Introduction And Importance: Stevens-Johnson syndrome (SJS) is a rare and unusual hypersensitivity reaction to certain drugs like allopurinol, commonly used for treating gout. SJS is recognized by extensive necrosis and detachment of skin and mucus membranes. Pancytopenia, characterized by decreased levels of red blood cells, white blood cells and platelets, is an exceedingly rare occurrence in the rare disorder SJS.
Case Presentation: The authors present a 61-year-old male who exhibited symptoms of fever and rash for 5 days accompanied by pancytopenia and liver injury.
Clinical Discussion: The abdomen and bilateral lower extremities exhibited several well-defined dusky-colored hyperpigmented macular lesions. Initially, these lesions were small, tender, erythematous, and raised, later transitioning to a dark red. Multiple distinct ulcerations were present on the lips and buccal cavity. Additionally, there was denudation of the skin with bleeding observed between the toes of both legs. The causality was assessed as a definite adverse drug reaction according to the Naranjo and ALDEN algorithm. The patient received treatment consisting of intravenous steroid along with prophylactics antibiotics. The individual's pancytopenia was resolved without requiring any blood cells or plasma or platelet concentrate transfusion.
Conclusion: The exact pathophysiology of SJS associated with pancytopenia has not yet been fully elucidated. The authors' study hypothesized that the cause of pancytopenia in SJS could be either the direct cytotoxicity of drugs or immune-mediated damage to the bone marrow cells. Additional studies are necessary to establish the precise pathophysiology of the condition. Moreover, our study also indicates that pancytopenia can resolve in SJS without the need for blood cells or plasma or platelet concentrate transfusion. Once more, further studies are required to establish precise management strategies for managing SJS associated with pancytopenia.
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http://dx.doi.org/10.1097/MS9.0000000000002229 | DOI Listing |
J Immunol
January 2025
Center for Inflammation, Immunity and Infection, Institute for Biomedical Sciences, Georgia State University, Atlanta, GA, United States.
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Center for Translational Immunology, Benaroya Research Institute, Seattle, WA, United States.
The CD2-depleting drug alefacept (LFA3-Ig) preserved beta cell function in new-onset type 1 diabetes (T1D) patients. The most promising biomarkers of response were late expansion of exhausted CD8 T cells and rare baseline inflammatory islet-reactive CD4 T cells, neither of which can be used to measure responses to drug in the weeks after treatment. Thus, we investigated whether early changes in T cell immunophenotypes could serve as biomarkers of drug activity.
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January 2025
Department of Biological Sciences, California State University San Marcos, San Marcos, CA, United States.
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January 2025
Institute of Microbiology and Immunology, National Yang Ming Chiao Tung University, Taipei City, Taiwan.
Decoy receptor 3 (DcR3), a soluble receptor in the tumor necrosis factor receptor superfamily, regulates the functions of monocytes, macrophages, dendritic cells, and T cells. Previous studies have demonstrated that DcR3 suppresses B cell proliferation in vitro and ameliorates autoimmune diseases in animal models; however, whether and how DcR3 regulates antibody production is unclear. Using a DcR3 transgenic mouse model, we found that DcR3 impaired the T cell-dependent antigen-stimulated antibody response.
View Article and Find Full Text PDFJ Immunol
January 2025
Department of Pharmaceutical Sciences, University of Connecticut, Storrs, CT, United States.
Poliovirus receptor (PVR) ligands have gained attention as immunotherapy targets, yet their regulation remains unclear. Here, we examine the impact of PVR exposure on primary human CD8+ T cells. We used flow cytometry and Western blot analysis to quantify expression of PVR and its ligands in naïve and effector T cells and used adhesion assays and enzyme-linked immunosorbent assay (ELISA) to assess the impact of PVR on T cell adhesion and cytokine production.
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