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Published on: September 11, 2020
Magnesium therapy improves outcome in Streptococcus pneumoniae meningitis by altering pneumolysin pore formation
Sabrina Hupp1,2, Sandra Ribes3,4, Jana Seele3,4
1Institute of Anatomy, University of Bern, Bern, Switzerland.
Background And Purpose:
Streptococcus pneumoniae is the most common cause of bacterial meningitis in adults and is characterized by high lethality and substantial cognitive disabilities in survivors. Here, we have studied the capacity of an established therapeutic agent, magnesium, to improve survival in pneumococcal meningitis by modulating the neurological effects of the major pneumococcal pathogenic factor, pneumolysin.
Experimental Approach:
We used mixed primary glial and acute brain slice cultures, pneumolysin injection in infant rats, a mouse meningitis model and complementary approaches such as Western blot, a black lipid bilayer conductance assay and live imaging of primary glial cells.
Key Results:
Treatment with therapeutic concentrations of magnesium chloride (500 mg·kg-1 in animals and 2 mM in cultures) prevented pneumolysin-induced brain swelling and tissue remodelling both in brain slices and in animal models. In contrast to other divalent ions, which diminish the membrane binding of pneumolysin in non-therapeutic concentrations, magnesium delayed toxin-driven pore formation without affecting its membrane binding or the conductance profile of its pores. Finally, magnesium prolonged the survival and improved clinical condition of mice with pneumococcal meningitis, in the absence of antibiotic treatment.
Conclusions And Implications:
Magnesium is a well-established and safe therapeutic agent that has demonstrated capacity for attenuating pneumolysin-triggered pathogenic effects on the brain. The improved animal survival and clinical condition in the meningitis model identifies magnesium as a promising candidate for adjunctive treatment of pneumococcal meningitis, together with antibiotic therapy.
Insights
Magnesium treatment improved survival and clinical outcomes in a mouse model of pneumococcal meningitis by reducing the neurotoxic effects of pneumolysin, suggesting its potential as an adjunctive therapy.
Area of Science:
- Neuroscience
- Infectious Diseases
- Pharmacology
Background:
- Streptococcus pneumoniae causes bacterial meningitis, a severe condition with high mortality and long-term cognitive deficits.
- Pneumolysin is a key virulence factor contributing to the neurological damage in pneumococcal meningitis.
Purpose of the Study:
- To investigate the neuroprotective potential of magnesium in pneumococcal meningitis.
- To determine if magnesium can mitigate the effects of pneumolysin on the brain.
Main Methods:
- Utilized in vitro (glial and brain slice cultures) and in vivo (infant rat and mouse meningitis models) approaches.
- Employed techniques including Western blot, black lipid bilayer assay, and live cell imaging.
- Administered magnesium chloride at therapeutic concentrations.
Main Results:
- Magnesium prevented pneumolysin-induced brain swelling and tissue damage in both cell cultures and animal models.
- Magnesium specifically delayed pneumolysin pore formation without altering toxin binding or pore conductance.
- Magnesium significantly improved survival rates and clinical condition in mice with pneumococcal meningitis.
Conclusions:
- Magnesium effectively attenuates pneumolysin's neurotoxic effects, demonstrating its safety and therapeutic capacity.
- Magnesium shows promise as an adjunctive treatment for bacterial meningitis, complementing standard antibiotic therapy.
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