Skip to content
Tech News
← Back to articles

Newfound brain network is a ‘secret system’ made of helper cells

read original get Neuroglia Brain Support Kit → more articles
Why This Matters

The discovery of extensive astrocyte networks in the brain reveals a previously unknown 'secret system' that could significantly impact our understanding of brain function, behavior, and health. This breakthrough opens new avenues for research into neurological processes and potential treatments for brain disorders, highlighting the importance of supporting these helper cells in the tech-driven pursuit of brain health and neurotechnology. Understanding astrocyte networks may lead to innovative approaches in AI, neural interfaces, and cognitive enhancement for consumers and industry alike.

Key Takeaways

The lesser-known brain cells called astrocytes form their own networks in the brain.Credit: Prof. Stephen Waxman, Hank Morgan/Science Photo Library

Scientists have discovered that the unsung brain cells called astrocytes form extensive networks in the mouse brain1 — networks similar in some respects to the brain circuits formed by the more celebrated brain cells called neurons.

The researchers compiled a whole-brain, 3D map of astrocyte networks, which the authors say is the first of its kind. It , shows that webs of the cells connect far-flung regions of the brain, allowing the cells to exchange molecules with each other over long distances.

The ‘silent’ brain cells that shape our behaviour, memory and health

“It’s a secret subway system we didn’t know was there,” says Shane Liddelow, a neuroscientist at NYU Grossman School of Medicine in New York City and a co-author of a paper published today in Nature describing the work. “This opens up a whole new avenue of investigation.”

Astrocyte networks can bridge the brain’s hemispheres, and they display plasticity, reshaping their connections in response to sensory deprivation, the team found.

The work is “a fundamentally important advance in our understanding of nervous system structure”, says David Lyons, a neurobiologist at the University of Edinburgh, UK, who was not involved with the research. He adds that so far, this new evidence of complex astrocyte networks raises more questions than it answers. “Clearly we are some way from understanding what the functional relevance and role of such [networks] is, but there are a myriad of possibilities.”

Star cells

Astrocytes are known to support neurons: they clear out chemical ‘rubbish’ that builds up around the junctions between neurons and help to deliver valuable molecules to neurons. The spaces between neurons are packed with astrocytes, which “tile every nook and cranny of the brain,” says Liddelow.

Neurons have long arms called axons, which can be used to send messages across long distances. Astrocytes don’t have axons. Instead, they’re covered in much shorter arms that give them a star-like appearance. Where one astrocyte arm meets another, small channels called gap junctions connect the two cells, allowing them to exchange materials such as calcium and glucose.

... continue reading