Department of Neurosurgery, School of Medicine, National and Kapodistrian University of Athens, Evangelismos Hospital, 10676 Athens, Greece.
Department of Biomedical Engineering, The University of West Attica, 12243 Athens, Greece.
Biomolecules. 2024 Apr 30;14(5):536. doi: 10.3390/biom14050536.
In the present study, we conducted a scoping review to provide an overview of the existing literature on the carbocyanine dye DiI, in human neuroanatomical tract tracing. The PubMed, Scopus, and Web of Science databases were systematically searched. We identified 61 studies published during the last three decades. While studies incorporated specimens across human life from the embryonic stage onwards, the majority of studies focused on adult human tissue. Studies that utilized peripheral nervous system (PNS) tissue were a minority, with the majority of studies focusing on the central nervous system (CNS). The most common topic of interest in previous tract tracing investigations was the connectivity of the visual pathway. DiI crystals were more commonly applied. Nevertheless, several studies utilized DiI in a paste or dissolved form. The maximum tracing distance and tracing speed achieved was, respectively, 70 mm and 1 mm/h. We identified studies that focused on optimizing tracing efficacy by varying parameters such as fixation, incubation temperature, dye re-application, or the application of electric fields. Additional studies aimed at broadening the scope of DiI use by assessing the utility of archival tissue and compatibility of tissue clearing in DiI applications. A combination of DiI tracing and immunohistochemistry in double-labeling studies have been shown to provide the means for assessing connectivity of phenotypically defined human CNS and PNS neuronal populations.
在本研究中,我们进行了范围综述,以提供关于碳花青染料 DiI 在人类神经解剖追踪中的现有文献概述。我们系统地检索了 PubMed、Scopus 和 Web of Science 数据库。我们确定了过去三十年发表的 61 项研究。虽然这些研究纳入了从胚胎期到成年期的人类标本,但大多数研究都集中在成人组织上。利用周围神经系统(PNS)组织的研究较少,大多数研究集中在中枢神经系统(CNS)上。以前追踪研究中最常见的感兴趣的主题是视觉通路的连接。DiI 晶体更为常见。然而,一些研究以糊剂或溶解形式使用 DiI。达到的最大追踪距离和追踪速度分别为 70 毫米和 1 毫米/小时。我们确定了一些研究,这些研究通过改变固定、孵育温度、染料再应用或施加电场等参数来优化追踪效果。还有一些研究旨在通过评估存档组织的实用性和组织透明化在 DiI 应用中的兼容性来拓宽 DiI 使用范围。DiI 追踪和双重标记研究中的免疫组织化学相结合,已经被证明可以评估表型定义的人类中枢神经系统和周围神经系统神经元群体的连接性。
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