Cutibacterium acnes Central Nervous System Catheter Infection Induces Long-Term Changes in the Cerebrospinal Fluid
Matthew Beaver1, Dragana Lagundzin2, Ishwor Thapa3
1Department of Pediatrics, University of Nebraska Medical Center, Omaha, Nebraska, USA.
Abstract:
Cutibacterium acnes is the third most common cause of cerebrospinal fluid (CSF) shunt infection and is likely underdiagnosed due to the difficulty in culturing this pathogen. Shunt infections lead to grave neurologic morbidity for patients especially when there is a delay in diagnosis. Currently, the gold standard for identifying CSF shunt infections is microbiologic culture. However, C. acnes infection often results in falsely negative cultures; therefore, new diagnostic methods are needed. To investigate potential CSF biomarkers of C. acnes CSF shunt infection we adapted a rat model of CSF catheter infection to C. acnes. We found elevated levels of interleukin-1β (IL-1β), IL-6, chemokine ligand 2, and IL-10 in the CSF and brain tissues of animals implanted with C. acnes-infected catheters compared to sterile controls at day 1 postinfection. This coincided with modest increases in neutrophils in the CSF and, to a greater extent, in the brain tissues of animals with C. acnes infection, which closely mirrors the clinical findings in patients with C. acnes shunt infection. Mass spectrometry revealed that the CSF proteome is altered during C. acnes shunt infection and changes over the course of disease, typified at day 1 postinfection by an acute-phase and pathogen neutralization response evolving to a response consistent with wound resolution at day 28 compared to a sterile catheter placement. Collectively, these results demonstrate that it is possible to distinguish C. acnes infection from sterile postoperative inflammation and that CSF proteins could be useful in a diagnostic strategy for this pathogen that is difficult to diagnose.
Insights
Cutibacterium acnes shunt infections are hard to diagnose. New cerebrospinal fluid (CSF) biomarkers, including specific proteins and inflammatory responses, show promise for detecting this difficult-to-culture pathogen.
Area of Science:
- Neuroscience
- Infectious Diseases
- Biomarker Discovery
Background:
- Cutibacterium acnes is a common cause of cerebrospinal fluid (CSF) shunt infections, often leading to severe neurological complications.
- Current diagnostic methods, primarily microbial culture, are unreliable for C. acnes due to difficulties in culturing the pathogen, resulting in underdiagnosis.
Purpose of the Study:
- To identify novel CSF biomarkers for diagnosing Cutibacterium acnes CSF shunt infections.
- To investigate the host response to C. acnes infection in the CSF and brain tissue.
Main Methods:
- A rat model of CSF catheter infection was adapted to study C. acnes.
- Cerebrospinal fluid (CSF) and brain tissues were analyzed for protein levels (cytokines, chemokines) and cellular infiltration (neutrophils) using mass spectrometry.
- Proteomic changes were assessed at different time points post-infection.
Main Results:
- Elevated levels of IL-1β, IL-6, chemokine ligand 2, and IL-10 were observed in CSF and brain tissues of infected animals.
- Increased neutrophil presence in CSF and brain tissues mirrored clinical findings in patients.
- Mass spectrometry revealed distinct proteomic alterations in CSF, differentiating infection from sterile inflammation and indicating a shift from acute-phase response to wound resolution.
Conclusions:
- CSF protein profiles can distinguish Cutibacterium acnes infection from sterile inflammation.
- Identified CSF biomarkers and proteomic changes offer potential for a new diagnostic strategy for C. acnes shunt infections.
- This research addresses a critical unmet need for improved diagnostics in shunt infections caused by difficult-to-culture bacteria.
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