Neurosurgery Unit, Department of Surgery, ASST lariana - S. Anna Hospital, Como, Italy.
Neurosurgery Unit, Department of Neuroscience and Neurorehabilitation, Bambino Gesù Children's Hospital, IRCCS, Roma, Italy.
J Anat. 2018 May;232(5):739-746. doi: 10.1111/joa.12791. Epub 2018 Feb 14.
Morphological analyses of cerebral vascularization are not only important for the characterization of the anatomical and physiological relationships between vascular and nervous tissue, but also required to understand structural modifications that occur in many pathological conditions affecting the brain. The aim of this study was to generate a three-dimensional vascular map of the cerebral hemispheres in the nude mouse brain, a widely used animal model for studying tumour biology. We used the corrosion casting (CC) technique to isolate blood vessels from 30 nude mouse brains. All casts were analysed using scanning electron microscopy (SEM), which generated quantitative data regarding vessel length and diameter as well as inter-vascular and inter-branching distances. We identified three different topographical regions: (i) the cortical region, characterized by a superficial wide sheet of vessels giving rise to terminal perforant vessels that penetrate the grey matter; (ii) the inner part of the grey matter, in which dense capillary nets form many flake-like structures extending towards the grey-white matter boundary, where perforant vessels finally change direction and form a well-defined vascular sheet; and (iii) the white matter layer, characterized by a more disorganized vascular architecture. In this study, we demonstrate the accuracy of the CC-SEM method in revealing the 3D-topographical organization of the vascular network of the normal nude mouse brain. These baseline data will serve as a reference for future anatomical investigations of pathological alterations, such as tumour infiltrations, using the nude mouse model.
脑血管形态学分析不仅对描述血管和神经组织之间的解剖和生理关系非常重要,而且对于理解影响大脑的许多病理状况下发生的结构改变也是必需的。本研究的目的是生成裸鼠大脑半球的三维血管图谱,这是一种广泛用于研究肿瘤生物学的动物模型。我们使用腐蚀铸造(CC)技术从 30 只裸鼠脑中分离血管。所有铸件均使用扫描电子显微镜(SEM)进行分析,这为血管长度和直径以及血管间和分支间距离提供了定量数据。我们确定了三个不同的拓扑区域:(i)皮质区,由浅层宽血管片组成,产生终末穿通血管,穿透灰质;(ii)灰质的内部,其中密集的毛细血管网形成许多片状结构,向灰白质边界延伸,穿通血管最终改变方向并形成明确的血管片;(iii)白质层,其特征是血管结构更加紊乱。在这项研究中,我们证明了 CC-SEM 方法在揭示正常裸鼠大脑血管网络的 3D 拓扑组织方面的准确性。这些基线数据将作为未来使用裸鼠模型进行肿瘤浸润等病理改变的解剖学研究的参考。