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Biomedical subjects

B Bonhomme

Publications and source records attributed to B Bonhomme.

12 recordsLinked to original sources

Inhibition of vincristine-induced retinal impairments by a specific PAF antagonist.

The alkaloid vincristine is widely used for its anti-leukemic and anti-tumor activity. However, the drug also displays considerable toxicity, particularly for the retina. Indeed, vincristine has been shown to induce alteration of photoreceptor outer segments in animals and impairment of scotopic vision in man. This type of retinopathy is an inflammatory disease in which PAF may be implicated and for which specific PAF antagonist may have a therapeutic role. Thus, we measured the effects of a new hetrapezine derived PAF antagonist, BN 50730, on a vincristine-induced retinopathy in the rat. Retinal impairments were established by recording several parameters of the electroretinogram (ERG) obtained from isolated retina. Our results indicate that, first, the increase in PIII duration induced by vincristine is significantly reduced by BN 50730 administration and, second, the decrease in the value of the PIII/b wave ratio caused by vincristine is partially inhibited by treatment with BN 50730. These experiments suggest that PAF is implicated in vincristine retinopathy and demonstrate the therapeutic effect of a specific antagonist of the mediator.

Animals

Protective effect of Ginkgo biloba extract (EGB 761) on free radical-induced changes in the electroretinogram of isolated rat retina.

The retina is a tissue particularly rich in polyunsaturated fatty acids and thus highly sensitive to lipid peroxidation initiated by oxygenated free radicals. By recording the electroretinogram (ERG) b wave amplitude on isolated rat retina, the authors have investigated the anti-oxidant properties of Ginkgo biloba extract (EGB 761). Two groups of rats were used: one group was treated with EGB 761 at a dose of 100 mg/kg/day per os for 10 days; the other one of untreated animals served as a control. At the end of the treatment (10 days), rats were sacrificed, one retina isolated and perfused in order to record ERG. Lipid peroxidation was induced by adding a mixture of (FeSO4 + Na ascorbate) to the perfusion solution. In the untreated rats a 50% decrease in ERG was observed after only 55 min. Such a delay in the decrease and subsequent maintenance of ERG b wave amplitude confirm that the anti-oxidant properties of EGB 761 can protect the retina against lipoperoxidation.

Animals

Effects of platelet-activating factor on electrophysiology of isolated retinas and their inhibition by BN 52021, a specific PAF-acether receptor antagonist.

The effects of (R)PAF-acether have been tested on the isolated rat retina model. Results indicate that (R)PAF-acether inhibits the electrophysiological response (electroretinogram) elicited on isolated retina by a brief light flash. Immediately after the administration of (R)PAF-acether, an irreversible decrease of the electroretinogram b-wave amplitude is observed. This effect is dose-dependent (2 X 10(-11) M, 2 X 10(-9) M, 2 X 10(-7) M) and partially inhibited by simultaneous administration of Ginkgolide B (BN 52021; 2 X 10(-5) M). These results suggest the existence of (R)PAF-acether-specific receptors inside the retina.

Animals

Effects of PAF-acether on electrophysiological response of isolated retina.

Results of experiments performed on rat isolated retina indicate that platelet-activating factor (PAF) is able to inhibit the functional response of the retina electroretinogram (ERG) recorded in response to a brief light flash. In the presence of PAF, the ERG b-wave amplitude decreases according to a dose-dependent (2.10(-11) M; 2.10(-9) M; 2.10(-7) M) process. This effect is partially inhibited by the simultaneous administration of a Ginkgo biloba extract (GBE, 10 mg/l) or Ginkgolide B (BN 52021, 2.10(-5)M). The authors interpret these results with reference to the main mechanism of the membrane signal triggered by PAF, namely the activation of phosphatidylinositol cycle with the formation of inositol-triphosphate, the inhibition of the light-induced response of the retina by administration of inositol-triphosphate, and the antagonistic effect of GBE and BN 52021 on specific PAF-receptors demonstrated on other models. Thus specific PAF-receptors may exist at the level of the retina, which suggests that they are also present in the brain.

Animals

[Effect of Ginkgo biloba extract on the electrophysiology of the isolated retina from a diabetic rat].

The purposes of the experimental work presented here were to ascertain that diabetes causes impairment of the visual function and to test the protective properties of Ginkgo biloba extract against this impairment. The experimental method selected was the isolated albino rat retina maintained in survival by perfusion. Retinal function was evaluated by electroretinographic recording in response to a light stimulus. The rats were made diabetics by injection of alloxan. After one month of diabetes the electroretinogram amplitude was significantly decreased in diabetic rats as compared with control animals. This decrease in amplitude was more pronounced after 2 months of diabetes, which confirmed that retinal function was worse. In rats treated with Ginkgo biloba extract, after 2 months of diabetes the electroretinograms had a significantly greater amplitude that that observed in untreated rats. These results are attributed to the specific role played by free oxygenated radicals on the retina of diabetic rats and to the free radical scavenger property of Ginkgo biloba extract.

Animals

An automatic stimulus generation system for electroretinogram capture and processing.

An automated system is presented for on-line capture and processing of the analog signal obtained in response to light or X-ray stimulation of isolated rat retina maintained in survival by perfusion. The most important part of the system is a microcomputer Apple II (48 K Europlus) equipped with interface boards. Basic and assembler programs automatically deliver light or X-ray stimulation every 5 min. Data capture and data processing are carried out following each retinal response. Calculated parameters of the ERG, and 200 values obtained after sampling of an ERG are placed in a data file on a floppy disc. One hundred ERGs can be stored in this way.

Animals

Experimental study of the retinal toxicity of hemoglobinic iron.

The functional consequences of vitreous hemorrhage on the retina were studied using a rabbit experimental model. The repartition of hemoglobinic iron inside the retina was assessed after the intravitreous injection of 59Fe-labeled erythrocytes. Electroretinographic studies were performed both in vivo after the intravitreous injection of labeled blood and in vitro on albino rat isolated retina treated with Fe ions. Results indicate that hemoglobinic iron migrates from the vitreous to the retina and inside the retinal tissue from ganglion cells to deeper layers. It is also demonstrated that hemoglobinic iron has a significant functional toxicity on the retina.

Animals

Electrophysiological consequences of leukotrienes applied on isolated rat retina.

Scotopic vision is the result of a cascade of light-dependent biochemical events in rod outer segments (ROS) involving mainly a cGMP-modulation of sodium current. This modification of ionic currents induces changes of membrane potential which generates electroretinographic (ERG) waves. As (i) ERG disturbances are commonly recorded in hypoxic and inflammatory retinal diseases (ii) leukotrienes (LTs), a very potent mediators of inflammation, disturb ionic exchanges in several artificial or natural membrane systems, we undertook the investigation of the effects of LTs on ERG record in mammalian isolated retina. LTB4, LTC4 and LTD4, all induced a dose-dependent marked reduction of the b wave amplitude of ERG. This effect is correlated with a significant decrease in the survival time of the retina. The analysis of the modification of ERG indicates that LTs exhibit a real toxic effect since b wave is mainly affected while P III wave is unchanged. Comparatively with other nervous cells, this phenomenon may be attributed to an increase in Na+ permeability of ROS. It is suggested that LTs may be involved in the development of inflammatory or ischemic retinal diseases.

Animals

Effects of leukotrienes on the electroretinographic profile of the isolated rat retina.

The isolated retina represents an excellent membrane model since it provides a specific electrophysiological response that is easy to quantify. Therefore the authors have tested the effects of B4, C4 and D4 leukotrienes on this model. In the presence of leukotrienes, electrical response generally decreases and survival duration of the isolated retina is generally shortened. No significant difference between the effects of the three tested products has been found. These results are discussed in relation to, on the one hand, the mechanism of intraretinal generation of its electrophysiological signal and, on the other hand, the leukotrienes' role in inflammatory diseases of the retina.

Animals

[Effects of oxygenated free radicals on the electrophysiological activity of the isolated retina of the rat].

Particularly rich in polyunsaturated fatty acids, the retina constitutes an excellent model for testing the functional consequences of membrane lipoperoxidation. The effects could be quantified by measuring the amplitude of the electroretinogram which represents the characteristic response of the retina to its physiological stimulus (light photons). The authors report results obtained on isolated rat retina maintained in survival by perfusion. The membrane lipid peroxidation is induced by the non enzymatic catalytic system (Fe2+ + ascorbate). In the presence of such a system, the amplitude of the b-wave of the electroretinogram rapidly decreases and the survival time is notably shortened. These results are discussed with regards to the mechanism generating the electroretinogram and the specific role played by the disk membrane and plasmic membrane of the rod outer segment. Finally, the authors test the radical scavenger properties of a Ginkgo biloba extract. The results indicate that such an extract develops an antiperoxidative effect probably connected with its flavonoid composition. With this extract the survival time of the isolated retina is significantly increased and this result could be related to the retinal cell membrane disorders observed in diabetes.

Animals