Ferrer Isidro
Department of Pathology and Experimental Therapeutics, University of Barcelona, Hospitalet de LLobregat, Spain.
J Neuropathol Exp Neurol. 2024 May 22;83(6):375-395. doi: 10.1093/jnen/nlae031.
Golgi methods were used to study human neuropathology in the 1970s, 1980s, and 1990s of the last century. Although a relatively small number of laboratories applied these methods, their impact was crucial by increasing knowledge about: (1) the morphology, orientation, and localization of neurons in human cerebral and cerebellar malformations and ganglionic tumors, and (2) the presence of abnormal structures including large and thin spines (spine dysgenesis) in several disorders linked to mental retardation, focal enlargements of the axon hillock and dendrites (meganeurites) in neuronal storage diseases, growth cone-like appendages in Alzheimer disease, as well as abnormal structures in other dementias. Although there were initial concerns about their reliability, reduced dendritic branches and dendritic spines were identified as common alterations in mental retardation, dementia, and other pathological conditions. Similar observations in appropriate experimental models have supported many abnormalities that were first identified using Golgi methods in human material. Moreover, electron microscopy, immunohistochemistry, fluorescent tracers, and combined methods have proven the accuracy of pioneering observations uniquely visualized as 3D images of fully stained individual neurons. Although Golgi methods had their golden age many years ago, these methods may still be useful complementary tools in human neuropathology.
上世纪70年代、80年代和90年代,高尔基方法被用于研究人类神经病理学。尽管应用这些方法的实验室数量相对较少,但它们的影响至关重要,增加了对以下方面的认识:(1)人类大脑和小脑畸形及神经节肿瘤中神经元的形态、方向和定位;(2)几种与智力迟钝相关疾病中异常结构的存在,包括大而细的棘突(棘突发育异常)、神经元贮积病中轴丘和树突的局灶性增大(巨神经突)、阿尔茨海默病中的生长锥样附属物,以及其他痴呆症中的异常结构。尽管最初有人担心其可靠性,但树突分支和树突棘减少被确认为智力迟钝、痴呆和其他病理状况中的常见改变。在适当的实验模型中进行的类似观察支持了许多最初在人类材料中使用高尔基方法确定的异常情况。此外,电子显微镜、免疫组织化学、荧光示踪剂和联合方法已经证明了开创性观察的准确性,这些观察独特地呈现为完全染色的单个神经元的三维图像。尽管高尔基方法在许多年前迎来了它们的黄金时代,但这些方法在人类神经病理学中可能仍然是有用的补充工具。