Search bioRxiv⌕ Search

bioRxiv · 10.64898/2026.02.11.705266

Functional characterization of the lateral septal calbindin neurons in maternal care

Abstract

The ventral subdivision of the lateral septum (LSv) is a forebrain region linked to maternal care with a high density of calbindin-containing (Cb+) neurons whose properties, connections and functions remain unknown. In the present study, it was established that the majority of pup-activated neurons are inhibitory Cb+ in the LSv and the density of activated neurons in the LSv is close to that of the medial preoptic area (MPOA), a central brain area in maternal care regulation. Electrophysiological recordings of LSvCb+ and LSvCb- neurons revealed that LSvCb+ neurons exhibited higher membrane resistance, lower spike amplitude and rise slope compared to LSvCb- neurons. The chemogenetic inhibition of LSvCb+ neurons led to reduction in pup-licking behavior without affecting other maternal behavior or eliciting anxiety- or depression-like behavior. To regulate licking behavior, LSvCb+ neurons connect with other maternally involved brain areas. Anterograde and retrograde tract-tracing revealed that two-thirds of the MPOA-projecting LSv neurons are Cb+. A subset of neurons within the posterior intralaminar nucleus (PIL) in the lateral thalamus, a proposed relay nucleus of tactile and auditory information from the pups, express a maternally induced neuropeptide, the parathyroid hormone 2 (PTH2). Their fibers closely apposed Cb+ neurons in the LSv. Using double labeling, we also identified PTH2 receptors on LSvCb+ neurons, which are presumably activated by PTH2 released from nearby terminals. Using electron microscopy, we confirmed synaptic connection between PTH2+ fibers and inhibitory neurons in the LSv. The results provide evidence that Cb+ neurons of the LSv are components of the maternal circuitry. Significance StatementMaternal care depends on pup cues, but many responsible circuit elements remain uncharacterized. We identify inhibitory calbindin-expressing neurons in the ventral subdivision of the lateral septum (LSv) containing a major pup-activated neuronal population with distinctive electrical properties. Their selective inhibition reduced pup-licking without affecting other maternal, anxiety- or depression-like behaviors, suggesting a specific role in caregiving. Detailed circuit tracing data revealed that a significant proportion of LSv calbindin-positive neurons extend their projections to the medial preoptic area, a well-established core maternal regulatory region. We further demonstrate synaptic input from maternally relevant parathyroid hormone 2 (PTH2)-expressing thalamic afferents onto LSv inhibitory neurons, possibly conveying pup stimuli. The data suggest that LSv calbindin neurons are key nodes in maternal circuitry.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Szendi, V., Puska, G., Egyed, M., Takacs, M. M., Bartok, S., Puskas, J., Varro, P., Szucs, A., Dobolyi, A.. 2026-02-12. Functional characterization of the lateral septal calbindin neurons in maternal care. https://doi.org/10.64898/2026.02.11.705266

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Enhanced cortical tracking of unfamiliar languages in both monolinguals and bilinguals

Humans routinely encounter speech in languages they have never heard, yet how the brain responds to such input and whether bilingual experience shapes this response remains unknown. Here, we used electroencephalography (EEG) and temporal response function (TRF) modeling to examine cortical tracking of the speech envelope in 24 English-monolingual and 24 English-Mandarin bilingual adults. Participants listened to naturally produced continuous speech in three languages: English (familiar to all), Mandarin (familiar to bilinguals only), and Vietnamese (unfamiliar to all). We report two main findings. First, both monolinguals and bilinguals showed enhanced cortical tracking for unfamiliar relative to familiar languages, evidenced by higher EEG prediction accuracy (PA). Monolinguals showed enhanced tracking for both Mandarin and Vietnamese, whereas bilinguals showed enhancement only for Vietnamese, consistent with Mandarin being a familiar language for this group. This finding suggests that enhanced cortical encoding of unfamiliar speech is a general property of the listening brain, not a signature of listening to a non-native language or reduced language proficiency. Second, bilinguals strikingly showed stronger cortical tracking than monolinguals overall, in both PA and TRF peak weights, with the TRF peak weight advantage present across all three languages, suggesting a difference in how bilingual experience shapes the neural encoding of speech. These findings have implications for understanding how the brain navigates the linguistic diversity of everyday life in an increasingly global, multilingual world.

neuroscience↗

Endosomal pH Triggers Amyloid β Oligomerization and Maladaptive Phenotypic Plasticity in Alzheimers Disease

Endosomal dysfunction is a presymptomatic hallmark of neurodegeneration. Recent evidence highlights dysregulation of endosomal pH as a central pathogenic hub in Alzheimer's disease (AD); however, the mechanisms linking pH shifts to neurodegeneration remain incompletely defined. Here, we use a quantitative model of endosomal acidification driven by proton pumping via the vacuolar ATPase, proton leak via the endosomal Na/H exchanger NHE6, and other ion-regulating elements. The model recapitulates how downregulation of NHE6 in AD promotes endosomal hyperacidification, potentially triggering maladaptive phenotypic plasticity, an initially adaptive response that becomes pathological. Analysis of human brain datasets reveals reciprocal enrichment of NHE6 in neurons and the related NHE9 in glia, with NHE6 co-expression networks enriched for synaptic signalling. Systematic curation of NHE6 patient variants indicates that loss-of-function is associated with late regression, consistent with progressive endosomal hyperacidification, supporting a conceptual framework where early compensation transitions to neurodegeneration. Mathematical analyses calibrated for neuronal endosomes reveal a saturable relationship between luminal pH and NHE6 dosage, with threshold-like behaviour below ~50% expression that hyperacidifies endosomes, correlating with AD severity. Our model suggests this pH shift may exponentially accelerate A{beta} oligomerization and enhance {beta}-secretase activity. Furthermore, A{beta} oligomerization estimates correlate with dysregulation of calcium signalling and synaptic dysfunction. Model findings are compared with experimental results from NHE6-null mice and a cell culture model of AD. Drawing parallels to cancer, we propose that endosomal pH serves as a conserved regulator of adaptive-to-maladaptive transitions. Restoring physiological endosomal pH may offer a therapeutic window to prevent irreversible neurodegeneration in AD.

neuroscience↗

Diet Quality from Midlife to Later Life Relates to Late-Life Brain Health and Verbal Memory in the SG70 Cohort

Healthy diet across adulthood is associated with better late-life cognition, but how life-course diet quality relates to brain integrity, and whether brain measures mediate diet-cognition associations, remains unclear as studies with long-term diet records and detailed neurocognitive measures are lacking. We studied 892 participants from the SG70 study, nested within the Singapore Chinese Health Study, with adherence to the Dietary Approaches to Stop Hypertension diet (DASH) assessed between 1993--2025. Dietary quality during midlife, ages 44--55 years, and early elderhood, ages 61--73 years, was examined in relation to seven cognitive domains, brain morphometry, white matter hyperintensities and free-water MRI markers in late life, ages 68--82 years. Higher DASH adherence at both life stages was significantly associated with better late-ife verbal memory, and remained so when both life stages were modelled jointly. Higher midlife DASH adherence was associated with greater white matter volume in association tracts, whereas higher early-elderhood DASH adherence was associated with lower white matter hyperintensity (deep basal ganglia and anterior periventricular regions) and lower frontal and occipital grey matter free water, suggesting lower neurovascular and inflammatory burden. Mediation analyses indicated that white matter volume accounted for 12.3% in mediating the midlife DASH--verbal memory association, while cortical free water accounted for 12.5% in mediating the early-elderhood DASH--verbal memory association. Importantly, participants whose DASH adherence improved from lower adherence in midlife to better adherence in later life showed better verbal memory and more favourable brain integrity than those with persistently low adherence. These findings identify midlife and post-midlife diet quality as modifiable life-course exposures associated with late-life cognitive resilience through differences in macrostructural and microstructural brain integrity.

neuroscience↗