Related Experiment Video
Updated: Jan 21, 2026

Experimental Human Pneumococcal Carriage
Published on: February 15, 2013
Metformin mediates neuroprotection and attenuates hearing loss in experimental pneumococcal meningitis
Lukas Muri1,2, Ngoc Dung Le1,2, Jonas Zemp1
1Neuroinfection Laboratory, Institute for Infectious Diseases, University of Bern, Friedbühlstrasse 51, 3010, Bern, Switzerland.
Background:
Pneumococcal meningitis is associated with high risk of neurological sequelae such as cognitive impairment and hearing loss. These sequelae are due to parenchymal brain and inner ear damage primarily induced by the excessive inflammatory reaction in response to bacterial brain invasion. Metformin-a biguanide drug to treat diabetes mellitus type 2-was recently found to suppress neuroinflammation and induce neuroregeneration. This study evaluated the effect of metformin adjunctive to antibiotics on neuroinflammation, brain and inner ear damage, and neurofunctional outcome in experimental pediatric pneumococcal meningitis.
Methods:
Eleven-day-old Wistar rats were infected intracisternally with 5.22 ± 1.27 × 103 CFU Streptococcus pneumoniae and randomized for treatment with metformin (50 mg/kg, i.p., once daily for 3 weeks) plus ceftriaxone (100 mg/kg, i.p., bid, n = 61) or ceftriaxone monotherapy (n = 79). Cortical damage and hippocampal apoptosis were evaluated histomorphometrically 42 h post infection. Cerebrospinal fluid cytokine levels were analyzed during acute infection. Five weeks post infection, auditory brainstem responses were measured to determine hearing thresholds. Spiral ganglion neuron density and abundance of recently proliferated and integrated hippocampal granule neurons were assessed histologically. Additionally, the anti-inflammatory effect of metformin was studied in primary rat astroglial cells in vitro.
Results:
Upon pneumococcal infection, metformin treatment significantly reduced levels of inflammatory cytokines and nitric oxide production in cerebrospinal fluid and in astroglial cell cultures in vitro (p < 0.05). Compared to animals receiving ceftriaxone monotherapy, adjunctive metformin significantly reduced cortical necrosis (p < 0.02) during acute infection and improved median click-induced hearing thresholds (60 dB vs. 100 dB, p < 0.002) 5 weeks after infection. Adjuvant metformin significantly improved pure tone hearing thresholds at all assessed frequencies compared to ceftriaxone monotherapy (p < 0.05) and protected from PM-induced spiral ganglion neuron loss in the inner ear (p < 0.05).
Conclusion:
Adjuvant metformin reduces brain injury during pneumococcal meningitis by decreasing the excessive neuroinflammatory response. Furthermore, it protects spiral ganglion neurons in the inner ear and improves hearing impairments after experimental pneumococcal meningitis. These results identify adjuvant metformin as a promising therapeutic option to improve the outcome after pediatric pneumococcal meningitis.
Insights
Metformin combined with antibiotics significantly reduced brain damage and hearing loss in experimental pneumococcal meningitis. This study suggests metformin as a promising treatment to improve outcomes for pediatric pneumococcal meningitis.
Area of Science:
- Neuroscience
- Pharmacology
- Infectious Diseases
Background:
- Pneumococcal meningitis can cause severe neurological deficits, including cognitive impairment and hearing loss.
- These deficits stem from brain and inner ear damage driven by inflammation following bacterial invasion.
- Metformin, a type 2 diabetes drug, shows potential in suppressing neuroinflammation and promoting neuroregeneration.
Purpose of the Study:
- To investigate the efficacy of metformin as an adjunctive therapy to antibiotics in treating experimental pediatric pneumococcal meningitis.
- To evaluate metformin's impact on neuroinflammation, brain and inner ear damage, and neurofunctional recovery.
Main Methods:
- Wistar rats were infected with Streptococcus pneumoniae and treated with ceftriaxone alone or with metformin.
- Histomorphometric analysis assessed cortical damage and hippocampal apoptosis.
- Cerebrospinal fluid cytokine levels, auditory brainstem responses, and spiral ganglion neuron density were evaluated.
Main Results:
- Metformin significantly reduced inflammatory cytokines and nitric oxide in cerebrospinal fluid and in vitro astroglial cells.
- Adjunctive metformin decreased cortical necrosis and improved hearing thresholds compared to ceftriaxone monotherapy.
- Metformin protected against spiral ganglion neuron loss and improved hearing outcomes post-infection.
Conclusions:
- Adjuvant metformin effectively reduces brain injury in experimental pneumococcal meningitis by mitigating neuroinflammation.
- Metformin demonstrates protective effects on inner ear structures, improving hearing impairments.
- These findings highlight metformin as a potential therapeutic agent for improving outcomes in pediatric pneumococcal meningitis.
More Related Videos
07:13Modified Experimental Conditions for Noise-Induced Hearing Loss in Mice and Assessment of Hearing Function and Outer Hair Cell Damage
Published on: February 10, 2023
03:49Author Spotlight: Optimizing EAS with Long Electrodes for Enhanced Cochlear Coverage and Hearing Preservation
Published on: October 11, 2024
Related Concept Videos
Hearing
Transcription Attenuation in Prokaryotes
There are several different mechanisms used to attenuate transcription. In ribosome mediated...
Cranial and Spinal Meninges
Cranial Meninges
These meningeal layers cover the cranium. The dura mater is the outermost layer of cranial meninges. It is a thick and durable membrane of dense...
Line Loss
Line loss impacts power delivery efficiency in a balanced three-phase circuit. The symmetry in such a circuit simplifies the...
Reducing Line Loss
With a step-up transformer at the source, the voltage is increased, thereby reducing the current in the transmission lines since power loss in...
Major Losses in Pipes
Fluid flow can be classified as laminar or turbulent, primarily based on the Reynolds number. This dimensionless number reflects the relative influence of inertial to viscous...