Uroguanylin induces electroencephalographic spikes in rats

Author:

Teixeira MDA.1,Nascimento NRF.2,Fonteles MC.3,Vale OC.4

Affiliation:

1. Federal University of Ceará, Brazil

2. State University of Ceará, Brazil

3. Mackenzie University, Brazil; Federal University of Ceará, Brazil

4. Federal University of Ceará, Brazil; Federal University of Ceará, Brazil

Abstract

Uroguanylin (UGN) is an endogenous peptide that acts on membrane-bound guanylate cyclase receptors of intestinal and renal cells increasing cGMP production and regulating electrolyte and water epithelial transport. Recent research works demonstrate the expression of this peptide and its receptor in the central nervous system. The current work was undertaken in order to evaluate modifications of electroencephalographic spectra (EEG) in anesthetized Wistar rats, submitted to intracisternal infusion of uroguanylin (0.0125 nmoles/min or 0.04 nmoles/min). The current observations demonstrate that 0.0125 nmoles/min and 0.04 nmoles/min intracisternal infusion of UGN significantly enhances amplitude and frequency of sharp waves and evoked spikes (p = 0.03). No statistical significance was observed on absolute alpha and theta spectra amplitude. The present data suggest that UGN acts on bioelectrogenesis of cortical cells by inducing hypersynchronic firing of neurons. This effect is blocked by nedocromil, suggesting that UGN acts by increasing the activity of chloride channels.

Publisher

FapUNIFESP (SciELO)

Subject

General Agricultural and Biological Sciences

Reference22 articles.

1. Effect of uroguanylin on potassium and bicarbonate transport in rat renal tubules;AMORIM JB;Canadian Journal of Physiology and Pharmacology,2006

2. Guanylin: an endogenous activator of intestinal guanylate cyclase;CURRIE MG;Proceedings of the National Academy of Sciences of the United States of America,1992

3. Technique for collecting cerebrospinal fluid in the cisterna magna of non-anesthetized rats;CONSIGLIO AR;Brain Research Protocols,2000

4. Expression of guanylin in “pars tuberalis-specific cells” and gonadotrophs of rat adenohypophysis;D'ESTE L;Proceedings of the National Academy of Sciences of the United States of America,2000

5. Natriuretic and kaliuretic activities of guanylin and uroguanylin in the isolated perfused rat kidney;FONTELES MC;American Journal of Physiology,1998

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