bioRxiv Science⌕ Search

Biology subjects

Malpighi, C.

Publications and source records attributed to Malpighi, C..

2 recordsLinked to original sources

A neurovascular template guides the spatial and functional compartmentalization of the adrenal gland

The vasculature adapts to tissue demands, but whether it can instruct spatial tissue organization remains unclear. In the developing adrenal gland, we uncover a neurovascular mechanism that actively establishes and preserves compartment boundaries between cortex and medulla. Peripheral nerves secrete Semaphorin3C, signaling through PlexinD1 on endothelial cells to locally antagonize VEGF-driven angiogenesis from cortical cells, sculpting distinct vascular domains that guide hormone-producing cells to their correct territories. Disruption of this balance --via denervation or loss of Semaphorin3C-PlexinD1 signaling-- leads to ectopic vascularization of the medulla, which adopts a cortex-like vascular network. This vascular remodeling enables cortical cells invasion of medullary territories, blurring compartment boundaries and triggering a phagocytic macrophage response that reflects pathological hijacking of a postnatal morphogenesis program. Our findings reveal that region-specific vascular scaffolds, shaped by neurovascular cues, serve as instructive templates for organ architecture. Failure of neurovascular signaling can thus trigger a cascade of structural collapse that undermines tissue integrity and homeostasis, driving pathological remodeling.

developmental biology↗

T cell-derived IFN-γ Suppresses T Follicular Helper Cell Differentiation and Antibody Responses during Viral Infections

CD4+ T cells play a critical role in antiviral humoral and cellular immune responses. We have previously reported that subcutaneous lymphocytic choriomeningitis virus (s.c. LCMV) infection is characterized by a stark compartmentalization of CD4+ T cells, leading to strong TH1 polarization but virtually absent T follicular helper (TFH) cells, a key driver of humoral immunity. Here, we investigated the mechanisms responsible for this impaired TFH differentiation. We found that T-bet+ cells induced by s.c. LCMV infection encompass a TH1 subset expressing Granzyme-B (GzmB) and a Tcf-1+ subset that retains the potential for TFH differentiation without expressing mature TFH markers. Interestingly, IFN-{gamma} blockade enables full differentiation of Tcf-1+ cells into TFH, formation of germinal centers and increased antibody production. Of note, the suppression of TFH cells by IFN-{gamma} is not directly mediated through CD4+ T cells but rather involves another cell type, likely dendritic cells (DCs). Our study provides novel insights into the mechanisms directing early CD4+ T cell polarization and affecting humoral responses to viruses, laying a foundation for the development of effective vaccine strategies.

immunology↗