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Combined In vivo Optical and µCT Imaging to Monitor Infection, Inflammation, and Bone Anatomy in an Orthopaedic Implant Infection in Mice
Published on: October 16, 2014
In situ lipidomics of Staphylococcus aureus osteomyelitis using imaging mass spectrometry
Christopher J Good1,2, Casey E Butrico3, Madeline E Colley1,4
1Mass Spectrometry Research Center, Vanderbilt University, Nashville, TN 37235, USA.
Abstract:
Osteomyelitis occurs when Staphylococcus aureus invades the bone microenvironment, resulting in a bone marrow abscess with a spatially defined architecture of cells and biomolecules. Imaging mass spectrometry and microscopy are invaluable tools that can be employed to interrogate the lipidome of S. aureus-infected murine femurs to reveal metabolic and signaling consequences of infection. Here, nearly 250 lipids were spatially mapped to healthy and infection-associated morphological features throughout the femur, establishing composition profiles for tissue types. Ether lipids and arachidonoyl lipids were significantly altered between cells and tissue structures in abscesses, suggesting their roles in abscess formation and inflammatory signaling. Sterols, triglycerides, bis(monoacylglycero)phosphates, and gangliosides possessed ring-like distributions throughout the abscess, indicating dysregulated lipid metabolism in a subpopulation of leukocytes that cannot be discerned with traditional microscopy. These data provide chemical insight into the signaling function and metabolism of cells in the fibrotic border of abscesses, likely characteristic of lipid-laden macrophages.
Insights
Staphylococcus aureus infection causes osteomyelitis, altering bone lipids. Imaging mass spectrometry revealed specific lipid changes in abscesses, offering insights into infection and inflammation.
Area of Science:
- Biochemistry
- Microbiology
- Immunology
Background:
- Osteomyelitis is a bone infection caused by Staphylococcus aureus.
- Understanding the bone microenvironment during infection is crucial.
Approach:
- Spatially mapped nearly 250 lipids in S. aureus-infected murine femurs using imaging mass spectrometry and microscopy.
- Established lipid composition profiles for healthy and infected bone tissue types.
Key Points:
- Ether lipids and arachidonoyl lipids were significantly altered in abscesses, suggesting roles in inflammation.
- Sterols, triglycerides, and other lipids showed ring-like distributions, indicating dysregulated leukocyte metabolism.
- These findings provide chemical insights into the fibrotic border of abscesses, characteristic of lipid-laden macrophages.
Conclusions:
- Lipid alterations are key features of the osteomyelitis microenvironment.
- Imaging mass spectrometry reveals cellular metabolic and signaling changes not visible with traditional microscopy.
- This study enhances understanding of host-pathogen interactions in bone infections.
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