Aug 2026· Brain Research· Vol 1890, pp. 150507 - 150507· 0 citations· 40 references
Medicine
TL;DR
It is indicated that PV interneurons are most likely to have PNNs in layers 5/6 of the prelimbic cortex, but species differences suggest caution in designing and interpreting experiments that manipulate PNNs, particularly when generalizing between rat and mouse models.
Abstract
Recent work has shown the importance of perineuronal nets (PNNs) in modulating neuronal function and plasticity. Functional studies increasingly manipulate PNNs to probe their role in learning and memory, yet interpreting these manipulations requires knowing which cell types PNNs surround, information that remains incomplete for several brain regions. This study focuses on the prelimbic cortex to determine the percentage of specific interneurons and pyramidal cells that are surrounded by PNNs in male rats and mice. We used immunohistochemistry to assess prelimbic cortex cells containing parvalbumin (PV), glutamate decarboxylase (GAD65/67), and/or calcium kinase II (CamKII), and Wisteria floribunda agglutinin to identify PNNs. Cells with PV, GAD65/67 and/or CamKII were counted and the percentage with PNNs was calculated. Among the cell types examined, PV-expressing interneurons showed the highest frequency of PNN association in the prelimbic cortex of both rats and mice, followed by GAD65/67-expressing interneurons. No CamKII-positive cells had PNNs in rats or mice. PV-only and GAD-only cells were much more likely to have PNNs in mice than in rats. In both species, a small percentage of PNNs surround cells that had no detectable immunolabeling. These findings indicate that PV interneurons are most likely to have PNNs in layers 5/6 of the prelimbic cortex, but species differences suggest caution in designing and interpreting experiments that manipulate PNNs, particularly when generalizing between rat and mouse models.
These findings rectify long-standing models that misattribute closure of the critical period to PNNs and identify that aggrecan expressed by excitatory neurons resident in the surrounding neuropil limits visual plasticity.
Emily C. Crouse, Thomas C. Brown, Xiao-Kuang Ma et al.· bioRxiv· 0 citations
These findings identify Dlx5/6 as regulators of adult PV interneuron stability, linking extracellular matrix homeostasis to synaptic organization and cortical network dynamics, and provides a new mechanistic framework connecting Dlx5/6 function to PV-related pathological phenotypes, including neuropsychiatric disorders...
Abstract GABAergic interneurons play a central role in shaping cortical microcircuit function, yet the anatomical organization of major interneuron populations across different subdivisions of the human prefrontal cortex remains poorly characterized. The present study examined the laminar distribution and regional orga...
Ivan Banovac, M. Baković, Davor Mayer et al.· Journal of Anatomy· 0 citations
Methamphetamine (MA) addiction is characterized by persistent drug-associated memory and high relapse risk. Perineuronal nets (PNNs), which mainly surround PV interneurons, are specialized extracellular matrix structures involved in synaptic stabilization and memory regulation. Our previous studies have shown that PNNs...
OBJECTIVE
The striate cortex (V1) and the adjacent area prostriata (Pro) are key components of visual cortical organization. In the domestic cat, however, the cytoarchitectural and chemoarchitectural features of the medial V1-presubiculum (Prs) transition remain incompletely defined, and the anatomical relationship bet...
Da Chen, Jun-Jie Liu, Cairu Li et al.· Brain Research· 0 citations
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