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Biomedical subjects

A Cavaggioni

Publications and source records attributed to A Cavaggioni.

54 records · Page 3Linked to original sources

X-ray diffraction studies of retinal rods. II. Light effect on the osmotic properties.

A fast X-ray diffraction technique has been used to study the osmotic reaction of frog rod outer segments to bleaching and to changes in the osmolarity and composition of the outer medium. Dissected excitable retina and isolated outer segments have been used. Upon bleaching in isotonic Ringer only a small transient diminution of the disc repeat distance is observed in isolated rods. Disorder and slow swelling reactions are also observed in the intact cells. In calcium-free Ringer the light-induced shrinkage is considerably enhanced. In the intact cell this is interpretable as due to the switching off of a large sodium dark current. The persistence of the effect in isolated outer segment suggests the existence of an active ionic efflux from this part of the cell. Upon hypotonic shock, bleached rods swell more than dark-adapted ones. The difference, however, appears only in a slow component of the osmotic kinetics, a few minutes after the shock. Upon hyertonic shock, part of the rods, even in the "intact" excitable retina, appear to be leaking. Those cells which are intact are impermeable to all the solutes added to increase the osmolarity: NaC1, KC1, Sucrose, Melezitose. No light dependence of the response to a hyperosmotic NaC1 shock is detectable. The discs are osmotically reactive, even when the outer cell membrane of the rods is leaking. Assuming the discs to be perfect osmometers, a thickness of 20 plus or minus 5 A is estimated for the liquid layer inside the discs.

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Efflux of potassium from isolated rod outer segments: a photic effect.

1. Illumination of the isolated outer segments of rod photoreceptors loaded with (42)K or (86)Rb reduces the efflux of these ions.2. During the perfusion of the isolated rod outer segments with a solution containing only 2.36 mM-Na the effect of light is absent, and the amplitude of the photic effect is linearly related to the logarithm of the extracellular Na concentration.3. In darkness, raising the concentration of K in the fluid of perfusion gives an increase of the efflux of (86)Rb and increasing the extracellular concentration of Ca yields a retention. The efflux of (86)Rb and (42)K is greater in darkness when sucrose or choline substitute for Na.4. It is suggested that in darkness the isolated outer segments are permeable both to Na and to K. Light appears to decrease the permeability for Na ions. There is no evidence that the permeability for K ions is modified by light.

Animals↗

Efflux of potassium from the isolated frog retina: a study of the photic effect.

1. Illumination of the isolated frog retina reduces the efflux of (42)K (and (86)Rb).2. Perfusion with a solution containing glutamate ions does not abolish the effect, although the electroretinogram is modified and the b-wave absent in this condition.3. Perfusion with a solution with only 2.36 mM sodium abolishes the effect of light on the efflux of potassium (and rubidium).4. The amplitude of the photic effect, measured in the first 2 min of illumination, is in linear proportion with the logarithm of the concentration of extracellular sodium ions.5. A steady rate of absorption of a few quanta per rod and per second yields a just detectable effect on the efflux of potassium (and rubidium).6. Strong illuminations followed by darkness reduce the efflux of rubidium for a period of time roughly comparable to the time of dark adaptation.7. The interpretation is proposed that the photoreceptor cells (and possibly other retinal cells too) cause the effect, and that the retention of potassium induced by light is secondary to the hyperpolarization of their membrane.

Animals↗

Delayed effect of nitric oxide synthase inhibition on the survival of rats after acute decompression.

AIM: The formation of bubbles in the blood stream together with the ensuing sickness after rapid decompression is assumed to depend on the physiological condition of the vascular system. In order to gain insight into the vascular function of nitric oxide in acute decompression sickness, the effects of the nitric oxide synthase inhibition by N(omega)-nitro-L-arginine methyl ester was studied in rats. METHODS: Wistar rats under anaesthesia were exposed to hyperbaric conditions for two hours and decompressed approximately 2.5 hours after a single subcutaneous injection of N(omega)-nitro-L-arginine methyl ester. Scalar doses and different pressures were tested. RESULTS: The fraction of the rats that died after decompression was greater in rats treated with N(omega)-nitro-L-arginine methyl ester at doses greater than 8 mg Kg-1 body weight compared to untreated rats. CONCLUSION: Although we have not excluded effects of nitric oxide synthase inhibition on distribution of perfusion and therefore inert gas elimination from tissue during decompression as a factor, this result highlights a delayed benefit of nitric oxide synthase activity in preventing death in acute decompression sickness.

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Thyroid hormone pattern and aggressiveness. (Isolated mice compared with dominant and submissive).

The aggressiveness induced by the forced isolation of animals may be mediated by endocrine changes. The present study focuses on the possible mediation of the pituitary-thyroid axis in the mouse (Mus musculus). The blood levels of the hormone fractions examined (T4, T3 and rT3) in isolated animals showed a significant increase in comparison with the individuals which were classified from an ethological point of view as submissive, whereas in comparison with the individuals which were classified as dominant, no difference was found for T4 and rT3, but a significant increase of T3 occurred. The choice of the categories of comparison (dominant and submissive as opposed to isolated mice) derives from the hypothesis, which has already been confirmed experimentally on an etiological level, that in this species the isolated individuals are homologous to socially dominant animals as far as aggressiveness is concerned. The endocrinological results obtained in this study support this hypothesis. Thus it is concluded that, in the species under study, isolation induces pituitary-thyroid axis activation which is similar to that found in dominant individuals and at least partially responsible for the isolation aggressiveness. The mediation of the action of TRH on the central nervous system in this phenomenon is suggested as an interesting hypothesis.

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