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Varro, P.

Publications and source records attributed to Varro, P..

2 recordsLinked to original sources

Functional characterization of the lateral septal calbindin neurons in maternal care

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.

neuroscience↗

Anti-glutamatergic effects of three lignan compounds: arctigenin, matairesinol and trachelogenin - An ex vivo study on rat brain slices

Arctigenin is a bioactive dibenzylbutyrolactone-type lignan exhibiting various pharmacological activities. The neuroprotective effects of arctigenin were demonstrated to be mediated via inhibition of AMPA/KA type glutamate receptors in the somatosensory cortex of the rat brain. The aim of this study was to compare the effects of arctigenin with matairesinol and trachelogenin on synaptic activity in ex vivo rat brain slices. Arctigenin, matairesinol and trachelogenin were isolated from Arctium lappa, Centaurea scabiosa and Cirsium arvense, respectively, and applied on brain slices via perfusion medium at the concentration range of 0.5-40 M. The effects of the lignans were examined in the CA1 hippocampus and the somatosensory cortex by recording electrically evoked field potentials. Arctigenin and trachelogenin caused a significant dose-dependent decrease in the amplitude of hippocampal population spikes (POPS) and the slope of excitatory postsynaptic potentials (EPSPs), whereas matairesinol (1 M and 10 M) decreased EPSP slope but had no effect on POPS amplitude. Trachelogenin effect (0.5 M, 10 M, 20 M) was comparable to arctigenin (1 M, 20 M, 40 M) (p > 0.05). In the neocortex, arctigenin (10 M, 20 M) and trachelogenin (10 M) significantly decreased the amplitude of evoked potential early component, while matairesinol (1 M and 10 M) had no significant effect (p>0.05). The results suggest that trachelogenin and arctigenin act via inhibition of AMPA/KA receptors in the brain and trachelogenin has a higher potency than arctigenin. Thus, trachelogenin and arctigenin could serve as lead compounds in the development of alternative neuroprotective drugs.

pharmacology and toxicology↗