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Gupte, A. S.

Publications and source records attributed to Gupte, A. S..

2 recordsLinked to original sources

The circadian clock regulates scavenging of fluid-borne substrates by brain border-associated macrophages

Circadian disruptions perturb the brain and immune system and increase the risk of developing Alzheimers Disease (AD), yet whether this involves dysregulation of brain immunity remains less clear. Here, we perform single-cell RNA sequencing of the brain immune compartment around the day-night cycle and identify brain border-associated macrophages (BAMs) as highly rhythmic cells. During the rest phase, we find that BAMs exhibit coordinated upregulation of endocytic genes and enhanced uptake of extracellular fluid-borne material including amyloid-beta (A{beta}). Rhythmicity in BAM scavenging is regulated by the clock gene Bmal1, mediated by the endocytic receptor CD206, and perturbed with age. In a mouse model of AD, we show that deletion of Bmal1 in BAMs worsens perivascular and leptomeningeal A{beta} plaque burden. Our results identify endocytosis as a specialized and rhythmic BAM function and identify perturbed timing of brain border immune functions as a potential mechanism by which circadian disruptions precipitate amyloidosis.

neuroscience↗

Early-life stromal niches orchestrate B lymphopoiesis at the brain's borders

The dura mater serves as a critical immunological niche for the central nervous system, yet the mechanisms governing the emergence of this niche in early life remain understudied. Here, we chart the trajectory of dural immune development, uncovering a distinctive function for the murine dura as a transient niche for B lymphopoiesis in the early-postnatal window. Shared embryonic progenitors initiate dural B cell development in concert with a multi-organ wave of extramedullary lymphopoiesis that contributes distinctively to the peripheral B cell pool. In the dura, B cells develop locally in discrete sinus-proximal foci, occupying an anatomically defined and developmentally restricted fibroblast niche. Sinus-proximal fibroblasts express the pro-hematopoietic chemokine CXCL12, and local deletion of this crucial factor severely impairs dural B lymphopoiesis. These data reveal a critical function for dural fibroblasts in shaping the early-life B cell compartment and provide a model for how extramedullary niches may support early-life leukocyte production.

immunology↗