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Freitas-Andrade, M.

Publications and source records attributed to Freitas-Andrade, M..

2 recordsLinked to original sources

Zebrafish glial-vascular interactions progressively expand over the course of brain development

Glial-vascular interactions are critical for the formation and maintenance of brain blood vessels and the blood-brain barrier (BBB) in mammals, but their role in zebrafish is not well understood. Our previous work has detailed the timeline of BBB functional maturation in zebrafish, revealing a conserved mechanism of BBB induction through the suppression of endothelial transcytosis. Yet, as opposed to extensive research on glial-vascular interactions in rodents, such interactions remain largely overlooked in the zebrafish model system. Here, we focus on glial-vascular development in the zebrafish brain, leveraging three glial gene promoters: gfap (glial fibrillary acidic protein), glast (an astrocyte-specific glutamate transporter), and glastini (a new, shortened, equally effective version of the Glast promoter). Using these glial promoters, sparse labeling revealed fewer glial-vascular interactions during early larval stages, with both glial coverage and contact area increasing as the zebrafish brain matured. We then generated stable transgenic lines for both the Glast and Glastini promoters and observed similar increases in glial coverage during larval development, starting at [~]30% coverage at 3 days post-fertilization (dpf) and peaking at [~]60% at 10 dpf. Ultrastructural assessment of glial-vascular interactions using electron microscopy (EM) confirmed a progressive increase in glial coverage over larval development, with maximal coverage reaching [~]70% in adult zebrafish, significantly lower than the nearly 100% coverage observed in mammals. Finally, immunogold-EM labeling confirmed that cells identified as glia in aforementioned morphological analyses were indeed Glast-positive. Taken together, our results identify the temporal profile of glial-vascular maturation in the zebrafish brain.

developmental biology↗

Astroglial Hmgb1 regulates postnatal astrocyte morphogenesis and cerebrovascular maturation.

Astrocytes are intimately linked with brain vessels, a relationship that is critical for neuronal health and function. However, astroglial factors driving these physical and functional associations during postnatal brain development have yet to be identified. We characterized structural and transcriptional changes in mouse cortical astrocytes and microvessels during the first two postnatal weeks and found that high-mobility group box 1 (Hmgb1), normally upregulated with injury and involved in adult cerebrovascular repair, was highly expressed in astrocytes at birth and then decreased rapidly. Astrocyte-selective ablation of Hmgb1 at birth affected astrocyte morphology and endfoot placement, altered distribution of endfoot proteins connexin43 and aquaporin-4, induced transcriptional changes in astrocytes related to cytoskeleton remodeling, and profoundly disrupted endothelial ultrastructure. While lack of astroglial Hmgb1 did not affect the blood-brain barrier or angiogenesis postnatally, it impaired neurovascular coupling and behavior in adult mice. These findings identify astroglial Hmgb1 as a key player in postnatal gliovascular maturation.

developmental biology↗