Blue Brain Project, École polytechnique fédérale de Lausanne (EPFL), Campus Biotech, Geneva 1202, Switzerland.
Neuroscience Institute Cavalieri Ottolenghi, Orbassano, Turin 10043, Italy.
Cereb Cortex. 2021 Oct 22;31(12):5686-5703. doi: 10.1093/cercor/bhab254.
Astrocytes connect the vasculature to neurons mediating the supply of nutrients and biochemicals. They are involved in a growing number of physiological and pathophysiological processes that result from biophysical, physiological, and molecular interactions in this neuro-glia-vascular ensemble (NGV). The lack of a detailed cytoarchitecture severely restricts the understanding of how they support brain function. To address this problem, we used data from multiple sources to create a data-driven digital reconstruction of the NGV at micrometer anatomical resolution. We reconstructed 0.2 mm3 of the rat somatosensory cortex with 16 000 morphologically detailed neurons, 2500 protoplasmic astrocytes, and its microvasculature. The consistency of the reconstruction with a wide array of experimental measurements allows novel predictions of the NGV organization, allowing the anatomical reconstruction of overlapping astrocytic microdomains and the quantification of endfeet connecting each astrocyte to the vasculature, as well as the extent to which they cover the latter. Structural analysis showed that astrocytes optimize their positions to provide uniform vascular coverage for trophic support and signaling. However, this optimal organization rapidly declines as their density increases. The NGV digital reconstruction is a resource that will enable a better understanding of the anatomical principles and geometric constraints, which govern how astrocytes support brain function.
星形胶质细胞将血管与神经元连接起来,介导营养物质和生物化学物质的供应。它们参与了越来越多的生理和病理生理过程,这些过程源于这个神经胶质血管单元 (NGV) 中的生物物理、生理和分子相互作用。缺乏详细的细胞结构严重限制了人们对它们如何支持大脑功能的理解。为了解决这个问题,我们使用来自多个来源的数据,以微米解剖分辨率创建了一个数据驱动的 NGV 数字重建。我们重建了 0.2mm3 的大鼠体感皮层,其中包含 16000 个形态详细的神经元、2500 个原生质星形胶质细胞及其微血管。重建与广泛的实验测量结果的一致性允许对 NGV 组织进行新的预测,从而可以对重叠的星形胶质细胞微区进行解剖重建,并对每个星形胶质细胞与血管的连接的终足进行定量,以及它们覆盖后者的程度。结构分析表明,星形胶质细胞优化其位置以提供均匀的血管覆盖,从而为营养支持和信号传递提供支持。然而,随着密度的增加,这种最佳组织迅速下降。NGV 数字重建是一种资源,将使人们能够更好地理解控制星形胶质细胞如何支持大脑功能的解剖学原理和几何约束。