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D Stojić

Publications and source records attributed to D Stojić.

10 recordsLinked to original sources

Carbachol-induced oxygen consumption in slices from developing rat submandibular and parotid glands.

In contrast to the submandibular gland, the developing rat parotid gland shows refractoriness to cholinergic secretagogues until 2 wks of age. To assess the underlining mechanism of this refractoriness, I investigated changes in oxygen consumption as a function of animal age in slices from rat submandibular and parotid glands, measuring both basal and carbachol-stimulated levels. The oxygen consumption was determined by a direct manometric method in the Warburg apparatus. Carbachol-induced oxygen uptake in submandibular gland slices was observed by 1 day of age and reached the adult level of stimulation by 3 wks of age. In the parotid gland, carbachol failed to stimulate oxygen uptake in the early post-natal period, and the first response was detected at 2 wks of age, reaching the adult level at 4 wks of age. Para-fluorohexahydro-sila-diphenidol (pFHHSiD), a selective M3 antagonist, inhibited carbachol-induced oxygen uptake in both glands, while pirenzepine, a selective M1 antagonist, had no effect, suggesting that the M3 muscarinic receptors are involved in this process. The respiratory effect of carbachol, in both glands, was inhibitable by ouabain and, to a lesser extent, by furosemide, indicating that carbachol-enhanced oxygen uptake is due to Na,K-ATPase and that the furosemide-sensitive co-transport of Na+ entry is underdeveloped in immature cells. The ouabain-sensitive Na,K-ATPase activity in the parotid gland increased from birth until 28 days of age. At the time of parotid gland refractoriness to carbachol, Ca2+ ionophore A23187 caused an increase of oxygen uptake only in the presence of extracellular Ca2+. In the presence of carbachol, the effect of ionophore was significantly higher than that of ionophore alone. These results raise the possibility that the refractoriness of the parotid gland to carbachol is due to the inability of carbachol to increase Ca2+ uptake rather than to the lack of distal limb, which resides on the pathway from receptor stimulation to Na,K-ATPase activation.

Age Factors

Differentiation of alpha adrenoceptors mediating increase of oxygen consumption in rat submandibular salivary gland slices.

Clonidine, noradrenaline and adrenaline (in the presence of propranolol), but not phenylephrine and methoxamine, stimulated an increase in the oxygen consumption of these slices that was blocked by yohimbine but not by prazosin. The stimulation was inhibited by ouabain and required the presence of Ca2+ in the incubation medium. The calcium ionophore A 23187 stimulated oxygen consumption in the tissue slices and enhanced the respiratory effect of clonidine. Atropine and (D-Pro2, D-Trp7.9)-substance P failed to block the respiratory response to clonidine in concentrations that inhibited the respiratory effects of carbachol and substance P, respectively. Release of acetylcholine from the unstimulated gland slices was reduced by clonidine or Ca2+ omission. Yohimbine prevented the clonidine effect and stimulated acetylcholine resting release. Nifedipine did not affect either the release of acetylcholine or the clonidine-induced reduction of acetylcholine release but blocked the oxygen uptake due to clonidine or to release acetylcholine.

Acetylcholine

Oxygen consumption mediated by M2 muscarinic receptors in rat salivary glands.

Carbachol and oxotremorine stimulated the consumption of oxygen in rat parotid, submandibular, and sublingual gland slices in a dose-dependent manner. Their actions were abolished by atropine and nifedipine but not by trihexyphenidyl. The findings suggest that carbachol and oxotremorine enhanced oxygen consumption in the major salivary gland slices by the activation of the calcium-dependent muscarinic M2 receptors.

Animals

The effects of epinephrine, norepinephrine, and carbachol on oxygen consumption in rat sublingual gland slices.

Epinephrine and carbachol, but not norepinephrine, significantly stimulated oxygen consumption in rat sublingual gland slices. The response to epinephrine was blocked by phentolamine and yohimbine, while propranolol and prazosin did not affect it. The response to carbachol was blocked by atropine. Also, oxygen consumption induced by both epinephrine and carbachol was inhibited by verapamil. These findings suggest that epinephrine enhanced oxygen consumption in sublingual gland slices by activation of alpha 2-adrenergic receptors, while carbachol activated muscarinic receptors; activation of both receptors mediated the respiratory response by facilitating the entry of extracellular Ca.

Animals

The inhibitory effect of guanabenz on submandibulary salivation induced by chorda tympani stimulation in anaesthetized cat.

The actions of guanabenz, an alpha 2-adrenoceptor agonist, on submandibulary salivation were examined in the anaesthetized cat. Guanabenz reduces submandibulary salivation evoked by electrical stimulation of the chorda tympani in dose and frequency dependent manner. This effect was antagonized by yohimbine but not by prazosin. Guanabenz increased salivation elicited by intraarterial injection of carbachol. This potentiated effect was suppressed by yohimbine, but not by prazosin. On noradrenaline induced salivation guanabenz has no effect, while prazosin virtually abolished it, indicating involvement of alpha 1-adrenoceptors. It appears that guanabenz reduces peripheral parasympathetically evoked submandibulary salivation influencing the presynaptic control of transmitter release alpha 2-adrenoceptors. Postsynaptic alpha 2-adrenoceptors are not involved in the inhibition of salivation by this agent.

Anesthesia