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Updated: Jan 22, 2026

Multifocal Electroretinograms
Published on: December 4, 2011
Virus-Specific T Cells and Response to Checkpoint Inhibitors in Progressive Multifocal Leukoencephalopathy
Nora Möhn1,2, Lea Grote-Levi1, Agnes Bonifacius3
1Department of Neurology, Hannover Medical School, Hannover, Germany.
Insights
Preexisting virus-specific T cells in patients with progressive multifocal leukoencephalopathy (PML) correlate with improved outcomes when treated with immune checkpoint inhibitors (ICIs). This suggests that antiviral immunity is crucial for effective ICI therapy in PML.
Area of Science:
- Immunology
- Neurology
- Oncology
Background:
- Progressive multifocal leukoencephalopathy (PML) is a severe demyelinating disease caused by JC virus (JCV) reactivation in immunocompromised individuals.
- Immune checkpoint inhibitors (ICIs) offer therapeutic potential for PML, but treatment responses are variable, and predictive biomarkers are needed.
Purpose of the Study:
- To investigate the association between pretreatment JC virus (JCV)- and/or BK virus-specific T cells and the efficacy of ICI treatment in PML patients.
- To identify potential biomarkers for predicting treatment response and outcomes in PML.
Main Methods:
- A retrospective cohort study involving 111 patients with PML treated with ICIs (pembrolizumab, nivolumab, or atezolizumab).
- Patients were stratified based on the presence of peripheral virus-specific T cells (detected via ELISpot/flow cytometry) before treatment.
- Clinical outcomes, viral load, and immune-related adverse events were compared between T cell-positive, T cell-negative, and unknown T cell status groups.
Main Results:
- Patients with detectable virus-specific T cells prior to ICI therapy demonstrated significantly higher response rates (86% vs. 23% for T cell-negative; P < .001).
- T cell-positive patients exhibited improved survival (P = .002) and better functional outcomes (modified Rankin Scale score, P = .009) compared to T cell-negative patients.
- Lower JC viral loads in cerebrospinal fluid (P = .01) and fewer immune-related adverse events (P = .02) were observed in T cell-positive patients.
Conclusions:
- Preexisting functional virus-specific T cells are associated with enhanced clinical response, prolonged survival, and reduced toxicity in PML patients undergoing ICI therapy.
- The presence of antiviral immunity prior to treatment may be a critical factor for successful ICI therapy in PML.
- These findings highlight the potential of virus-specific T cell monitoring as a predictive biomarker for ICI treatment in PML.
Importance:
Progressive multifocal leukoencephalopathy (PML) is a life-threatening demyelinating disease caused by reactivation of the JC virus (JCV) in immunocompromised patients. While immune checkpoint inhibitors (ICIs) show therapeutic potential, responses vary and predictive biomarkers are lacking.
Objective:
To determine whether pretreatment JCV- and/or BK virus-specific T cells in the blood are associated with treatment efficacy.
Design, Setting, And Participants:
This retrospective cohort study included 111 patients with PML who were treated with ICIs stratified by peripheral virus-specific T cell presence (ELISpot/flow cytometry) between August 2021 and May 2024, with a median (IQR) follow-up of 7 (1-13) months. Of 112 patients with definite PML across 39 centers, 1 patient refused participation; 111 patients were included.
Exposure:
Patients received pembrolizumab (n = 81), nivolumab (n = 28), or atezolizumab (n = 2) per availability and prescribing practices at participating centers.
Main Outcome And Measures:
Clinical outcomes, diagnostic parameters, and immune-related adverse events were compared; association of virus-specific T-cell responses with survival was analyzed using the Kaplan-Meier method.
Results:
The study cohort consisted of 111 patients (median [IQR] age, 61 [50-70] years; 74 male [66.6%]). Twenty-one patients had detectable virus-specific T cells prior to therapy, 22 were T cell-negative and 68 had an unknown T-cell status. T cell-positive patients showed significantly higher response rates and improved survival compared to both T cell-negative patients (18/21 [86%] vs 5/22 [23%]; P < .001; median survival time, none [95% CI, undefined] vs 136.5 days [95% CI, 19 to ∞]; P = .002) and those with unknown T-cell status (18/21 [86%] vs 29/68 [43%]; P = .001; median survival time, none vs 162 days [95% CI, 66 to ∞]; P = .004). They achieved better functional outcomes (median [IQR] modified Rankin Scale score, 3 [2-4] vs 4 [3-6]; P = .009) and lower JC viral load in cerebrospinal fluid (median [IQR], 0 copies/mL [0-502.5] vs 2500 copies/mL [0-6900]; P = .01) during follow-up compared to T cell-negative patients. Immune-related adverse events were most frequent in T cell-negative patients (10/20 [50%]), including the most severe events, and least frequent in T cell-positive patients (2/20 [10%]) (P = .02).
Conclusions And Relevance:
Preexisting functional virus-specific T cells were associated with better clinical response, longer survival, and lower toxicity in PML. These findings suggest the likely importance of preexisting antiviral immunity for successful ICI therapy.
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