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Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
Quantitative susceptibility mapping identifies inflammation in a subset of chronic multiple sclerosis lesions
Ulrike W Kaunzner1, Yeona Kang2, Shun Zhang3
1Judith Jaffe Multiple Sclerosis Center, Weill Cornell Medicine, New York City, NY, USA.
Abstract:
Chronic active multiple sclerosis lesions, characterized by a hyperintense rim of iron-enriched, activated microglia and macrophages, have been linked to greater tissue damage. Post-mortem studies have determined that chronic active lesions are primarily related to the later stages of multiple sclerosis; however, the occurrence of these lesions, and their relationship to earlier disease stages may be greatly underestimated. Detection of chronic active lesions across the patient spectrum of multiple sclerosis requires a validated imaging tool to accurately identify lesions with persistent inflammation. Quantitative susceptibility mapping provides efficient in vivo quantification of susceptibility changes related to iron deposition and the potential to identify lesions harbouring iron-laden inflammatory cells. The PET tracer 11C-PK11195 targets the translocator protein expressed by activated microglia and infiltrating macrophages. Accordingly, this study aimed to validate that lesions with a hyperintense rim on quantitative susceptibility mapping from both relapsing and progressive patients demonstrate a higher level of innate immune activation as measured on 11C-PK11195 PET. Thirty patients were enrolled in this study, 24 patients had relapsing remitting multiple sclerosis, six had progressive multiple sclerosis, and all patients had concomitant MRI with a gradient echo sequence and PET with 11C-PK11195. A total of 406 chronic lesions were detected, and 43 chronic lesions with a hyperintense rim on quantitative susceptibility mapping were identified as rim+ lesions. Susceptibility (relative to CSF) was higher in rim+ (2.42 ± 17.45 ppb) compared to rim- lesions (-14.6 ± 19.3 ppb, P < 0.0001). Among rim+ lesions, susceptibility within the rim (20.04 ± 14.28 ppb) was significantly higher compared to the core (-5.49 ± 14.44 ppb, P < 0.0001), consistent with the presence of iron. In a mixed-effects model, 11C-PK11195 uptake, representing activated microglia/macrophages, was higher in rim+ lesions compared to rim- lesions (P = 0.015). Validating our in vivo imaging results, multiple sclerosis brain slabs were imaged with quantitative susceptibility mapping and processed for immunohistochemistry. These results showed a positive translocator protein signal throughout the expansive hyperintense border of rim+ lesions, which co-localized with iron containing CD68+ microglia and macrophages. In conclusion, this study provides evidence that suggests that a hyperintense rim on quantitative susceptibility measure within a chronic lesion is a correlate for persistent inflammatory activity and that these lesions can be identified in the relapsing patients. Utilizing quantitative susceptibility measure to differentiate chronic multiple sclerosis lesion subtypes, especially chronic active lesions, would provide a method to assess the impact of these lesions on disease progression.
Insights
Chronic active multiple sclerosis lesions with a hyperintense rim indicate persistent inflammation. Quantitative susceptibility mapping and 11C-PK11195 PET imaging can identify these active lesions in patients.
Area of Science:
- Neuroimaging
- Immunology
- Neurology
Background:
- Chronic active lesions in multiple sclerosis (MS) are characterized by iron-rich microglia/macrophages and are associated with increased tissue damage.
- These lesions are often linked to later MS stages, but their prevalence in earlier stages may be underestimated.
- Accurate identification of chronic active lesions requires validated in vivo imaging tools to detect persistent inflammation.
Purpose of the Study:
- To validate if lesions with a hyperintense rim on quantitative susceptibility mapping (QSM) show higher innate immune activation measured by 11C-PK11195 Positron Emission Tomography (PET).
- To assess the utility of QSM in identifying chronic active lesions across the spectrum of multiple sclerosis.
- To correlate in vivo imaging findings with ex vivo immunohistochemistry.
Main Methods:
- Thirty MS patients (24 relapsing-remitting, 6 progressive) underwent MRI with gradient echo sequence and 11C-PK11195 PET.
- Quantitative susceptibility mapping (QSM) was used to analyze iron deposition in 406 chronic lesions, identifying 43 "rim+" lesions with hyperintense rims.
- Immunohistochemistry was performed on MS brain slabs to validate QSM and PET findings.
Main Results:
- Rim+ lesions showed significantly higher magnetic susceptibility compared to rim- lesions, consistent with iron deposition.
- 11C-PK11195 uptake, indicating activated microglia/macrophages, was significantly higher in rim+ lesions than in rim- lesions.
- Ex vivo analysis confirmed co-localization of translocator protein signal with iron-laden microglia/macrophages in the hyperintense border of rim+ lesions.
Conclusions:
- A hyperintense rim on QSM in chronic MS lesions is a marker for persistent inflammatory activity.
- These chronic active lesions can be identified in both relapsing and progressive MS patients.
- QSM can differentiate MS lesion subtypes, aiding in assessing their impact on disease progression.
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