bioRxiv · 10.1101/832295
Cell-type specificity of neuronal excitability and morphology in the central amygdala
Abstract
Central amygdala (CeA) neurons expressing protein kinase C delta (PKC{delta}+) or Somatostatin (Som+) differentially modulate diverse behaviors. The underlying features supporting cell-type-specific function in the CeA, however, remain unknown. Using whole-cell patch-clamp electrophysiology in acute mouse brain slices and biocytin-based neuronal reconstructions, we demonstrate that neuronal morphology and relative excitability are two distinguishing features between Som+ and PKC{delta}+ CeLC neurons. Som+ neurons, for example, are more excitable, compact and with more complex dendritic arborizations than PKC{delta}+ neurons. Cell size, intrinsic membrane properties, and anatomical localization were further shown to correlate with cell-type-specific differences in excitability. Lastly, in the context of neuropathic pain, we show a shift in the excitability equilibrium between PKC{delta}+ and Som+ neurons, suggesting that imbalances in the relative output of these cells underlie maladaptive changes in behaviors. Together, our results identify fundamentally important distinguishing features of PKC{delta}+ and Som+ cells that support cell-type-specific function in the CeA.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Adke, A. P., Khan, A., Ahn, H.-S., Becker, J. J., Wilson, T. D., Valdivia, S., Sugimura, Y. K., Martinez Gonzalez, S., Carrasquillo, Y.. 2019-11-18. Cell-type specificity of neuronal excitability and morphology in the central amygdala. https://doi.org/10.1101/832295
Cite the original work for its findings. Save a collection to share your selection of sources.