Platform

  • Search
  • Seminars
  • Conferences
  • Jobs

Resources

  • Submit Content
  • About Us

© 2025 World Wide

Open knowledge for all • Started with World Wide Neuro • A 501(c)(3) Non-Profit Organization

Analytics consent required

World Wide relies on analytics signals to operate securely and keep research services available. Accept to continue, or leave the site.

Review the Privacy Policy for details about analytics processing.

World Wide
SeminarsConferencesWorkshopsCoursesJobsMapsFeedLibrary
Back to SeminarsBack
Seminar✓ Recording AvailableNeuroscience

Glia neuron metabolic interactions in Drosophila

Stephanie Schirmeier

Dr.

University of Munster

Schedule
Monday, September 28, 2020

Showing your local timezone

Schedule

Monday, September 28, 2020

3:00 PM Europe/Lisbon

Watch recording
Host: Brain-Body Interactions

Watch the seminar

Recording provided by the organiser.

Event Information

Domain

Neuroscience

Original Event

View source

Host

Brain-Body Interactions

Duration

70 minutes

Abstract

To function properly, the nervous system consumes vast amounts of energy, which is mostly provided by carbohydrate metabolism. Neurons are very sensitive to changes in the extracellular fluid surrounding them, which necessitated shielding of the nervous system from fluctuating solute concentrations in circulation. This is achieved by the blood-brain barrier (BBB) that prevents paracellular diffusion of solutes into the nervous system. This in turn also means that all nutrients that are needed e.g. for sufficient energy supply need to be transported over the BBB. We use Drosophila as a model system to better understand the metabolic homeostasis in the central nervous system. Glial cells play essential roles in both nutrient uptake and neural energy metabolism. Carbohydrate transport over the glial BBB is well-regulated and can be adapted to changes in carbohydrate availability. Furthermore, Drosophila glial cell are highly glycolytic cells that support the rather oxidative metabolism of neurons. Upon perturbations of carbohydrate metabolism, the glial cells prove to be metabolically very flexible and able to adapt to changing circumstances. I will summarize what we know about carbohydrate transport at the Drosophila BBB and about the metabolic coupling between neurons and glial cells. Our data shows that many basic features of neural metabolism are well conserved between the fly and mammals.

Topics

blood-brain barriercarbohydrate metabolismdrosophilaglial cellsglycolytic metabolismmetabolic couplingmetabolic homeostasismetabolismneuron-glia communicationnutrient uptakeoxidative metabolism

About the Speaker

Stephanie Schirmeier

Dr.

University of Munster

Contact & Resources

Personal Website

schirmeier.uni-muenster.de

Related Seminars

Seminar60%

Pancreatic Opioids Regulate Ingestive and Metabolic Phenotypes

neuro

Jan 12, 2025
Washington University in St. Louis
Seminar60%

Exploration and Exploitation in Human Joint Decisions

neuro

Jan 12, 2025
Munich
Seminar60%

The Role of GPCR Family Mrgprs in Itch, Pain, and Innate Immunity

neuro

Jan 12, 2025
Johns Hopkins University
January 2026
Full calendar →