loading
Skip to main content
  • U.S. Department of Health & Human Services(link is external)
National Institutes of Health (NIH) - Turning Discovery into Health
  • Virtual Tour
  • En Español

Site Menu

  • Home
  • Health Information
    • Health Care Providers & Facilities(link is external)
    • Health Info Lines
    • HealthCare.gov(link is external)
    • Science Education Resources
    • NIH Clinical Research Trials and You
    • Talking to Your Doctor

    More »

    Quick Links

    • MedlinePlus Health Info
    • NIH News in Health
    • Wellness Toolkits
  • Grants & Funding
    • Grants Home Page
    • Find Funding
    • Due Dates
    • How to Apply
    • About Grants
    • Policy & Compliance
    • Grants News/Blog
    • Contracts
    • Loan Repayment

    More »

    Quick Links

    • RePORT
    • eRA Commons
    • NIH Common Fund
  • News & Events
    • News Releases
    • Digital Media Kits
    • Media Resources
    • Media Contacts
    • Images and B-roll
    • Events
    • Social Media

    More »

    Quick Links

    • NIH News in Health
    • NIH Research Matters
    • NIH Record
  • Research & Training
    • Medical Research Initiatives
    • Science Highlights
    • Science Education
    • Research in NIH Labs & Clinics
    • Training Opportunities
    • Library Resources
    • Research Resources
    • Clinical Research Resources
    • Safety, Regulation and Guidance

    More »

    Quick Links

    • PubMed
    • Stem Cell Information
    • OppNet
    • NIDB
    • NIH Blueprint for Neuroscience Research
  • Institutes at NIH
    • List of Institutes and Centers
    • NIH Office of the Director
    • Directors of NIH Institutes and Centers
    • NIH Institute and Center Contact Information

    More »

    Quick Links

    • NCI
    • NEI
    • NHLBI
    • NHGRI
    • NIA
    • NIAAA
    • NIAID
    • NIAMS
    • NIBIB
    • NICHD
    • NIDCD
    • NIDCR
    • NIDDK
    • NIDA
    • NIEHS
    • NIGMS
    • NIMH
    • NIMHD
    • NINDS
    • NINR
    • NLM
    • CC
    • CIT
    • CSR
    • FIC
    • NCATS
    • NCCIH
  • About NIH
    • Who We Are
    • What We Do
    • Jobs at NIH
    • Visitor Information
    • Frequently Asked Questions
    • Contact Us

    More »

    Quick Links

    • The NIH Director
    • Take the Virtual Tour
    • NIH…Turning Discovery Into Health®
    • Impact of NIH Research
    • Science, Health, and Public Trust

You are here

Home » News & Events » News Releases

News Releases

News Release

Wednesday, February 7, 2018

Star-like cells may help the brain tune breathing rhythms

NIH study in rats suggests that support cells modulate brain circuit activity.

star-shaped brain cells, called astrocytes (red) A fresh look at the brain and breathing: NIH study in rats shows that star-shaped brain cells, called astrocytes (red) may play an active role in breathing. Jeffrey C. Smith lab, NIH/NINDS

Traditionally, scientists thought that star-shaped brain cells called astrocytes were steady, quiet supporters of their talkative, wire-like neighbors, called neurons. Now, an NIH study suggests that astrocytes may also have their say. It showed that silencing astrocytes in the brain’s breathing center caused rats to breathe at a lower rate and tire out on a treadmill earlier than normal. These were just two examples of changes in breathing caused by manipulating the way astrocytes communicate with neighboring cells.

“For decades we thought that breathing was exclusively controlled by neurons in the brain. Our results suggest that astrocytes actively help control the rhythm of breathing,” said Jeffrey C. Smith, Ph.D., senior investigator at the NIH’s National Institute of Neurological Disorders and Stroke (NINDS) and a senior author of the study published in Nature Communications. “These results add to the growing body of evidence that is changing the way we think about astrocytes and how the brain works.”

Dr. Smith’s lab investigates how breathing is controlled by the rhythmic firing of neurons in the preBötzinger complex, the brain’s breathing center that his lab helped discover. For this study, his team worked with Alexander Gourine, Ph.D., professor at University College London (UCL), whose lab found that astrocytes in neighboring parts of the brain may regulate breathing by sensing changes in blood carbon dioxide levels.

At least half of the brain is comprised of cells called glia and most of them are astrocytes. Recently scientists have shown that astrocytes may communicate like neurons by shooting off, or releasing, chemical messages, called transmitters, to neighboring cells.

In this study, the scientists tested the role of astrocytes in breathing by genetically modifying the ability of astrocytes in the preBötzinger complex to release transmitters. When they hushed the astrocytes in rats by reducing transmitter release, the rats breathed and sighed at a lower rate than normal. In contrast, if they made the astrocytes chattier by increasing transmission, the rats breathed at higher resting rates and sighed more often.

The team also tested how silencing astrocytes affected the rats’ responses to changes in oxygen and carbon dioxide levels. Although the rats’ breathing rate increased when oxygen levels were lower or carbon dioxide levels higher, it was still lower than normal. Silencing astrocytes also decreased the rate at which the rats sighed under lower oxygen levels. Moreover, the rats became exhausted much earlier than normal. They could only run half the distance that normal rats could run on a treadmill before tiring out.

“The primary goal of breathing is the exchange of carbon dioxide and oxygen that is critical for life. Our results support the idea that astrocytes help the brain translate changes in these gases into breathing,” said Shahriar Sheikhbahaei, Ph.D., formerly a doctoral student at UCL and participant in the NIH Graduate Partnership Program, and the lead author of the study.

Finally, the team showed that these astrocytes used adenosine triphosphate (ATP) to communicate with other cells in the brain. Inactivating released ATP reduced resting breathing rates and the frequency of sighs under normal and low oxygen levels.

“Our results expand our understanding of how the brain controls breathing under normal and disease conditions,” said Dr. Smith. “We plan to follow this path to understand how astrocytes help control other aspects of breathing.”

This study was supported by the Intramural Research Program at the NINDS, the Wellcome Trust, British Heart Foundation (Ref. RG/14/4/30736), BBSRC (Refs. BB/L019396/1, BB/K009192/1), the Medical Research Council (Ref. MR/L020661).

NINDS is the nation’s leading funder of research on the brain and nervous system. The mission of NINDS is to seek fundamental knowledge about the brain and nervous system and to use that knowledge to reduce the burden of neurological disease.

About the National Institutes of Health (NIH): NIH, the nation's medical research agency, includes 27 Institutes and Centers and is a component of the U.S. Department of Health and Human Services. NIH is the primary federal agency conducting and supporting basic, clinical, and translational medical research, and is investigating the causes, treatments, and cures for both common and rare diseases. For more information about NIH and its programs, visit www.nih.gov.

NIH…Turning Discovery Into Health®

Article

Sheikhbahaei et al. “Astrocytes modulate brainstem respiratory rhythm-generating circuits and determine exercise capacity,” January 25, 2018, DOI: 10.1038/s41467-017-02723-6

More Information

Neuroscience @ NIH

NINDS Division of Intramural Research

Intramural Research Program (IRP)

###

Institute/Center

National Institute of Neurological Disorders and Stroke (NINDS)

Contact

Christopher G. Thomas(link sends e-mail)
301-496-5751

Connect with Us

  • Subscribe to news releases
  • RSS Feed

Connect with Us

  • Contact Us
  • X(link is external)
  • Facebook(link is external)
  • Instagram(link is external)
  • YouTube(link is external)
  • Flickr(link is external)
  • More Social Media from NIH

Footer

  • NIH Home
  • Virtual Tour
  • En Español
  • Visitor Information
  • Frequently Asked Questions
  • Privacy Policy
  • Disclaimers
  • Accessibility
  • NIH Website Archives
  • Nondiscrimination Notice
  • Freedom of Information Act
  • No Fear Act
  • HHS Vulnerability Disclosure(link is external)
  • Office of Inspector General(link is external)
  • USA.gov(link is external)

NIH…Turning Discovery Into Health®

National Institutes of Health, 9000 Rockville Pike, Bethesda, Maryland 20892

U.S. Department of Health and Human Services(link is external)

Back to Top