CAR-based therapies in systemic autoimmunity: from deep immune depletion toward durable immune reset

Systemic autoimmune diseases are sustained by self-renewing networks of autoreactive B cells, antibody-secreting cells, pathogenic T-cell programs and tissue-resident inflammatory niches. Conventional immunosuppression and biologic therapy can reduce disease activity, but often fail to produce durable drug-free remission because the immune architecture that sustains autoreactivity is suppressed rather than dismantled. CAR-based therapies have introduced a different therapeutic concept: deep interruption of autoreactive immune circuits followed by immune reconstitution. Early clinical experience, particularly with CD19-directed CAR-T cells in refractory systemic lupus erythematosus, lupus nephritis, systemic sclerosis and idiopathic inflammatory myopathies, has shown profound B-cell depletion, rapid decline of disease-associated autoantibodies and clinical remission without immediate maintenance immunosuppression in selected patients. These findings support serological reset and provide early evidence for cellular reset, but they do not yet prove durable homeostatic reset. In this Review, we propose a three-tier framework for immune reset after CAR-based therapy: serological reset, cellular reset and homeostatic reset. We use this framework to examine the mechanistic and translational uncertainties now facing the field, including the long-lived plasma-cell kinetic paradox, the distinction between peripheral depletion and tissue eradication, the uncertainty of repertoire-based claims of immune renewal, persistence of autoreactive T-cell memory, the contribution of lymphodepleting conditioning and the trade-off between pathogenic depletion and protective humoral immunity. We argue that future progress will require tissue-validated, clonally resolved and functionally informed definitions of therapeutic success. Longitudinal B-cell and T-cell tracking, paired or protocol-defined tissue analyses, assessment of tertiary lymphoid structures and plasma-cell niches, and formal evaluation of vaccine responsiveness and immune competence are, in our view, important considerations for future studies. The success of CAR-based therapy in systemic autoimmunity should ultimately be judged not by depletion depth alone, but by whether it can rebuild a stable, nonpathogenic and immunologically competent immune system.

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Publication Details

Journal
International Immunopharmacology
Published
2026-09-24
DOI
https://doi.org/10.1016/j.intimp.2026.117461
Primary Topic
CAR-T cell therapy research
Type
article
Field-Weighted Citation Impact
0.00

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article

CAR-based therapies in systemic autoimmunity: from deep immune depletion toward durable immune reset

Hengquan Wan, Baixiu Wu, Zheyi Zhou, K.-L. Wu et al.
International Immunopharmacology
CAR-T cell therapy research
article

CAR-based therapies in systemic autoimmunity: from deep immune depletion toward durable immune reset

Hengquan Wan, Baixiu Wu, Zheyi Zhou, K.-L. Wu, Si Tao, Zheng Peng, Hongyu Zhang
article en

Abstract

Systemic autoimmune diseases are sustained by self-renewing networks of autoreactive B cells, antibody-secreting cells, pathogenic T-cell programs and tissue-resident inflammatory niches. Conventional immunosuppression and biologic therapy can reduce disease activity, but often fail to produce durable drug-free remission because the immune architecture that sustains autoreactivity is suppressed rather than dismantled. CAR-based therapies have introduced a different therapeutic concept: deep interruption of autoreactive immune circuits followed by immune reconstitution. Early clinical experience, particularly with CD19-directed CAR-T cells in refractory systemic lupus erythematosus, lupus nephritis, systemic sclerosis and idiopathic inflammatory myopathies, has shown profound B-cell depletion, rapid decline of disease-associated autoantibodies and clinical remission without immediate maintenance immunosuppression in selected patients. These findings support serological reset and provide early evidence for cellular reset, but they do not yet prove durable homeostatic reset. In this Review, we propose a three-tier framework for immune reset after CAR-based therapy: serological reset, cellular reset and homeostatic reset. We use this framework to examine the mechanistic and translational uncertainties now facing the field, including the long-lived plasma-cell kinetic paradox, the distinction between peripheral depletion and tissue eradication, the uncertainty of repertoire-based claims of immune renewal, persistence of autoreactive T-cell memory, the contribution of lymphodepleting conditioning and the trade-off between pathogenic depletion and protective humoral immunity. We argue that future progress will require tissue-validated, clonally resolved and functionally informed definitions of therapeutic success. Longitudinal B-cell and T-cell tracking, paired or protocol-defined tissue analyses, assessment of tertiary lymphoid structures and plasma-cell niches, and formal evaluation of vaccine responsiveness and immune competence are, in our view, important considerations for future studies. The success of CAR-based therapy in systemic autoimmunity should ultimately be judged not by depletion depth alone, but by whether it can rebuild a stable, nonpathogenic and immunologically competent immune system.

International ImmunopharmacologyVol. 189
Liuzhou Maternal and Child Health Hospital (CN), Liuzhou General Hospital (CN), The First Affiliated Hospital of Guangxi University of Traditional Chinese Medicine (CN), Guangxi University of Chinese Medicine (CN), Fourth Affiliated Hospital of Guangxi Medical University (CN), Hangzhou Hospital of Traditional Chinese Medicine (CN), Wuzhou Red Cross Hospital (CN)
National Natural Science Foundation of China, Natural Science Foundation of Guangxi Province, Wu Jieping Medical Foundation
Zero hunger
Openalex Percentile: Top 15%
CAR-T cell therapy research
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