Divergent proviral load trajectories and clonal dynamics of HTLV-1-infected cells during antirheumatic therapy in rheumatoid arthritis

The optimal management of human T-cell leukemia virus type 1 (HTLV-1) carriers requiring long-term immunomodulatory therapy remains unclear. Patients with rheumatoid arthritis (RA) living with HTLV-1 frequently receive antirheumatic therapy, raising concerns regarding the potential risk of adult T-cell leukemia/lymphoma (ATL) development. In this multicenter longitudinal cohort study, we analyzed HTLV-1-positive patients with RA enrolled in a Japanese registry. Patients were followed for 5 years while receiving antirheumatic therapy. Serial HTLV-1 proviral load (PVL) measurements, HTLV-1 Analysis System (HAS)-Flow immunophenotyping, and RAISING-based clonality analyses were performed. Among 56 patients, PVL remained stable in most cases, whereas approximately one-third showed progressive increases during follow-up. Increasing PVL was associated with expansion of CADM1 + CD7− CD4 + infected T cells. RAISING analyses demonstrated increased clonality and progressive dominance of pre-existing infected-cell clones in a subset of patients with increasing PVL. In contrast, patients with stable PVL largely maintained polyclonal infected-cell populations. Clonal expansion showed little temporal association with treatment modification. In HTLV-1-infected patients receiving antirheumatic therapy, PVL increases may reflect selective expansion of pre-existing infected T-cell clones in a subset of patients rather than direct pharmacologic effects. Longitudinal monitoring of infected-cell dynamics may help identify clonal evolution associated with increased ATL risk during immunomodulatory therapy.

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Journal
Retrovirology
Published
2026-09-12
DOI
https://doi.org/10.1186/s12977-026-00686-5
Primary Topic
T-cell and Retrovirus Studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Divergent proviral load trajectories and clonal dynamics of HTLV-1-infected cells during antirheumatic therapy in rheumatoid arthritis

Chihiro Iwao, Yayoi Hashiba, Masumichi Saito, Shoichi Fukui et al.
Retrovirology
T-cell and Retrovirus Studies
article

Divergent proviral load trajectories and clonal dynamics of HTLV-1-infected cells during antirheumatic therapy in rheumatoid arthritis

Chihiro Iwao, Yayoi Hashiba, Masumichi Saito, Shoichi Fukui, Risa Kudou, Tomoo Sato, Kousho Iwao, Kunihiko Umekita, Yoshihisa Yamano, Yorifumi Satou, Toshihiko Hidaka, Masatoshi Kimura, Kenji Sugata, M Murai, Shunichi Miyauchi, Katsumi Kawano, Atsushi Kawakami, Ryota Gotou, Yuuki Hashikura
article en

Abstract

The optimal management of human T-cell leukemia virus type 1 (HTLV-1) carriers requiring long-term immunomodulatory therapy remains unclear. Patients with rheumatoid arthritis (RA) living with HTLV-1 frequently receive antirheumatic therapy, raising concerns regarding the potential risk of adult T-cell leukemia/lymphoma (ATL) development. In this multicenter longitudinal cohort study, we analyzed HTLV-1-positive patients with RA enrolled in a Japanese registry. Patients were followed for 5 years while receiving antirheumatic therapy. Serial HTLV-1 proviral load (PVL) measurements, HTLV-1 Analysis System (HAS)-Flow immunophenotyping, and RAISING-based clonality analyses were performed. Among 56 patients, PVL remained stable in most cases, whereas approximately one-third showed progressive increases during follow-up. Increasing PVL was associated with expansion of CADM1 + CD7− CD4 + infected T cells. RAISING analyses demonstrated increased clonality and progressive dominance of pre-existing infected-cell clones in a subset of patients with increasing PVL. In contrast, patients with stable PVL largely maintained polyclonal infected-cell populations. Clonal expansion showed little temporal association with treatment modification. In HTLV-1-infected patients receiving antirheumatic therapy, PVL increases may reflect selective expansion of pre-existing infected T-cell clones in a subset of patients rather than direct pharmacologic effects. Longitudinal monitoring of infected-cell dynamics may help identify clonal evolution associated with increased ATL risk during immunomodulatory therapy.

Retrovirology
University of Miyazaki (JP), St. Marianna University School of Medicine (JP), Hokkaido University (JP), National Institute of Infectious Diseases (JP), University of Miyazaki Hospital (JP), Nagasaki University Hospital (JP), Nagasaki University (JP), Kumamoto University (JP)
Japan Agency for Medical Research and Development, Ministry of Health, Labour and Welfare, Japan Society for the Promotion of Science
Good health and well-being
Openalex Percentile: Top 17%
T-cell and Retrovirus Studies
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