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Biomedical subjects

U Gerber

Publications and source records attributed to U Gerber.

43 records · Page 3Linked to original sources

Effects of beta-agonists on b- and c-waves implicit for adrenergic mechanisms in cat retina.

Nylidrin (buphenine) is a beta-adrenergic agonist known to dilate peripheral vessels and used therapeutically in retinal degeneration and glaucoma. We studied retinal function under beta-agonists in arterially perfused cat eyes and observed a dose-dependent, reversible increase in b-wave amplitude and a decrease in c-wave amplitude in concentrations from 4.5 to 120 microM. A half maximal response was obtained at 40 to 50 microM. The optic nerve response to light showed dose-dependent reversible changes under nylidrin. Standing potential, light peak, intraocular pressure, vascular resistance, and diameter of or retinal vessels showed no consistent changes under nylidrin. The effect were inhibited by each of the beta-blocking agents propranolol, ICI 118, and oxprenolol (in sequence of decreasing potency). Another potent beta 2-agonist, clenbuterol, was used to determine the extent to which the responses to nylidrin were due to beta-receptor-mediated action. Clenbuterol had similar effects on the b-wave and optic nerve response at slightly higher concentrations (30 200 microM) but more variable effects on the c-wave. The data are interpreted as functional evidence that beta-adrenergic mechanisms are involved in retinal signal processing. This concept is corroborated by identification of beta-adrenergic binding sites in cat retina (Bruinink et al., 1986).

Adrenergic beta-Agonists↗

The effects of calcitonin on central neurons in the rat.

The effects of salmon calcitonin on central neurons were studied in anesthetized rats. Calcitonin applied iontophoretically consistently inhibited spontaneous activity in half of the neurons tested in the anterior hypothalamic nucleus and subthalamus but had virtually no effect on cortical and thalamic neurons. Calcitonin also inhibited glutamate-evoked activity in the neurons tested. Calcitonin administered into the brain ventricular system led to a marked decrease in spontaneous discharge of hypothalamic cells in the majority of cells tested. The onset of this response began within 20 and 30 min of calcitonin application.

Animals↗

Some effects of superior laryngeal nerve stimulation on sympathetic preganglionic neuron firing.

Repetitive electrical stimulation of afferent fibers in the superior laryngeal nerve (SLN) evoked depressant or excitatory effects on sympathetic preganglionic neurons of the cervical trunk in Nembutal-anesthetized, paralyzed, artifically ventilated cats. The depressant effect, which consisted of suppression of the inspiration-synchronous discharge of units with such firing pattern, was obtained at low strength and frequency of stimulation (e.g. 600 mV, 30 Hz) and was absent at end-tidal CO2 values below threshold for phrenic nerve activity. The excitatory effect required higher intensity and frequency of stimulation and was CO2 independent. The depressant effect on sympathetic preganglionic neurons with inspiratory firing pattern seemed a replica of the inspiration-inhibitory effect observed on phrenic motoneurons. Hence, it could be attributed to the known inhibition by the SLN of central inspiratory activity, if it is assumed that this is a common driver for phrenic motoneurons and some sympathetic preganglionic neurons. The excitatory effect, on the other hand, appears to be due to connections of SLN afferents with sympathetic preganglionic neurons, independent of the respiratory center.

Animals↗