Single-cell transcriptomic signatures of T cells associated with rituximab responsiveness in idiopathic nephrotic syndrome

Rituximab (RTX) is increasingly used in steroid-dependent minimal change disease, a leading cause of idiopathic nephrotic syndrome (INS), yet predictors of response remain unclear. Although RTX primarily targets B cells, T cells are also implicated in INS pathogenesis. We investigated RTX-induced T cell dynamics by single-cell RNA sequencing/T cell receptor profiling of peripheral T cells from three responders and three non-responders before and after RTX treatment. Responders exhibited RTX-driven broad transcriptomic remodeling, accompanied by reduced exhausted CD8 + T cells and clonal expansion of CD4 + cytotoxic T cells with enhanced oxidative phosphorylation (OXPHOS) signatures, whereas non-responders showed marginal changes. In a separate cohort, reactive oxygen species (ROS) levels tended to be higher in responders, and declined post-RTX, collectively associating enhanced mitochondrial activity with favorable response. Reanalysis of childhood INS data supported altered B–T cell crosstalk and T cell metabolism. Together, T cells may influence RTX responsiveness, warranting further biomarker studies.

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Publication Details

Journal
iScience
Published
2026-08-24
DOI
https://doi.org/10.1016/j.isci.2026.117237
Primary Topic
Renal Diseases and Glomerulopathies
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article
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article

Single-cell transcriptomic signatures of T cells associated with rituximab responsiveness in idiopathic nephrotic syndrome

Asuka Horinouchi, Seiko Yoshino, Chikao Onogi, Koichi Ogami et al.
iScience
Renal Diseases and Glomerulopathies
article

Single-cell transcriptomic signatures of T cells associated with rituximab responsiveness in idiopathic nephrotic syndrome

Asuka Horinouchi, Seiko Yoshino, Chikao Onogi, Koichi Ogami, Kazuhiro Furuhashi, Shintaro Komatsu, Hiroshi Suzuki, Akihito Tanaka, Yohei Sugimoto, Eri Koshi-Ito, Yu Watanabe, Shoichi Maruyama
article en

Abstract

Rituximab (RTX) is increasingly used in steroid-dependent minimal change disease, a leading cause of idiopathic nephrotic syndrome (INS), yet predictors of response remain unclear. Although RTX primarily targets B cells, T cells are also implicated in INS pathogenesis. We investigated RTX-induced T cell dynamics by single-cell RNA sequencing/T cell receptor profiling of peripheral T cells from three responders and three non-responders before and after RTX treatment. Responders exhibited RTX-driven broad transcriptomic remodeling, accompanied by reduced exhausted CD8 + T cells and clonal expansion of CD4 + cytotoxic T cells with enhanced oxidative phosphorylation (OXPHOS) signatures, whereas non-responders showed marginal changes. In a separate cohort, reactive oxygen species (ROS) levels tended to be higher in responders, and declined post-RTX, collectively associating enhanced mitochondrial activity with favorable response. Reanalysis of childhood INS data supported altered B–T cell crosstalk and T cell metabolism. Together, T cells may influence RTX responsiveness, warranting further biomarker studies.

iScienceVol. 29(9)
Nagoya University Hospital (JP), The Cancer Institute Hospital (JP), Nagoya University (JP)
Openalex Percentile: Top 10%
Renal Diseases and Glomerulopathies
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