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M Doly

Publications and source records attributed to M Doly.

At least 37 records · Page 2Linked to original sources

Ischaemia and reperfusion-induced injury in rat retina obtained from normotensive and spontaneously hypertensive rats: effects of free radical scavengers.

The authors have studied the effects of free radical scavengers, superoxide dismutase (SOD) and extract of Ginkgo biloba (EGb 761, flavone-rich extract) on ion shifts (Na, K and Ca) induced by ischaemia and reperfusion in rat retina obtained from normotensive and spontaneously hypertensive rats. Eyes were subjected to 90 min of ischaemia by occlusion of the retinal artery, followed by 4 and 24 hours of reperfusion. SOD (15,000 U/kg, i.v.) or EGb 761 (50 mg/kg, per os) was administered in a daily dose for 10 days. In the drug-free control groups, 90 min of ischaemia significantly increased tissue Na gains from their pre-ischaemic control values of 63 +/- 7 microM/g dry weight (in retina obtained from normotensive rats) and 76 microM/g dry weight (in retina obtained from hypertensive rats) to 89 +/- 9 microM/g dry weight and 101 +/- 7 microM/g dry weight, respectively. During reperfusion, a further elevation was found in retinal Na in both the normotensive and hypertensive groups. Probably, because of the ischaemia-induced inhibition of Na-K-ATPase, retinal K loss was detected after ischaemia and reperfusion, respectively. An accumulation of retinal Ca was measured after ischaemia and reperfusion in the normotensive and spontaneously hypertensive groups. Both free radical scavengers significantly reduced the maldistribution of ions induced by ischaemia and reperfusion, but the effectiveness of drugs was more evident in normotensive than hypertensive groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Oxidative stress in diabetic retina.

The authors describe the alterations usually associated with diabetic retinopathy. They concern the classical thickening of the basal membrane of retinal capillaries and the associated modification of retinal vessel permeability. These alterations correspond to the blood-retinal barrier disruption. The authors then discuss the participation of oxygenated free radicals in the pathogenesis of diabetic retinopathy. They report several experimental studies establishing such a participation and finally describe their own results obtained on a model of retinas isolated from alloxan-induced diabetic rats. After one month of evolution, the electroretinograms (ERG) recorded on isolated retinas from diabetic rats had an amplitude about 20% lower than the controls, whereas after two months of diabetes, this decrease was about 60%. Under these conditions, the authors tested the protective properties of Ginkgo biloba extract (EGb 761) on their model. They observed that in EGb-treated animals (100 mg/kg/day), the ERG had a significantly (p less than 0.001) greater amplitude than untreated animals after two months of diabetes evolution. In conclusion, the authors discuss the possible utilization of a free radical scavenger, such as EGb 761, in the prevention of the retinal impairment in diabetes.

Animals↗

Light and lithium effects in the rat retina: modification by the PAF antagonist BN 52021.

We tested the effect of an antagonist of platelet-activating factor (PAF), BN 52021, on both acute light-induced and light plus lithium-induced rod outer segment (ROS) lesions. Rats were fed lithium carbonate (2.6 g/kg chow) for 3 weeks. Half of the lithium-treated rats received BN 52021 (25 mg/kg) via gastric intubation prior to light exposure. Control and treated rats were exposed to 400-450 lux (measured at the eye level of the rats) of diffuse, white fluorescent light for 30 min, followed by 2 h of darkness and then decapitated. The eyes were removed and prepared for light and electron microscopic observation. The structural alterations of ROS were quantified from electron micrographs using a multifunctional computer image-analysis system. Our data show a significant reduction of ROS lesions by BN 52021, and this is most pronounced in light plus lithium-treated rats. Furthermore, in confirmation of previous studies, chronic lithium treatment significantly augmented light-elicited phagosome numbers, and BN 52021 reduced this effect. Our findings thus suggest that light and lithium may act via PAF responses in the rat retina.

Analysis of Variance↗

Ischaemia- and reperfusion-induced Na+, K+, Ca2+ and Mg2+ shifts in rat retina: effects of two free radical scavengers, SOD and EGB 761.

Using Sprague-Dawley rats with transient (90-min) regional ischaemia induced by retinal artery occlusion in the eye, we have shown that superoxide dismutase (SOD) and EGB 761 (IPSEN, France), two free radical scavengers, can dramatically reduce the reperfusion-induced sodium and calcium gains, and potassium loss in retinal tissue. Investigating whether this was a 'direct' protective effect, operating during reperfusion, or an 'indirect' effect arising from the action of SOD or EBG 761 on the tissue during ischaemia. SOD (15,000 U kg-1) and EGB 761 (100 mg kg-1) were added to the rats at the moment of reperfusion (after an ischaemic insult). Eyes were subjected to 90 min ischaemia followed by 4 and 24 hr of reperfusion, respectively. In the drug-free control group, 90 min of ischaemia resulted in an accumulation of retinal sodium (2-fold) and calcium (3-fold), and a loss of cell potassium (by 40%) and magnesium (by 40%). During the first 4 hr of reperfusion the ionic imbalance was unchanged, while after 24 hrs of reperfusion a normalization was observed and the ion content of the retina almost returned to their preischaemic values. SOD and EGB 761 treatment significantly reduced the reperfusion-induced ionic imbalance (magnesium was an exception) and improved the recovery of retinal ion contents. Our results indicate that the elimination of oxygen radicals by free radical scavengers may reduce the reperfusion-induced ionic imbalance and improve the ionic homeostasis in the injured retinal cells.

Animals↗

Modification of reperfusion-induced ionic imbalance by free radical scavengers in spontaneously hypertensive rat retina.

We studied the effects of free radical scavengers, superoxide dismutase (SOD), vitamin E, and EGB 761, on ion shifts (Na+, K+, and Ca2+) induced by ischemia reperfusion in rat retina obtained from spontaneously hypertensive rats. Eyes were subjected to 90 min of retinal ischemia followed by 24 h of reperfusion. Two basic protocols were used: (1) chronic application, in which rats received SOD (7500, 15,000, and 30,000 U/kg, i.v.), vitamin E (50, 100, and 200 mg/kg, i.v.), and EGB 671 (50, 100, and 200 mg/kg, orally) for 10 d, respectively; and (2) acute administration, in which 7500, 15,000, and 30,000 U/kg of SOD, 50, 100, and 200 mg/kg of vitamin E, and 50, 100, and 200 mg/kg of EGB 761 were administered after an ischemic episode, at the onset of reperfusion, respectively. In the drug-free control group, 90 min ischemia followed by 24 h of reperfusion resulted in an accumulation of retinal sodium and calcium from their nonischemic control values of 76 +/- 4 and 3.2 +/- 0.1 mumol/g dry weight to 112 +/- 6 (p < .001) and 6.2 (p < .001) mumol/g dry weight, respectively. Tissue potassium loss was also observed in this model of retinal ischemia reperfusion, and after 90 min ischemia followed by 24 h of reperfusion potassium content was significantly reduced from its nonischemic control value of 266 +/- 5 to 207 +/- 6 (p < .001) mumol/g dry weight. The chronic administration of SOD, vitamin E, and EGB 761 dose dependently reduced the reperfusion-induced ionic imbalance and improved the recovery of retinal ion contents.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of Gingko biloba extract (EGb 761) on chloroquine induced retinal alterations.

Electroretinography was used to investigate the preventive action of Ginkgo biloba extract (EGb 761) in experimental chloroquine-induced retinopathy in rats. EGb 761 contains flavones and anthocyanosides known for their oxygenated radical scavenging properties. Chronic administration of chloroquine (20 days) caused an overall lengthening of the duration of the ERG b-wave, together with delayed peaking. These anomalies became more marked with increased duration of treatment. In rats treated simultaneously with chloroquine and EGb 761 no such modification of the electroretinogram (ERG) was observed. These results suggest that retinal toxicity may be related to a localized inflammation releasing oxygenated free radicals and/or PAF. EGb 761 may thus afford a useful preventive treatment for chloroquine-induced retinopathy, and generally for xenobiotic retinotoxicities.

Animals↗

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↗

[Involvement of PAF (Platelet-Activating Factor) in chloroquine-induced retinopathy].

Chloroquine retinopathy is a severe toxic retinal impairment which may result in loss of vision by alterations of the pigmentary epithelium and photoreceptors. Currently, there is no specific treatment for this retinopathy. In order to test the possible involvement of Platelet-Activating Factor (PAF) in chloroquine-induced retinopathy and the use of PAF antagonists for prevention of this condition, we have examined the effect of these substances on the electroretinogram (ERG) of isolated rat retina. When retinas from normal rats were perfused with chloroquine (10(-6) M), a marked and rapid decrease in ERG b-wave amplitude was observed. In contrast, chloroquine had no effect on the ERG of retina isolated from animals pretreated with the PAF antagonist, BN 50730 (30 mg/kg/day i.p., 5 days). The results obtained indicate that (i) chloroquine is a toxic drug for retinal function, (ii) PAF plays a key role in chloroquine retinopathy and (iii) PAF antagonists may constitute valuable agents for the treatment of this retinal impairment.

Animals↗

Free radical-mediated effects in reperfusion injury: a histologic study with superoxide dismutase and EGB 761 in rat retina.

In Sprague-Dawley rats, retinal ischemia was induced by occlusion of the central retinal artery, while reperfusion was initiated by unclamping and removing the occluder. Ninety minutes of regional ischemia followed by 24 h of reperfusion resulted in a development of retinal edema in the inner plexiform layer and a migration of neutrophils into the retinal tissue. Oxygen free radicals have been implicated as inducers of cell damage in different tissues. This finding has led us to speculate that, if oxygen free radicals play an important role in the development of reperfusion injury, superoxide dismutase (SOD) and EGB 761 (Tanakan, extract of Ginkgo biloba, IPSEN) should be protective against reperfusion-induced injury. Under our experimental conditions, SOD dose-dependently reduced the development of edema formation (which was expressed in micrometers, measuring the thickness of the inner plexiform layer). Thus, 3,750, 7,500 and 15,000 U/kg of SOD reduced the reperfusion-induced edema formation from its drug-free ischemic value of 112 +/- 4 to 107 +/- 7, 91 +/- 6 (p less than 0.05) and 85 + 4 microns (p less than 0.001), respectively. Furthermore, SOD significantly reduced the migration of neutrophils which can also contribute to the development of reperfusion-induced injury. The same protective effect was observed, concerning the edema formation and neutrophil migration, in the EGB 761-treated groups. Our results indicate that free radicals play an important role in the development of reperfusion-induced injury, and the treatment of ischemic and reperfused retina with free radical scavengers may reduce the severity of reperfusion damage.

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↗

Ischemia and reperfusion-induced histologic changes in the rat retina. Demonstration of a free radical-mediated mechanism.

Histologic alterations of ischemia- and reperfusion-induced retinal damage are critically dependent on the duration of the period of ischemia. Male Sprague Dawley rats were anesthetized, and a suture was placed behind the globe including the central retinal artery. Because it was desirable that untreated eyes show a great histologic change due to reperfusion-induced damage (in order that maximum scope would exist for demonstration of any protective effect of a drug treatment), a preliminary series of studies established the time-induced characteristics for the retina with transient regional ischemia. Eyes (n = 6-12 in each group) were subjected to 30, 60, or 90 min of ischemia followed by 0.5, 1, 2, 4, and 24 hr of reperfusion, respectively. The 30-min ischemia followed by reperfusion did not result in any histologic changes; 60-min ischemia followed by reperfusion induced a moderate retinal edema which returned to the preischemic value after 24 hr of reperfusion. The 90-min ischemia followed by reperfusion further aggravated retinal edema and increased the migration of neutrophil leukocytes. Even after 24 hr of reperfusion, the retinal edema had not disappeared although an attenuation was observed. In this study, the rats were treated with superoxide dismutase (SOD-PEG, 15 x 10(3) U/kg) or EGB 761 (100 mg/kg) for 10 days (chronic treatment). The SOD and EGB 761 significantly reduced the development of reperfusion-induced retinal edema and significantly prevented the neutrophil leukocyte infiltration. Both also had a protective effect against reperfusion-induced injury when these agents were administered just before reperfusion ("late" administration).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Presence of specific platelet-activating factor binding sites in the rat retina.

The specificity of the effects of platelet-activating factor (PAF) on the electrophysiology of the retina suggests the existence of specific sites for PAF in this tissue. In this study, we report the presence of tritiated PAF ([3H]PAF) specific binding sites in membrane preparations of the retina of albino rats. The binding of [3H]PAF was saturable, specific, time-dependent and reversible. Scatchard analysis of the data revealed that the high-affinity retinal binding site possessed a Kd of 2.9 +/- 0.4 nM and Bmax of 0.85 +/- 0.16 pmol/mg protein. These values are comparable with those found for the membranous PAF receptor sites in platelets, neutrophils, lung tissue and brain. We have recently reported that PAF dose dependently modulates the b-wave of the electroretinogram (ERG) obtained from the isolated rat retina. The results of the present study suggest that such PAF-induced disturbances of the ERG may be mediated via specific receptors located in the retina.

Animals↗

[Inhibition of transducin by lithium: electrophysiological demonstration using the isolated retina].

Recently Avissar et al. have established that Li+ can inhibit G proteins implicated in brain function. In order to investigate the effect of Li+ on transducin, the evolution of the electroretinogram (ERG) recorded on isolated rat retina has been studied in presence of lithium. Results indicate that 10(-5) M Li+ had no effect on ERG while 10(-3) M Li+, which corresponds to therapeutic blood levels, significantly decreases ERG amplitude. This effect being nearly totally inhibited by cholera toxin (75 micrograms/l), it is concluded that Li+ acts on transducin and so inhibits the visual transduction process.

Animals↗

[Protective effect of cicletanine in hypertensive retinopathy. Evaluation of retinal function in the isolated retina].

In order to demonstrate functional impairments related to hypertensive retinopathy, we experimented on the isolated retina of spontaneously hypertensive rats (SHR-SP strain A3N Iffa Credo). We also used this experimental model to assess the protective effect of treatment with cicletanine, a new synthetic furopyridine compound. Treatment consisted of daily oral administration of either 50 or 100 mg/kg of cicletanine for 5 weeks. Retinal function was evaluated by recording the electroretinogram (ERG) obtained in response to light stimulation (300 lux, 1 ms) of the isolated retina maintained in survival by perfusion. The results indicate: (i) that ERG amplitude remains systematically lower in hypertensive rats than in normotensive rats and that in consequence retina survival is shortened; (ii) that in cicletanine-treated hypertensive rats ERG amplitude is significantly higher than in untreated hypertensive rats, the drug augmenting the duration of retina survival. Although cicletanine significantly improved the ERG amplitude obtained in hypertensive rats, this amplitude was still lower than in normotensive rats. These results are consistent with those of previous histological studies performed on the same of hypertensive rats, which demonstrated that impairments of retinal capillaries, photoreceptors and ganglion cells may have deleterious functional consequences for the visual process. Cicletanine is able to reduce these histological impairments, and the present study demonstrate that the drug can also significantly improve the ERG amplitude.

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↗