflicting findings reported. Standardization of transcriptomic methodologies and increased availability of post-mortem human brain samples are crucial in advancing AHN research. This review article attempts to discover the fascinating and controversial world of adult human neurogenesis and its potential implications in treating neurological disorders. Apart from the discussion on AHN existence, tackling devastating diseases with this supplemental knowledge can lead to therapeutic advancements which greatly rely on understanding not only the presence of AHN but the mechanisms mediating its availability.
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