Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.

Streptococcus pneumoniae accounts for more deaths worldwide than any other single pathogen through diverse disease manifestations including pneumonia, sepsis and meningitis. Life-threatening acute cardiac complications are more common in pneumococcal infection compared to other bacterial infections....

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Main Authors: Yasir Alhamdi, Daniel R Neill, Simon T Abrams, Hesham A Malak, Reham Yahya, Richard Barrett-Jolley, Guozheng Wang, Aras Kadioglu, Cheng-Hock Toh
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-05-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1004836
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author Yasir Alhamdi
Daniel R Neill
Simon T Abrams
Hesham A Malak
Reham Yahya
Richard Barrett-Jolley
Guozheng Wang
Aras Kadioglu
Cheng-Hock Toh
author_facet Yasir Alhamdi
Daniel R Neill
Simon T Abrams
Hesham A Malak
Reham Yahya
Richard Barrett-Jolley
Guozheng Wang
Aras Kadioglu
Cheng-Hock Toh
author_sort Yasir Alhamdi
collection DOAJ
description Streptococcus pneumoniae accounts for more deaths worldwide than any other single pathogen through diverse disease manifestations including pneumonia, sepsis and meningitis. Life-threatening acute cardiac complications are more common in pneumococcal infection compared to other bacterial infections. Distinctively, these arise despite effective antibiotic therapy. Here, we describe a novel mechanism of myocardial injury, which is triggered and sustained by circulating pneumolysin (PLY). Using a mouse model of invasive pneumococcal disease (IPD), we demonstrate that wild type PLY-expressing pneumococci but not PLY-deficient mutants induced elevation of circulating cardiac troponins (cTns), well-recognized biomarkers of cardiac injury. Furthermore, elevated cTn levels linearly correlated with pneumococcal blood counts (r=0.688, p=0.001) and levels were significantly higher in non-surviving than in surviving mice. These cTn levels were significantly reduced by administration of PLY-sequestering liposomes. Intravenous injection of purified PLY, but not a non-pore forming mutant (PdB), induced substantial increase in cardiac troponins to suggest that the pore-forming activity of circulating PLY is essential for myocardial injury in vivo. Purified PLY and PLY-expressing pneumococci also caused myocardial inflammatory changes but apoptosis was not detected. Exposure of cultured cardiomyocytes to PLY-expressing pneumococci caused dose-dependent cardiomyocyte contractile dysfunction and death, which was exacerbated by further PLY release following antibiotic treatment. We found that high PLY doses induced extensive cardiomyocyte lysis, but more interestingly, sub-lytic PLY concentrations triggered profound calcium influx and overload with subsequent membrane depolarization and progressive reduction in intracellular calcium transient amplitude, a key determinant of contractile force. This was coupled to activation of signalling pathways commonly associated with cardiac dysfunction in clinical and experimental sepsis and ultimately resulted in depressed cardiomyocyte contractile performance along with rhythm disturbance. Our study proposes a detailed molecular mechanism of pneumococcal toxin-induced cardiac injury and highlights the major translational potential of targeting circulating PLY to protect against cardiac complications during pneumococcal infections.
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spelling doaj-art-45c4d55e61a14cb2b08fbecd8ca27f8a2025-08-20T03:10:04ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742015-05-01115e100483610.1371/journal.ppat.1004836Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.Yasir AlhamdiDaniel R NeillSimon T AbramsHesham A MalakReham YahyaRichard Barrett-JolleyGuozheng WangAras KadiogluCheng-Hock TohStreptococcus pneumoniae accounts for more deaths worldwide than any other single pathogen through diverse disease manifestations including pneumonia, sepsis and meningitis. Life-threatening acute cardiac complications are more common in pneumococcal infection compared to other bacterial infections. Distinctively, these arise despite effective antibiotic therapy. Here, we describe a novel mechanism of myocardial injury, which is triggered and sustained by circulating pneumolysin (PLY). Using a mouse model of invasive pneumococcal disease (IPD), we demonstrate that wild type PLY-expressing pneumococci but not PLY-deficient mutants induced elevation of circulating cardiac troponins (cTns), well-recognized biomarkers of cardiac injury. Furthermore, elevated cTn levels linearly correlated with pneumococcal blood counts (r=0.688, p=0.001) and levels were significantly higher in non-surviving than in surviving mice. These cTn levels were significantly reduced by administration of PLY-sequestering liposomes. Intravenous injection of purified PLY, but not a non-pore forming mutant (PdB), induced substantial increase in cardiac troponins to suggest that the pore-forming activity of circulating PLY is essential for myocardial injury in vivo. Purified PLY and PLY-expressing pneumococci also caused myocardial inflammatory changes but apoptosis was not detected. Exposure of cultured cardiomyocytes to PLY-expressing pneumococci caused dose-dependent cardiomyocyte contractile dysfunction and death, which was exacerbated by further PLY release following antibiotic treatment. We found that high PLY doses induced extensive cardiomyocyte lysis, but more interestingly, sub-lytic PLY concentrations triggered profound calcium influx and overload with subsequent membrane depolarization and progressive reduction in intracellular calcium transient amplitude, a key determinant of contractile force. This was coupled to activation of signalling pathways commonly associated with cardiac dysfunction in clinical and experimental sepsis and ultimately resulted in depressed cardiomyocyte contractile performance along with rhythm disturbance. Our study proposes a detailed molecular mechanism of pneumococcal toxin-induced cardiac injury and highlights the major translational potential of targeting circulating PLY to protect against cardiac complications during pneumococcal infections.https://doi.org/10.1371/journal.ppat.1004836
spellingShingle Yasir Alhamdi
Daniel R Neill
Simon T Abrams
Hesham A Malak
Reham Yahya
Richard Barrett-Jolley
Guozheng Wang
Aras Kadioglu
Cheng-Hock Toh
Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.
PLoS Pathogens
title Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.
title_full Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.
title_fullStr Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.
title_full_unstemmed Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.
title_short Circulating Pneumolysin Is a Potent Inducer of Cardiac Injury during Pneumococcal Infection.
title_sort circulating pneumolysin is a potent inducer of cardiac injury during pneumococcal infection
url https://doi.org/10.1371/journal.ppat.1004836
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