Search bioRxiv⌕ Search

Biology subjects

Bhatta, S.

Publications and source records attributed to Bhatta, S..

2 recordsLinked to original sources

Mechanobiological Specialization of Choroid Plexus Macrophages Defined by Titin Expression

Functioning both as the site of cerebrospinal fluid production and as an interface between the peripheral circulation and the central nervous system, the choroid plexus (ChP) modulates the gating of immune cells and signals from the periphery as they pass from the blood into cerebrospinal fluid. We generated a single-nucleus and spatial transcriptomic atlas of the adult human ChP, in donors with and without Alzheimers disease (AD), revealing transcriptionally and spatially distinct macrophage states. We identified a previously unrecognized population of titin-expressing (TTN+) tissue-resident macrophages characterized by coordinated activation of cytoskeletal remodeling, phagocytosis, autophagy, and inflammatory programs. Isoform-specific qPCR, protein immunofluorescence, and single-molecule FISH validated TTN expression in situ. In AD, TTN+ macrophages expand and undergo broad transcriptional rewiring, including activation of MEF2-linked mechanotransduction pathways, elevated senescence signatures, and a loss of ligand-receptor connectivity with epithelial, endothelial, and stromal partners. Collectively, our findings define a mechanosensitive macrophage program at the blood-CSF interface and uncover a TTN-associated shift in macrophage function and microenvironment integration in AD.

neuroscience↗

The LH receptor regulates hippocampal spatial memory and restores dendritic spine density in ovariectomized APP/PS1 AD mice

Activation of the luteinizing hormone receptor (LHCGR) rescues spatial memory function and spine density losses associated with gonadectomy and high circulating gonadotropin levels in females. However, whether this extends to the AD brain or the mechanisms that underlie these benefits remain unknown. To address this question, we delivered the LHCGR agonist human chorionic gonadotropin (hCG) intracerebroventricularly (ICV), under reproductively intact and ovariectomized conditions to mimic the post-menopausal state in the APP/PS1mouse brain. Cognitive function was tested using the Morris water maze task, and hippocampal dendritic spine density, A{beta} pathology, and signaling changes associated with these endpoints were determined to address mechanisms. Here we show that central LHCGR activation restored function in ovariectomized APP/PS1 female mice to wild-type levels without altering A{beta} pathology. LHCGR activation increased hippocampal dendritic spine density regardless of reproductive status, and this was mediated by BDNF-dependent and independent signaling. We also show that ovariectomy in the APP/PS1 brain elicits an increase in peripherally derived pro-inflammatory genes which are inhibited by LHCGR activation. This may mediate reproductive status specific effects of LHCGR agonism on cognitive function and BDNF expression. Together, this work highlights the relevance of the LHCGR on cognition and its therapeutic potential in the "menopausal" AD brain.

neuroscience↗