Interleukin 1β Modulates Rat Subfornical Organ Neurons as a Result of Activation of a Non‐Selective Cationic Conductance
Open Access
- 1 July 2003
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 550 (1) , 113-122
- https://doi.org/10.1113/jphysiol.2003.041210
Abstract
The circumventricular organs (CVOs) are ideal locations at which circulating pyrogens may act to communicate with the CNS during an immune challenge. Their dense vasculature and fenestrated capillaries allow direct access of these pyrogens to CNS tissue without impediment of the blood‐brain barrier (BBB). One such CVO, the subfornical organ (SFO), has been implicated as a site at which the circulating endogenous pyrogen interleukin 1β (IL‐1β) acts to initiate the febrile response. This study was designed to determine the response of rat SFO neurons to IL‐1β (1 nM to 100 fM) using whole‐cell current‐clamp and voltage‐clamp techniques. We found that physiological (subseptic) concentrations of IL‐1β (1 pM, 500 fM, 100 fM) induced a transient depolarization in SFO neurons accompanied by a significant increase in spike frequency. In contrast, pharmacological (septic) concentrations of IL‐1β (1 nM) evoked a sustained hyperpolarization. While depolarizations in response to IL‐1β were abolished by treatment of cells with the IL‐1 receptor antagonist (IL‐1ra), hyperpolarizations were still observed. Voltage‐clamp analysis revealed that the majority (85 %) of SFO neurons responding to IL‐1β with depolarization (29 of 34 cells) exhibited an electrophysiological profile characterized by a dominant delayed rectifier potassium current (DIK), a conductance that we also found to be reduced to 84.4 ± 3.3 % of control by bath application of IL‐1β. In addition, using slow voltage ramps we demonstrated that IL‐1β activates a non‐selective cationic current (INSC) with a reversal potential of −38.8 ± 1.8 mV. These studies identify the cellular mechanisms through which IL‐1β can influence the excitability of SFO neurons and, as a consequence of such actions, initiate the febrile response to exogenous pyrogens.Keywords
This publication has 34 references indexed in Scilit:
- Role of the Preoptic-Anterior Hypothalamus in Thermoregulation and FeverClinical Infectious Diseases, 2000
- Production of Mice Deficient in Genes for Interleukin (IL)-1α, IL-1β, IL-1α/β, and IL-1 Receptor Antagonist Shows that IL-1β Is Crucial in Turpentine-induced Fever Development and Glucocorticoid SecretionThe Journal of Experimental Medicine, 1998
- Dissociated Adult Rat Subf ornical Organ Neurons Maintain Membrane Properties and Angiotensin Responsiveness for up to 6 DaysNeuroendocrinology, 1997
- Proadrenomedullin NH2-terminal 20 peptide inhibits the voltage-gated Ca2+ channel current through a pertussis toxin-sensitive G protein in rat pheochromocytoma-derived PC 12 cells.Journal of Clinical Investigation, 1996
- Activation of the hypothalamus-pituitary-adrenal axis by bacterial endotoxins: Routes and intermediate signalsPsychoneuroendocrinology, 1994
- Functions and mechanisms of interleukin 1 in the brainTrends in Pharmacological Sciences, 1991
- Primary structure and functional expression from complementary DNA of a human interleukin-1 receptor antagonistNature, 1990
- Interleukin-1 receptor antagonist activity of a human interleukin-1 inhibitorNature, 1990
- Central activation of thermogenesis and fever by interleukin-1β and interleukin-1α involves different mechanismsBiochemical and Biophysical Research Communications, 1989
- An HRP study of the connections of the subfornical organ of the ratJournal of Comparative Neurology, 1982