Investigating Th1 Cell Positioning and Cross-Regulation with IL-4 in Immune Defense 2257324
Abstract
Abstract Introduction Leishmania major (L.major) is an intracellular parasite that causes cutaneous leishmaniasis, a disease in which the balance between the response of Th1(protective) and Th2 (suppressive) determines the outcome of infection. While Th1-derived interferon-γ (IFN-γ) activates infected phagocytes, Th2-derived interleukin-4 (IL-4) suppresses Th1 activity and aggravates parasite persistence. The way in which IL-4 shapes the spatial organization and dynamics of effector T cells within inflamed tissue, however, remains enigmatic. Methods In this study we employed the OVA/CFA model, where CXCL10-rich immune-niches that optimize Th1 activation have been well described, as a mechanistic proxy for L. major infection to examine how IL-4 shapes Th1 motility and niche organization. Results Neutralizing IL-4 prior to immune-cluster formation markedly increased T-cell motility, did not alter CXCL10 expression, and was associated with more dispersed and less confined immune aggregates. In contrast, blocking IL-4 after niches had formed reduced T-cell motility and converted the clusters into large chemokine-dense hubs. Conclusion These findings reveal that IL-4 may exert distinct, phase-specific control over tissue immunity. Early IL-4 confines emerging immune niches and limits Th1 movement, while late IL-4 disperses established niches and contributes to immune resolution. Together, these findings identify IL-4 as a dynamic regulator of spatial immune architecture and provide a framework for understanding how IL-4 shapes Th1 positioning and cross-regulation during L. major infection. This offers insights that may guide new strategies to enhance protective immunity against parasitic infections. Funding Source n/a Topic Categories Cellular Adhesion, Migration, and Inflammation (CAM)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (3)
Francesca Byun
Cornell Univ. Col. of Vet. Med
Noor Bala
Cornell University
Alex Mcgurk
Cornell University