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Effects of an extract of Ginkgo biloba on learning and memory in mice.

The effects of an extract of Ginkgo biloba (EGb 761) on acquisition, performance, and retention of mice in an appetitive operant conditioning were investigated. The animals were trained for 30 consecutive days to acquire a two-lever response sequence followed by food reward. EGb 761 was administered daily at a dose level of 100 mg/kg PO. Drug treatment started four and eight weeks before the training and was maintained until a retention test 10 weeks after it. The results indicated that EGb 761 facilitated memory processes. EGb 761 quickened the acquisition and improved the performance of the two-response sequence: The number of correct responses was increased and correct responses were performed more frequently in the most effective manner. Besides, incorrect responses were reduced sooner and faster and to a lower level in EGb 761-treated mice. With regard to the retention EGb 761 improved the retrieval of the learned response.

Animals↗

[Spontaneous hyphema caused by Ginkgo biloba extract].

We report the first case of a patient in whom Ginkgo biloba extract proved to be the unique cause of spontaneous hyphema. Extensive ophthalmological and biological investigations were undertaken in order to assess the role of Ginkgo biloba: platelet numbering, hemostasis factors, Willebrand antigen, ristocetin cofactor, platelet glycoprotein immunophenotyping, glycoprotein expression after activation by thrombin, inflammatory markers, B-scan ultrasonography, and fluorescent iridography. No putative causes of hyphema were recorded other than Gingko biloba intake. The bleeding originated from the 12-o'clock position of the iris margin. Anamnesis identified Ginkgo biloba extract ingestion from 2 weeks before the appearance of the patient's visual trouble. Ginkgo biloba intake was stopped and the hemorrhage resolved with no recurrence during the 18 months of follow-up. Ginkgo biloba is known for platelet inhibition and is extensively used in the elderly because of its beneficial effects as a vascular protector. The clinical progression of the present case strongly suggests that Ginkgo biloba may cause hemorrhage and hyphema, even in the absence of any other predisposing factor.

Aged↗

Ginkgo biloba extracts for tinnitus: More hype than hope?

The investigation into the effects of Ginkgo biloba extracts on tinnitus has suffered from a dearth of effective animal models as well as systematic clinical trials employing double-blind and placebo-controlled designs. Some clinical trials have yielded positive results, however, these studies are few and have been limited either by design flaws, the small size of the significant effects, or else the results have not been published in peer-reviewed journals and therefore the quality of the research is not assured. By contrast, the two most systematic clinical trials, both double-blind and placebo controlled, and published in respected peer-reviewed journals, have yielded negative results and suggest that Ginkgo biloba extracts are of little more use in the treatment of tinnitus than a placebo. Treatments for tinnitus that do not have therapeutic efficacy not only waste money but can potentially prevent patients from seeking therapy that is efficacious. Furthermore, the unsupervised use of Ginkgo biloba extracts with other medications could lead to adverse side effects which are unnecessary and not justified in terms of therapeutic benefit.

Ginkgo biloba↗

[Effects of Ginkgo biloba extract on number and activity of endothelial progenitor cells from peripheral blood].

AIM: To investigate whether Ginkgo biloba extract can augment endothelial progenitor cell (EPC) number, and promote EPC proliferation, migration and adhesion. METHODS: Total mononuclear cells (MNCs) were isolated from peripheral blood by Ficoll density gradient centrifugation, and then the cells were plated on fibronectin-coated culture dishes. After 7 days of culture, attached cells were stimulated with Ginkgo biloba extract (10, 25 and 50 mg x L(-1)) or vehicle control for the respective time points (6, 12, 24 and 48 h). EPC were characterized as adherent cells double positive for DiLDL-uptake and lectin binding by direct fluorescent staining under a laser scanning confocal microscope. EPC were further documented by demonstrating the expression of CD34, VEGFR-2 and AC133 with flow cytometry. EPC proliferation, migration and in vitro vasculogenesis activity were assayed with MTT assay, modified Boyden chamber assay and in vitro vasculogenesis kit, respectively. EPCs adhesion assay was performed by replating MNCs on fibronectin-coated dishes, and then counting adherent cells. RESULTS: Incubation of isolated human MNCs with Ginkgo biloba extract increased the number of EPC, maximum at 25 mg x L(-1), 24 hours (approximately 1-fold increase, P < 0.01). In addition, Ginkgo biloba extract promotes EPC proliferative, migratory, adhesive and in vitro vasculogenesis capacity. CONCLUSION: Ginkgo biloba may promote EPC augmentation and enhance its functional activity.

Cell Adhesion↗

UV-C irradiation-induced peroxidative degradation of microsomal fatty acids and proteins: protection by an extract of Ginkgo biloba (EGb 761).

After exposure of rat liver microsomes to UV-C irradiation, analysis of membrane fatty acids by gas chromatography confirmed that EGb 761, a drug containing a dosed and standardized extract of Ginkgo biloba, provides effective protection against free radical attack in vitro. This analysis, coupled with thiobarbituric acid (TBA) reaction, permitted qualitative and overall quantitative evaluation of radical-induced damage to polyunsaturated fatty acids (PUFA), as well as evidence of the antioxidant properties of the Ginkgo biloba extract. Assay of thiobarbituric acid reactive substances (TBARS) showed a correlation between TBARS concentration and the state of degradation of the polyunsaturated fatty acids. Mannitol (5.5 mM) did not prevent degradation of microsomal PUFA or malondialdehyde (MDA) production, nor did it prevent polymerization of membrane proteins. Low doses of EGb 761 were found to provide efficient protection of membrane PUFA regardless of individual susceptibility to peroxidation. This protection was accompanied by a decrease in the production of TBARS. EGb 761 also protected membrane proteins from the irreversible polymerization induced by these degradation products, but did not appear to prevent thiols oxidation into disulfide bonds.

Animals↗

[Pharmaco-economic evaluation of Ginkgo special extract EGb 761 for dementias in Austria].

The aim of the study was to carry out an economic evaluation of the therapeutic effects achievable with ginkgo special extract Egb 761 in dementia in Austria. The care-cost savings that could be achieved with ginkgo special extract Egb 761 therapy were estimated on the basis of the extent to which it delayed growing dependency and an increasing need for care--this being ascertained from the active treatment/placebo differences on GERRI after 6 months of treatment with Egb 761 and evaluated using the rates of the Austrian Federal Care Allowance Law--and compared with the cost of this therapy. The duration of illness, the start and duration of treatment, and the Egb 761 dose were varied in a series of scenarios in a sensitivity analysis. In all the scenarios the care-cost savings exceed the costs of the ginkgo special extract Egb 761 therapy. The cost/savings ratio is most favourable when the treatment is started early and when it is used in patients with dementia of the Alzheimer type. For every month by which the transition from the stage requiring a small to moderate amount of care to the stage requiring considerable or very considerable care can be delayed, one can save 812 [symbol: see text]. Prescribing ginkgo special extract Egb 761 for dementia makes sense from the national economic viewpoint because the product can yield care-cost savings that exceed the cost of the treatment itself.

Activities of Daily Living↗

Protective effects of Ginkgo biloba extract EGb 761 on the myocardium of experimentally diabetic rats. II. Ultrastructural and immunohistochemical investigation on microvessels and interstitium.

Interstitial and microvascular disorders are known as a characteristic part of the diabetic cardiomyopathy and to resist partly insulin therapy. Aim of this study was to demonstrate structure-protecting effects of Ginkgo Extract EGb 761 known as a natural radical scavenger in streptozotocin-diabetic rats on the microvascular compartment. Wistar rats (n = 5) were made diabetical by i.p. injection of 60 mg/kg body mass streptozotocin for 4 months. Rats of the protected group (n = 5) received daily 100 mg/kg body mass EGb 761 for 3 months, starting 1 month after induction of diabetes. 5 age-matched rats served as control. The volume fraction of interstitium was slightly but significantly increased only in the unprotected diabetic group. Diminishing of the capillary to the myocyte ratio was seen in the diabetic but not in the protected group. Immunostaining of collagen revealed a slight increase of type III, type IV, and type VI fibres in the interstitium, more expressed in the unprotected group. Ultrastuctural morphometry revealed significant thickening of endothelial and muscular basement membranes in diabetic animals, less expressed in the EGb- protected group. The capillary diameter was slightly increased in the diabetic and slightly decreased in the protected group. The number of plasmalemmal vesicles was tendentially more decreased, that of lysosomes more increased in the diabetic than in the protected group. It is concluded that EGb 761 can diminish partly interstitial fibrosis and reduce endothelial and muscular basement membrane thickening of the diabetic myocardium. It may contribute to prevent late diabetic complications.

Animals↗

Effects of an extract of Ginkgo biloba on rabbit isolated aorta.

1. Extract of Ginkgo biloba (Gb) provoked a dose-dependent contraction of spirally-cut rabbit aortic strips (EC50 congruent to 1.0 mg/ml) by an action that was antagonized by phentolamine (10(-7) M). 2. Inhibitors of catecholamine re-uptake, cocaine (10(-5) M) and desipramine (10(-7) M) potentiated the contractile effect of norepinephrine (NE), but inhibited the contractile effects of Gb and tyramine. 3. A comparison of the actions of Gb, NE and tyramine using aortic strips prepared from control and reserpine-treated rabbits revealed that reserpine treatment increased the response to NE but decreased the response to Gb and tyramine. 4. The contractile action of Gb on rabbit isolated aorta involves, at least in part, a release of catecholamines from endogenous tissue stores.

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Hemorheology and walking of peripheral arterial occlusive diseases patients during treatment with Ginkgo biloba extract.

AIM: To study the effects of Ginkgo biloba extract 761 (GbE) from the points of view of hemorheology for patients of peripheral arterial occlusive diseases (PAOD). METHODS: The treatment with GbE (240 mg.d-1, po) and the pain-free walking distance (PFWD) were carried out for 24 PAOD patients (12 nondiabetic, ND and 12 diabetic, D) over 48 wk. The parameters erythrocyte stiffness (ES) and relaxation time (RT), the blood plasma viscosity (eta), the plasma fibrinogen concentration (Cf) and the blood sedimentation rate (BSR), the PFWD, and maximal walking distance (MWD) were determined at 6 wk before treatment (-6), at the beginning of the treatment (0), and after 6, 11, 16, and 48 wk of treatment. RESULTS: At wk -6, ES and RT of both the ND- and D-group were not significantly different from a healthy control group. At wk 0, stiffness and RT were significantly higher than healthy control, and the mean PFWD was only 111 m. The eta value was significantly elevated and Cf and BSR were enhanced. Throughout 11 wk of treatment ES, RT, eta, and Cf decreased gradually and PFWD improved. Between 16 and 48 wk, ES, and RT were no longer significantly different from the controls, whereas eta and Cf decreased gradually but remained higher than normal, BSR decreased, and the PFWD improved by a factor of 3.8 times (D) and 3.3 times (ND). CONCLUSION: GbE gives therapeutic effects in PAOD patients.

Aged↗

[Effects of nuclear factor kappaB and transforming growth factor beta1 in the anti-liver fibrosis process using Ginkgo biloba extract].

OBJECTIVE: To evaluate the effects of Ginkgo biloba extract (EGB) on CCl(4)-induced liver fibrosis and to investigate the underlying mechanisms. METHODS: Rats were divided into the following groups: normal control group, CCl(4) model group, low dose EGB group, moderate dose EGB group and high dose EGB group. The rat liver fibrosis model was induced by intraperitoneal injection of CCl(4) twice a week for 8 weeks. The model rats of the three EGB treated groups were given 0.25 g/kg, 0.5 g/kg, 1.0 g/kg of EGB by stomach tubes every day. At the end of the eighth week, the blood and liver specimens were obtained. The expressions of nuclear factor kappaB (NF-kappaB) P65, and alpha-smooth muscle actin (alpha-SMA) were detected by immunohistochemistry. Radioimmunoassay was exploited to evaluate serum hyaluronic acid (HA) and laminin (LN) levels. Electrophoretic mobility shift assay (EMSA) was used to confirm the nuclear translocation activity of NF-kappaB in liver tissues. The mRNA expression of transforming growth factor-beta1 (TGFbeta1) and collagen I was determined by RT-PCR. Malondialdehyde (MDA), superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) in liver tissues and alanine aminotransferase (ALT) and aspartate aminotransferase (AST) in the sera were also examined. RESULTS: CCl(4) administration induced liver fibrosis, which was inhibited by EGB in a dose-dependent manner. The histopathologic scores of liver fibrosis, the levels of serum ALT, AST, HA and LN were significantly lower in the rats treated with EGB compared with those not treated (P <0.01 or P <0.05). SOD and GSH-Px activities were notably elevated and MDA content was significantly lower in the rats treated with EGB (P <0.01 or P <0.05), indicating reduced oxidative stress. Immunohistochemical staining demonstrated inhibition of hepatic stellate cell (HSC) activation (in terms of alpha-SMA expression) and NF-kappaB P65 expression in the livers of the EGB-treated rats. As determined by EMSA and RT-PCR, activation of NF-kappaB, the mRNA expression of TGFbeta1 and collagen I were significantly higher in model group rats, but obviously lower in EGB treated rats. CONCLUSION: EGB is able to ameliorate liver injury and prevent rats from CCl(4)-induced liver fibrosis by suppressing oxidative stress. This process may be related to inhibiting the expression of TGFbeta1 and the induction of NF-kappaB on HSC activation.

Animals↗

[Antiradical properties of Ginkgo biloba extract].

The anti-radical properties of Ginkgo biloba extract have been determined on several in vitro models. The products is as effective as uric acid, an anti-radical agent known to entrap the hydroxyl and diphenylpicrylhydrazyl radicals. In addition, it inactivates the formation of radicals, such as adriamycyl, which escape uric acid activity. It also inhibits membrane lipid peroxidation and owes to its anti-radical activity exerts a stimulant effect on the biosynthesis of prostanoids.

Animals↗

Extract of Ginkgo biloba EGb 761 facilitates fear conditioning measured by fear-potentiated startle.

Extract of Ginkgo biloba EGb 761 has been used in the treatment of various common geriatric complaints including vertigo, short-term memory loss, hearing loss, lack of attention, vigilance and cerebral vascular disorder. Recent results suggest that it can serve as a cognitive enhancer and anti-stress buffer. It raises a possibility that EGb 761 may be involved in the fear conditioning. In this study, we used fear-potentiated startle (FPS) to evaluate the possible effects of EGb 761 on the acquisition stage of fear conditioning. Our results showed that administration of EGb 761 30 min prior to the conditioning facilitated acquisition of conditioned fear in a dose dependent manner. No significant differences had been observed in either basal startle response or shock activity. These results indicated that the facilitation effect of EGb 761 was not the result of impaired basal startle response or enhanced pain perception. Subsequent control experiment results indicated that the facilitation effect of EGb 761 on the acquisition was not due to anxiogenic effect or non-specific effect. Our data present the first evidence that EGb 761 can enhance fear memory formation rather than serve as an anti-stress buffer.

Acoustic Stimulation↗

[Ginkgo biloba extract (EGb 761). State of knowledge in the dawn of the year 2000].

EGb 761 is a standardized extract of dried leaves of Ginkgo biloba containing 24% ginkgo-flavonol glycosides, 6% terpene lactones such as ginkgolides A, B, C, J and bilobalide. Its broad spectrum of pharmacological activities allows it to be in adequacy to the numerous pathological requirements--hemodynamic, hemorheological, metabolic--which occur in cerebral, retinal, cochleovestibular, cardiac or peripheral ischemia. Moreover, EGb 761 has direct effects against necrosis and apoptosis of neurons and improves neural plasticity as evidenced in vestibular compensation. At the molecular and the cellular levels, some evidence obtained with animal models indicates that EGb 761 can interact as a free radical-scavenger and a inhibitor of lipid peroxidation with all, or nearly all reactive oxygen species; maintains ATP content by a protection of mitochondrial respiration and preservation of oxidative phosphorylations; exerts arterial and venous vasoregulator effects involving the release of endothelial factors and the catecholaminergic system. Moreover, EGb 761 regulates ionic balance in damaged cells and exerts a specific and potent Platelet-activating factor antagonist activity. Numerous well-controlled clinical studies, realized in Europe and in USA, have revealed that EGb 761 is an effective therapy for a wide variety of disturbances of cerebral function, ranging from cerebral impairment of ischemic vascular origins (i.e. multi infarct dementia), early cognitive decline to mild-to-moderate cases of the more severe types of senile dementias (including Alzheimer's disease) or mixed origins (i.e. psychoorganic origin). Improvement of signs and symptoms have been demonstrated for cognitive functions, particularly for memory loss, attention, alertness, vigilance, arousal and mental fluidity. Some clinical studies have showed that EGb 761 treatment may improve the capacity of geriatric patients to cope with the stressful demands of daily life. The explanation is a dual stress-alleviating action of EGb 761: its facilitates behavioral adaptation to stress and may decrease the excess of cortisol release to stress. Moreover, EGb 761 shows a specific neuroprotective effects to hippocampic cells. Regarding the visual system, experimental studies have shown that EGb 761 can inhibit or reduce the functional retinal impairments resulting from ischemia-reperfusion, photo-degeneration, diabetic or proliferative retinopathy. Clinical studies have revealed that EGb 761 may be useful in treating visual activity impairments and damages to the visual field associated with chronic cerebrovascular insufficiency, senile macular degeneration and diabete mellitus. Regarding the vestibular and auditory systems, experimental and clinical studies have shown the efficacy of EGb 761 in treating hypoacusis, tinnitus, vertigo, dizziness and other symptoms of vestibulocochlear disorders. At least, adequatly controlled studies in patients with peripheral arterial occlusive disease have provided good evidence for therapeutic efficacy in intermittent claudication. The future of EGb 761 is undoubtedly in the promise in slowing the progression of Alzheimer's disease. Indeed, two recent american clinical studies have shown the efficacy and safety of EGb 761 in patients with mild to severe Alzheimer's disease and multi-infarct dementia. In clinical terms, progression of symptoms was delayed by approximately 6 months. Actually new clinical studies are undertaken in USA and Europe. At the dawn of the third millenium (the Sixth for Ginkgo biloba) we propose a state of art about it.

Animals↗

Motor function in young and aged hemiplegic rats: effects of a Ginkgo biloba extract.

We have previously shown beneficial effects of a Ginkgo biloba extract (EGb761-IPSEN) in accelerating functional recovery from hemiplegia induced by unilateral motor cortex ablation. Here, we report the behavioral and histological effects of various dose regimes of EGb761. In young rats (3 months), 10 mg/kg/day for 7 days produced an improvement in motor performance, relative to untreated controls, on the last day of treatment. Applying a priming (P)-maintenance (M) dose regime (P-7 = 7 days, M-21 = 21 days), a P-7 of 50 (all doses expressed in mg/kg/day) and a M-21 of 10 promoted recovery from the second day after surgery. However, in aged rats (26-28 months old) this treatment ameliorated motor performance only after the 10th day of treatment. A P-7 of 100 or 200 and a M-21 of 50 or 100 produced an acceleration of behavioral recovery in aged animals. Improvement was evident by the fifth day of treatment and was maintained after the treatment regimen. These two groups also demonstrated reduced glial fibrillary acid protein (GFAP) immunostaining and ex vacuo hydrocephalus. Thus, the confirmed efficacy of EGb in hemiplegic rats can be enhanced by an appropriate posology.

Aging↗

The protective effect of Ginkgo biloba extract on CCl4-induced hepatic damage.

The aim of this study was to evaluate the protective effect of Ginkgo biloba extract on CCl4-induced hepatic damage in rats. Hepatic malondialdehyde, glutathione and hydroxyproline levels and histopathologic alterations in liver specimens were assessed. 200 mg/kg/day Ginkgo biloba extract were given orally to the animals for 10 days, then a single dose of 2 ml/kg b.w. carbon tetrachloride was, administered intraperitoneally. Ginkgo biloba extract treatment reduced hepatic malondialdehyde levels significantly (p < 0.05), but did not alter glutathione (p > 0.05) and hydroxyproline levels (p > 0.05). The light and electron microscopic findings showed that Ginkgo biloba extract limited the CCl4-induced hepatocyte necrosis and atrophy. These results suggest that this extract may protect the hepatocytes from carbon tetrachloride-induced liver injury.

Animals↗

Effects of Ginkgo biloba extract on cytoprotective factors in rats with duodenal ulcer.

AIM: To investigate the effects of Ginkgo biloba extract on cytoprotective factors in rats with duodenal ulcer. METHODS: Sprague-Dawley rats were randomly divided into four groups: sham operation without ginkgo, sham operation with ginkgo, duodenal ulcer without ginkgo, and duodenal ulcer with ginkgo. Rats with duodenal ulcer were induced by 500 mL/L acetic acid. Rats with ginkgo were intravenously injected with Ginkgo biloba extract from the tail at a dose of 0.5 mg/(kg/d) for 7 and 14 days. RESULTS: Pathological result showed that duodenal ulcer rats with ginkgo improved mucosal healing and inflammation compared with those without ginkgo after 7 d treatment. After 14 d treatment, duodenal ulcer rats with ginkgo significantly increased weight gain (34.0+/-4.5 g versus 24.5+/-9.5 g, P<0.05) compared with those without ginkgo. Duodenal ulcer rats significantly increased cell proliferation (27.4+/-4.0 and 27.8+/-2.3 BrdU-labeled cells in duodenal ulcer rats with and without ginkgo versus 22.4+/-3.5 and 20.8+/-0.5 BrdU-labeled cells in sham operation rats with and without ginkgo, P<0.05) compared with sham operation rats. Mucosal prostaglandin E(2) concentration significantly increased by 129% (P<0.05) in duodenal ulcer rats with ginkgo compared with that in those without ginkgo. Duodenal ulcer rats without ginkgo significantly decreased superoxide dismutase activity in the duodenal mucosa and erythrocytes (19.4+/-6.7 U/mg protein versus 38.1+/-18.9 U/mg protein in the duodenal mucosa, and 4.87+/-1.49 U/mg protein versus 7.78+/-2.16 U/mg protein in erythrocytes, P<0.05) compared with sham operation rats without ginkgo. However, duodenal ulcer rats with ginkgo significantly increased erythrocyte superoxide dismutase activity (8.22+/-1.92 U/mg protein versus 4.87+/-1.49 U/mg protein, P<0.05) compared with those without ginkgo. Duodenal ulcer rats without ginkgo significantly increased plasma lipid peroxides (4.18+/-1.12 micromol/mL versus 1.60+/-1.10 micromol/mL and 1.80+/-0.73 micromol/mL, P<0.05) compared with sham operation rats without ginkgo and duodenal ulcer rats with ginkgo during the experimental period. CONCLUSION: Ginkgo biloba extract can improve weight gain and mucosal healing in duodenal ulcer rats by the actions of cytoprotection and antioxidation.

Acetic Acid↗

Effects of Ginkgo biloba extract on number and activity of endothelial progenitor cells from peripheral blood.

The aim of this study is to investigate whether Ginkgo biloba extract can augment endothelial progenitor cells numbers, and promote the cells' proliferative, migratory, adhesive, and in vitro vasculogenesis capacity. Total mononuclear cells were isolated from peripheral blood by Ficoll density gradient centrifugation, and then the cells were plated on fibronectin-coated culture dishes. After 7 days culture, attached cells were stimulated with Ginkgo biloba extract (to make a series of final concentrations: 10 mg/L, 25 mg/L, and 50 mg/L) or vehicle control for the respective time points (6 hours, 12 hours, 24 hours, and 48 h). Endothelial progenitor cells were characterized as adherent cells double positive for DiLDL-uptake and lectin binding by direct fluorescent staining under a laser scanning confocal microscope. They were further documented by demonstrating the expression of KDR, VEGFR-2, and AC133 with flow cytometry. Endothelial progenitor cells proliferation, migration, and in vitro vasculogenesis activity were assayed with 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyltetrazolium bromide assay, modified Boyden chamber assay, and in vitro vasculogenesis kit, respectively. Endothelial progenitor cells adhesion assay was performed by replating those on fibronectin-coated dishes, and then counting adherent cells. Incubation of isolated human mononuclear cells with Ginkgo biloba extract dose- and time-dependently increased the number of endothelial progenitor cells, maximum at 25 mg/L, 24 hours (approximately 1-fold increase, P < 0.01). In addition, Ginkgo biloba extract also dose- and time-dependently promoted endothelial progenitor cells proliferative, migratory, adhesive, and in vitro vasculogenesis capacity. The results of the present study defined a novel functional effect of Ginkgo biloba extract: the augmentation of endothelial progenitor cells with enhanced functional activity.

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[Clinical psychopharmacology of Ginkgo biloba extract].

From this general review of the pharmacological, psychopharmacological and clinical studies performed with Ginkgo biloba extract, the following conclusions can be drawn: the drug seems to be effective in patients with vascular disorders, in all types of dementia and even in patients suffering from cognitive disorders secondary to depression, because of its beneficial effects on mood. Of special concern are people who are just beginning to experience deterioration in their cognitive function. Ginkgo biloba extract might delay deterioration and enable these subject to maintain a normal life and escape institutionalization. In addition, Ginkgo biloba extract appears to be a safe drug, being well tolerated, even in doses many times higher than those usually recommended.

Aging↗