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Published on: November 1, 2015
Effects of BAFF Neutralization on Atherosclerosis Associated With Systemic Lupus Erythematosus
Fanny Saidoune1, Guillaume Even2, Yasmine Lamri1
1Centre de Recherche sur l'Inflammation, INSERM UMR1149, CNRS ERL8252, Laboratoire d'Excellence Inflamex, Université de Paris, Paris, France.
Insights
B-cell targeted therapy for systemic lupus erythematosus (SLE) may impact atherosclerosis differently based on lipid levels. Anti-BAFF therapy can be atheroprotective or detrimental in SLE patients, depending on individual conditions.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Rheumatology
Background:
- Cardiovascular disease (CVD) is the primary cause of mortality in systemic lupus erythematosus (SLE).
- B cells are implicated in lupus pathogenesis, and anti-BAFF therapy is approved for SLE treatment.
- Mature B cells contribute to atherosclerosis, prompting investigation into BAFF neutralization's role.
Purpose of the Study:
- To evaluate the atheroprotective potential of BAFF neutralization in a mouse model and in SLE patients.
- To assess whether inhibiting BAFF-BAFF receptor signaling impacts atherosclerosis in the context of SLE.
Main Methods:
- Utilized an apolipoprotein E-knockout D227K mouse model prone to atherosclerosis and lupus.
- Administered a blocking anti-BAFF monoclonal antibody (mAb) to mice on a standard chow diet.
- Assessed carotid plaque and intima-media thickness via ultrasound in SLE patients asymptomatic for CVD.
Main Results:
- In mice, anti-BAFF mAb improved atherosclerosis in low cholesterol but worsened it in high cholesterol conditions.
- BAFF-BAFF receptor inhibition's atheroprotective effect was counteracted by BAFF-TACI signaling's proatherogenic effect on macrophages.
- In SLE patients, BAFF levels correlated with subclinical atherosclerosis, and anti-BAFF mAb had varied effects on intima-media thickness based on BMI.
Conclusions:
- The effect of anti-BAFF therapy on atherosclerosis in SLE is contingent upon the interplay between lipid-induced and B cell-induced proatherogenic factors.
- Anti-BAFF therapy may offer benefits or detriments to atherosclerosis development in SLE, necessitating a personalized approach.
Objective:
Cardiovascular disease (CVD) is the leading cause of death in systemic lupus erythematosus (SLE). B cells play a key role in the pathogenesis of lupus, and anti-BAFF therapy has been approved for use in SLE. Since mature B cells also promote atherosclerosis, we undertook this study to evaluate, in a mouse model and in SLE patients, whether BAFF neutralization has an atheroprotective effect in SLE.
Methods:
The effect of BAFF on atherosclerosis associated with lupus was investigated in the atherosclerosis/lupus-prone apolipoprotein E-knockout D227K mouse model and in a cohort of SLE patients. Mice were treated with a blocking anti-BAFF monoclonal antibody (mAb), while fed a standard chow diet. Carotid plaque and carotid intima-media thickness were assessed by ultrasound at baseline and during follow-up in SLE patients who were asymptomatic for CVD.
Results:
Anti-BAFF mAb in ApoE-/- D227K mice induced B cell depletion, efficiently treated lupus, and improved atherosclerosis lesions (21% decrease; P = 0.007) in mice with low plasma cholesterol levels but worsened the lesions (17% increase; P = 0.06) in mice with high cholesterol levels. The atheroprotective effect of the BAFF-BAFF receptor signaling inhibition on B cells was counterbalanced by the proatherogenic effect of the BAFF-TACI signaling inhibition on macrophages. In SLE patients, blood BAFF levels were associated with subclinical atherosclerosis (r = 0.26, P = 0.03). Anti-BAFF mAb treatment had a differential effect on the intima-media thickness progression in SLE patients depending on body mass index.
Conclusion:
Depending on the balance between lipid-induced and B cell-induced proatherogenic conditions, anti-BAFF could be detrimental or beneficial, respectively, to atherosclerosis development in SLE.
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