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Biomedical subjects

M Doly

Publications and source records attributed to M Doly.

At least 19 recordsLinked to original sources

A reversed-phase high-performance liquid chromatographic method to analyze retinal isomers.

A high-performance liquid chromatographic (HPLC) procedure was developed to separate all-trans-, 13-cis-, 11-cis- and 9-cis-retinal isomers. Two reversed-phase Vydac C18 columns in series were used with an isocratic solvent system of 0.1 M ammonium acetate-acetonitrile (40:60, v/v) as mobile phase and all-trans-9-(4-methoxy-2,3,6-trimethylphenyl)-3,7-dimethyl-2,4,6,8-no natetraene-1-ol (TMMP) as internal standard. Prior to HPLC, the retinal isomers were efficiently extracted in their original isomeric conformation using dichloromethane-n-hexane in the presence of formaldehyde. This technique is suitable for the assay of 11-cis- and all-trans-retinal isomers in retina.

Animals↗

Comparison of intraocular treatment of DMTU and SOD following retinal ischemia in rats.

The effect of intravitreal injections of DMTU (dimethylthiourea) and SOD (superoxide dismutase), two free radical scavengers, was evaluated in a rat model of retinal ischemia induced by elevated intraocular pressure. The drugs were administered just before or just after a 60 min ischemia. At days 2 and 7 after reperfusion, retinal recovery was evaluated by electroretinography. At day 7, layer thicknesses and cell rows were measured from histologic sections of paraffin-embedded retinas. In the vehicle-treated control group, we observed a decrease in the inner retinal layers and b-wave amplitude impairment. SOD injection (6 units/eye) protected the retina from ischemia/reperfusion injury. At day 2 after reperfusion, electroretinographic recovery was more efficient when SOD was administered just after ischemia (99%) than after pretreatment with SOD (81%) (p<0.03). In the DMTU-treated group (75 microg/eye), only the pretreatment induced significant electrophysiologic (40%) (p<0.001) and morphologic recovery.

Administration, Topical↗

Functional protection of photoreceptors from light-induced damage by dimethylthiourea and Ginkgo biloba extract.

PURPOSE: To investigate the functional protective effect of a synthetic (dimethylthiourea, DMTU) and a natural antioxidant (Ginkgo biloba extract, EGb 761) against light-induced retinal degeneration. METHODS: Wistar rats were exposed for 24 hours to 1700-lux light after treatment with DMTU or EGb 761. Electroretinograms were recorded before and on day (D)1, D3, D8, D15, D22, and D29 after light exposure. The b-wave amplitude was plotted against log L (ganzfeld luminance), providing the b-wave sensitivity curve. The Naka-Rushton function fitted to the sensitivity curve enabled derivation of the parameters Bmax (saturated amplitude) and K (luminance-inducing Bmax/2). In addition, rats from each group were killed for retinal morphometric analyses. RESULTS: In the untreated group, light exposure caused collapse of the b-wave sensitivity curves. Bmax was reduced by 51% at D1 without subsequent recovery. K increased temporarily, reverting to normal values 8 days later. The outer nuclear layer thicknesses decreased markedly in the superior retina. In the treated groups, light exposure had a weaker effect on sensitivity curves. The values of Bmax were not significantly different from those in the unexposed-untreated group, although K increased temporarily. Retinal morphometry was preserved. CONCLUSIONS: Dimethylthiourea and EGb 761 afford functional protection against light-induced retinal damage.

Animals↗

Effect of a cGMP-specific phosphodiesterase inhibitor on retinal function.

Multiple forms of phosphodiesterase have been reported in many tissues. Phosphodiesterase 6, a cGMP-specific phosphodiesterase, is described as a photoreceptor cell-specific phosphodiesterase. Phosphodiesterase 6 is known to play a crucial role in visual function. A novel phosphodiesterase inhibitor, GF248 (5["(propoxy),7'(4-morpholino)-phenacyl],[1-methyl-3 propyl]pyrazolo[4,3d]pyrimidin-7-one), has been described to be a very potent cGMP-specific phosphodiesterase inhibitor. In the present study, we compared the potency of GF248 and other known cGMP-specific phosphodiesterase inhibitors on phosphodiesterase 5 and phosphodiesterase 6. GF248 displayed an IC50 of 2 and 5 nM for phosphodiesterase 5 and phosphodiesterase 6, respectively. Thereafter, we assessed the effect of GF248 on retinal function, using an ex vivo model of isolated retina electroretinogram recording. Exposure of retina to GF248 resulted in a dose-dependent decrease in electroretinogram amplitude (PIII and b-waves), with no marked modification of PIII and b-wave implicit time. Among other phosphodiesterase inhibitors, DMPPO (1,3-dimethyl-6-(2-propoxy-5-methanesulfonylamidophenyl)pyrazol ol[3,4d]-pyrimidin-4-(5H)-one) and dipyridamole, cGMP-specific phosphodiesterase inhibitors, and IBMQ (1-isobutyl-3-methylimidazol[1,5a]quinoxalin-4-(5H)one), a nonselective phosphodiesterase inhibitor, altered retinal function but less potently than GF248, consistent with their in vitro phosphodiesterase 6 inhibition. Phosphodiesterase 3- and phosphodiesterase 4-selective inhibitors, cilostamide and rolipram, respectively, did not affect retinal function at 10 micromol l(-1). Our conclusion from these data is that GF248, a potent phosphodiesterase 6 inhibitor, could interfere with visual transduction by cGMP accumulation.

3',5'-Cyclic-GMP Phosphodiesterases↗

Light-induced variations of retinal sensitivity in rats.

PURPOSE: ERG responses were measured as a function of Ganzfeld luminance to evaluate functional damage induced by light on rat retinas. METHODS: Wistar rats were exposed to a fluorescent light of 1700 lux for 12 h, 24 h, 48 h and 72 h. We recorded ERGs before and one night after exposure, then 3, 8, 15, 22 and 29 days later. The b- and PIII-wave amplitudes were plotted against luminance for each group at each recovery time. RESULTS: The retinal damage induced by a pupillary illuminance of 1700 lux ranged from low to severe as exposure duration increased from 12 h to 72 h, respectively. We observed an effect immediately after light exposure but no improvement during the recovery period. The b-wave amplitude was reduced by 40, 60, 80 and 90 percent after 12, 24, 48 and 72 h of light exposure, respectively; the PIII-wave amplitude was reduced by 30, 40, 70 and 90 percent after these respective exposures. The Ganzfeld luminance eliciting a 50 microV b-wave amplitude increased significantly with exposure duration, but the luminance eliciting the maximal b-wave amplitude was not dependent on this duration. Hence we suggest that the ERG decrease is due to a reduction in photoreceptor number. CONCLUSIONS: We present a full analysis of the electrophysiological parameters recorded from light-exposed or non-exposed rats. This model is a useful tool to study in vivo retinal degeneration.

Animals↗

Scanning electron microscopy after cryofracture of normal and ischemic rat retinas.

The authors described the use of scanning electron microscopy after cryofracture to analyze rat retinas after experimental ischemia-reperfusion sequence. In Sprague-Dawley albino rats, intraocular hypertony by cannulation of anterior chamber was performed for 1 h on one eye. The other eye served as control. After 48 h of reperfusion, retinas were dissected. They were frozen and fractured before ultrastructural analysis by a scanning electron microscope. In the ischemic eyes the thickness of the photoreceptors layer was reduced, through internal disorganization resulting in misalignment of rods. There was swelling of the outer segments, a loss of adhesion between segments and superficial necrosis. Scanning electron microscopy after cryofracture permitted an analysis of the external morphology of retinal cells and intercellular components, especially the outer layers.

Animals↗

[Analysis of hematopoietic growth factor prescriptions in 19 french cancer centers].

Medical prescription of hematopoietic growth factors (HGF) was analysed in 19 anticancer french centers during 2 months. About 4% of anticancer chemotherapeutic cycles prescribed during this period were supported by HGF prescription. The mean duration of treatment was 8 days. Among the 755 collected prescriptions, two tumor localizations represented about 50% of the prescriptions: malignant non Hodgkin lymphomas and breast cancer. The other main localizations concerned adult or pediatric soft tissue sarcomas (18%), testicular cancer (7%) and gynecologic tumors (6%). The prescription for primary prophylaxis for febrile neutropenia remains the main use of HGF (44%). The respect of the guidelines established by the F|d|ration nationale des centres de lutte contre le cancer was analyzed. Overall, 66% of the prescriptions were in adequation with these guidelines. Whereas the consommation of HGF decreased in the 19 considered institutions, it did not reach a plateau and could decrease in institutions which are awaked to the international and national recommendations.

Adult↗

Experimental electroretinographic exploration of retinal ischemia: preventive use of free radical scavengers and anti-PAF agents.

Electroretinographic exploration is an effective approach to evaluate retinal function. In order to investigate physiopathological mechanisms and evaluate potentially protective therapies for retinal ischemia, we developed three experimental models: the first two on isolated retina, with ischemia induced by either stopping perfusion or clamping the ophthalmic artery, and the third, in vivo, with ischemia induced by ocular hypertonia. Since free radicals are implicated in the formation of post-ischemic lesions, we evaluated the protective effects of drugs known to be free radical scavengers and of an immunomediator antagonist, an anti-PAF (platelet activating factor) agent.

Analysis of Variance↗

Direct measurement of free radicals in ischemic/reperfused diabetic rat retina.

Electron paramagnetic resonance (EPR) spectroscopy was used to directly measure free radical generation in ischemic/reperfused diabetic rat retina. Tissue was frozen at 77 degrees K after 90 min ischemia, and 90 min ischemia followed by 1 min, 3 min, 5 min, and 24 hours reperfusion, respectively. After 90 min of ischemia followed by 1 min, 3 min, 5 min, and 24 hours of reperfusion (n = 10 in each group), free radical signal intensity was increased from its diabetic nonischemic control value of 12 +/- 3 arbitrary units to 58 +/- 6 (P < 0.05), 62 +/- 7 (P < 0.05), 32 +/- 5 (P < 0.05), and 14 +/- 4 arbitrary units, respectively. The peak intensity of free radical production was observed after 90 min ischemia followed by 3 min of reperfusion; therefore, this time point was selected to study the retinal free radical production in superoxide dismutase (conjugated with polyethylene glycol, PEG-SOD) and EGb 761 (Ginkgo biloba extract)-treated groups. With 7,500, 15,000, and 30,000 U/liter of SOD, and 25, 50, and 100 mg/kg of EGb 761, a dose-dependent reduction in oxygen free radical production was detected, respectively, which may be responsible for the attenuation of abnormal postischemic function in ischemic and reperfused diabetic retina.

Animals↗

[Suppression of platelet activating factor effects (PAF) on the retina by G-proteins inhibitors].

The Platelet Activating Factor (PAF) have been shown to alter the transretinal potential recorded from light stimulated isolated retina. In the present study, we investigated the effect of cholera and pertussis toxins on PAF-induced electroretinogram (ERG) impairment. Administrated alone, 2.10(-7) M PAF induced a very marked and rapid drop in the b-wave amplitude of the ERG. When 75 micrograms/l of cholera toxin was coadministrated with PAF (2.10(-7) M) into the perfusion solution, the fall of the b-wave was not observed, suggesting that PAF effect on retinal function was mediated through GTP-binding protein (G-protein). Similarly, low-dose of pertussis toxin (5 micrograms/l) 1) were sufficient to antagonize PAF (2.10(-7) M) consequence on the ERG. Our results suggest that the irreversible and deleterious effect of PAF on ERG is mediated by a G-protein mechanism, located in the neural retina.

Animals↗

Protective effect of a specific PAF antagonist on vincristine-induced experimental retinopathy.

The alkaloid vincristine displays considerable toxicity, particularly for the retina. This type of retinopathy being an inflammatory disease, we measured the effects of a new hetrazepine platelet activating factor antagonist, BN 50730, on a vincristine-induced retinopathy in the rat. Retinal impairments were established by recording several parameters of the electroretinogram obtained from isolated retina. Our results indicate that 1) the increase in PIII duration induced by vincristine is significantly reduced by BN 50730 administration 2) the decrease in the amplitude of the PIII/b wave ratio caused by vincristine is partially inhibited by treatment with BN 50730. These experiments suggest that platelet activating factor is implicated in vincristine retinopathy and demonstrate the therapeutic effect of a specific antagonist of the mediator.

Animals↗

Inhibition of platelet-activating factor-induced retinal impairments by cholera and pertussis toxins.

Platelet-activating factor (PAF) has been shown to alter the trans-retinal potential recorded from light-stimulated isolated retina. In the present study, we investigated the effect of cholera and pertussis toxins on PAF-induced impairment of the electroretinogram (ERG). Administered alone, 2 x 10(-7) M PAF induced a very marked and rapid drop in the b-wave amplitude. When 75 micrograms/l of cholera toxin was coadministered with PAF in the perfusion solution, no b-wave drop was observed, suggesting that the effect of PAF on retinal function was mediated by GTP-binding protein (G protein). Similarly, a low dose of pertussis toxin (5 micrograms/l) was sufficient to antagonize the action of PAF on the ERG. Our results suggest that the irreversible and deleterious effect of PAF on ERG is mediated by a G protein mechanism, located in the neural retina.

Animals↗

Antioxidant effect of a Ginkgo biloba extract (EGb 761) on the retina.

Several investigations have recently shown that the retina is very sensitive to oxygenated free radicals (O2-, OH.) at the origin of the membrane phospholipids peroxidation. Peroxy radical (ROO.) release is responsible for the induction of electrophysiological disturbances leading to retinopathy development. As Ginkgo biloba extract (EGb 761, IPSEN, France) was reported to scavenge primary (O2-, OH.) and secondary (ROO.) free radicals, we evaluated its antioxidant effect on retinas of albino rats submitted to different types of aggressors. On isolated rat retina, EGb 761 given orally significantly protected against lipoperoxidation induced by a mixture of ferrous sulfate and sodium ascorbate added to the perfusion solution. With EGb 761, the decrease of the b-wave ERG amplitude was less pronounced and the retina survival was increased. EGb 761 was also effective against ischaemia-reperfusion disorders due to occlusion of the central retinal artery or by intraocular hypertony. Like other antioxidants such as superoxide dismutase tested on these models, EGb 761 significantly attenuated, according to a dose-response effect, the free-radical injury. EGb 761 reduces the decrease of the b-wave amplitude, the oedema, necrosis and ion homeostasis disturbances. Xenobiotics are also responsible for the retinotoxicity partly due to free radicals and PAF release. We noted an EGb 761 dose-dependent protective effect against acute and chronic chloroquine toxicity to the retina. The deleterious effect of chloroquine was characterized by a delayed b-wave and an asymmetry of the signal with slow declining b-wave. After EGb 761 treatment, the ERG aspect was partially normal. In conclusion, EGb 761, by its general free-radical scavenger properties, is an antioxidant that inhibits or reduces the functional and morphological retina impairments observed after lipoperoxide release.

Animals↗

Transduction of the light message: from the photon to the optic nerve.

Retinal transduction consists of the conversion of a physical stimulus, light, into an electrophysiological signal. This conversion takes place in several stages. First of all, at the photoreceptor level, via a sequence of molecular activations and deactivations, the detection of light results in an hyperpolarization of the cell membrane. This initial electrical signal is then relayed onto the functional cells of the retina. The bipolar cells are the first associated neurons, responding to the light stimulus by either hyperpolarization (OFF), or depolarization (ON). The second associated neurons are the ganglion cells where the ON-OFF duality also operates and whose fibers make up the optic nerve. In coloured photopic vision, the photoreceptor--bipolar cell--ganglion cell circuit is direct. For the cone-bipolar cell transmission, horizontal cells delimit excitatory (center) and inhibitory (surround) zones at the origin of the receptive field. In scotopic vision, however, i) there is only a single class of bipolar cells, that depolarize in response to light, and ii) the bipolar-ganglion cell connection is not direct. Here, the AII amacrine cells are responsible for the inhibition of the OFF ganglion cells directly connected to them or for the excitation of the ON ganglion cells via ON bipolar cells of the cone circuit. Finally, in mesopic vision, the sensory message originates in rods, and is subsequently relayed by the cone circuit via gap junctions between photoreceptors.

Animals↗

Modification of ischemia/reperfusion-induced ion shifts (Na+, K+, Ca2+ and Mg2+) by free radical scavengers in the rat retina.

We investigated the contribution of scavenging of oxygen free radicals to retinal ion contents during ischemia and reperfusion with the use of superoxide dismutase (SOD, Sigma), allopurinol (Sigma), EGB 761 (extract of Ginkgo biloba, Tanakan, IPSEN, Paris, France) and allopurinol plus EGB 761 in the rat. SOD (15,000 U/kg/day), allopurinol (50 mg/kg/day), EGB 761 (100 mg/kg/day) and allopurinol (50 mg/kg/day) plus EGB 761 (100 mg/kg/day) were administered for 10 days, respectively. Then, the eyes were subjected to 90 min of ischemia followed by 4 and 24 h of reperfusion, respectively. Retinal Na+, K+, Ca2+ and Mg2+ contents were measured by atomic absorption spectrophotometry after the washing out of blood and extracellular fluid from the vasculature. SOD, EGB 761 and the combination of EGB 761 with allopurinol significantly reduced the ischemia/reperfusion-induced Na+ and Ca2+ accumulation and K+ loss in ischemic/reperfused retinal tissue. Allopurinol alone failed to reduce the maldistribution of Na+, Ca2+ and K+ induced by ischemia/reperfusion in the retina. Neither intervention inhibited the cell Mg2+ loss which was observed during ischemia and reperfusion. Despite the responsible mechanisms remaining controversial, many studies confirmed that ischemia/reperfusion could trigger very sudden metabolic, electrophysiologic, morphologic and functional changes. There is general agreement that major ionic shifts are implicated; what triggers these changes is unclear, although many investigators believe that free radicals and oxidant stress may be important.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Prevention of chloroquine-induced electroretinographic damage by a new platelet-activating factor antagonist, BN 50730.

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

Animals↗