Search bioRxiv⌕ Search

Biology subjects

Tebar, A. R.

Publications and source records attributed to Tebar, A. R..

2 recordsLinked to original sources

Identification of TREK channels in mouse intracardiac ganglion neurons

The intracardiac nervous system is a complex neural network formed by a diffuse plexus, the so-called intracardiac ganglion (ICG). These ganglia locally innervate and control heart function, but little is known about how ICG neuronal activity is regulated. While various ionic currents have been characterized in cardiac tissue, the expression and role of TREK channels in ICG neurons remain unexplored. TWIK-related K+ (TREK) channels, members of the two-pore domain potassium channel family, are essential regulators of neuronal membrane resting potential and excitability, with recognized neuroprotective functions. In this study, we have characterized different ionic currents present in mouse ICG neurons, including tetrodotoxin-sensitive Na currents, delayed K+ rectifiers, Ca+2-dependent K currents and A, H and M currents. Notably, we provide the first evidence of functional TREK channel expression in these neurons. Our findings suggest that TREK channels contribute to excitability control and cellular homeostasis in ICG neurons, underscoring their potential as therapeutic targets for cardiac disorders. KEY POINTS- This study provides the first evidence of functional TREK channel expression in ICG neurons. - Comprehensive profiling of ionic currents shaping excitability in ICG neurons. - Neuroprotective TREK channels might emerge as potential therapeutic targets for cardiac disorders.

neuroscience↗

Upregulation of voltage-gated potassium channels in peripheral blood mononuclear cells: a new approach to multiple sclerosis treatment

Multiple sclerosis (MS) involves immune dysregulation and abnormal ion channel function. This study investigated the expression and function of voltage-gated potassium (Kv) channel isoforms (Kv1.1, Kv1.2, Kv1.3, Kv1.6, Kv4.2, Kv4.3, Kv7.2) in peripheral blood mononuclear cells (PBMCs) and lymphocytes from MS patients (remittent-recurrent) compared to controls. We found an upregulation of in six out of seven Kv isoforms in PBMCs from MS patients, with sex-specific differences observed (female showing a more pronounced upregulation of specific isoforms). Electrophysiological analysis of CD3+ T lymphocytes showed no significant differences, while CD19+ B lymphocytes displayed a notable decrease in outward current density. These findings suggest potential variations in Kv channel function across immune cell types and highlight the need for further exploration of their roles in MS pathogenesis, particularly within B lymphocytes and considering sex-based considerations.

molecular biology↗