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Generation of Induced Regulatory T Cells from Primary Human Naïve and Memory T Cells
Published on: April 16, 2012
Low-dose IL-2 therapy for immune-related adverse events via Tfh/Treg balance modulation: a prospective cohort and
Yifan Wang1,2,3, Zhening Zhang3, Yufei Li1
1Department of Rheumatology and Immunology, Peking University People's Hospital, Beijing Key Laboratory for Rheumatism Mechanism and Immune Diagnosis (BZ0135), 11 Xizhimen South St, Beijing, 100044, People's Republic of China.
Background:
Immune-related adverse events (irAEs) are associated with anti-PD-1/PD-L1 therapy in gastrointestinal cancers. Altered phenotypes and frequencies of T cell subsets play a critical role in irAEs. This study characterized the Tfh/Treg balance in irAEs patients and assessed the efficacy of LDIL-2 therapy in mouse models.
Methods:
A prospective study evaluating the immunological characteristics of 26 gastrointestinal cancer patients through both cellular and transcriptomic analyses before and after anti-PD-1/PD-L1 therapy was performed. Patients were categorized into two groups: the AE group (patients who developed irAEs during the follow-up period) and the NAE group (patients who did not). Meanwhile, MRL/MpJ-Faslpr mice, a lupus mouse model, and tumor-bearing C57BL/6 J mice were used to evaluate the efficacy of LDIL-2 in treating anti-PD-L1 induced irAEs and its impact on antitumor effectiveness.
Results:
Our study discovered that in AE patients, Tfh-related genes were significantly upregulated during the early stages of anti-PD-1/PD-L1 therapy (IL-21: p < 0.01; PDCD1: p < 0.05), whereas the upregulation of Treg-related genes was less pronounced compared to Tfh-related genes. This distinction was not observed in NAE patients. Flow cytometry results further confirmed a substantial increase in the Tfh/Treg ratio in AE patients during the early stages of therapy (p < 0.001), a phenomenon absent in NAE patients. In MRL/MpJ-Faslpr mice, anti-PD-L1 therapy induced a shift in the Tfh/Treg ratio, along with severe organ inflammatory lesions and elevated anti-dsDNA antibody levels. In contrast, LDIL-2 treated mice maintained a balanced Tfh/Treg ratio, exhibiting significantly fewer organ inflammatory lesions and reduced anti-dsDNA production. Furthermore, in tumor-bearing mice, LDIL-2 did not impair the antitumor efficacy of anti-PD-L1 therapy.
Conclusions:
Our study underscores the importance of Tfh/Treg balance in the development of irAEs and demonstrates the potential of LDIL-2 as a therapeutic option for irAEs, providing a promising alternative to traditional immunosuppressive therapies for managing irAEs.
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