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Aqueous ethanolic extract of St. John's wort (Hypericum perforatum L.) induces growth inhibition and apoptosis in human malignant cells in vitro.

Extracts of Hypericum perforatum (St. John's wort) are widely and effectively used in the treatment of mild to moderate depression. In addition, hypericin, a component of Hypericum p. extracts, exhibits light-dependent phototoxic properties and can be used in phototherapy. We therefore investigated the cytotoxic activity of two total Hypericum p. extracts, namely from fresh and dried plants in the dark and after exposure to 7.5 J/cm2 white light illumination and compared it with the effect of hypericin on K562, U937, LN229 glioblastoma cell lines and normal human astrocytes. The chemical toxicity of non-illuminated Hypericum p. extracts in the cells tested is low as expressed by a LC50 between 1.9-4.1 mg/ml, which corresponds to 10.3-17.3 microM hypericin and 114.4-190.7 microM hyperforin after 48 h treatment. Hypericum p. extracts induced dose-dependent growth arrest of human malignant cells in the absence of illumination with GI50 values between 0.43-1.77 mg/ml (2.3-9.7 microM hypericin, 26.1-106.7 microM hyperforin) for the fresh plant extract and 0.59-3.03 mg/ml (2.5-12.8 microM hypericin, 24.2-124.7 microM hyperforin) for the dried extract. The growth inhibitory effect of fresh Hypericum p. extract was more pronounced in leukemia cell lines K562 and U937, the GI50 concentrations being about 7-fold lower than the corresponding LC50 for the cell lines K562 and U937, but almost the same as the LC50 for LN229 and NHA cells. GI50 (microgram/ml) for tumor cell lines K562 and U937 (432 and 799) established after 48 h differed significantly (p < 0.05) from those of LN229 and normal human astrocytes (1767 and 2900). The light-exposed extracts were more toxic, their LC50 and GI50 values were reduced to values corresponding to LC50 concentration of 3.7-7.4 microM and a GI50 of 1.3-3.5 microM for phototoxic hypericin. After exposure to light, there was a significant difference (p = 0.006) between the GI50 of glioblastoma LN229 cells (582 micrograms/ml) and normal human astrocytes (1050 micrograms/ml). Morphological examination by light microscopy and phosphaditylserine exposure on the outer plasma membrane investigated by Annexin V-binding with flow cytometry after 24 h confirmed that Hypericum p. extracts caused apoptosis of treated cells without exposure to light. Hypericum p. extracts derived from fresh herbs and from dried herbs which differ in their levels of phloroglucinols (hyperforin and adhyperforin) were compared. The hyperforin content of fresh St. John's wort extract exceeded that of dried plant extract by 47% and the GI50 values of fresh plant extract were 73%, 77% and 58% of those established for dried extract in the three malignant cell lines K562, U937 and LN229 in the dark (p < 0.05). Under white light (7.5 J/cm2), both extracts exerted comparable growth inhibitory and apoptosis inducing effects due to the phototoxicity of hypericin, the corresponding concentrations of which were in the range of 1.3-3.5 microM. The data reported in this study suggest that illumination is not essential for the growth inhibitory and apoptotic effects of Hypericum p. extracts, but light activation potentiates them. Furthermore, the constituent hyperforin is at least partly responsible for these effects in the dark.

Annexin A5↗

Topical application of St John's wort (Hypericum perforatum L.) and of its metabolite hyperforin inhibits the allostimulatory capacity of epidermal cells.

St John's wort (Hypericum perforatum) is a traditional herbal medicine that is used for the topical treatment of superficial wounds, burns and dermatitis. The characteristic metabolites of St John's wort are the photodynamic active plant pigment hypericin and the phloroglucin-derivative hyperforin. To date, no studies on immunomodulatory properties of topical preparations of St John's wort have been performed. Here, we investigated the alloantigen presenting function of human epidermal cells (EC) exposed to Hypericum ointment in vivo in a mixed EC lymphocyte reaction (MECLR). The effect of Hypericum ointment was compared with the immunosuppressive effect of solar-simulated radiation (SSR). Subsequently, we tested purified hyperforin in vivo and in vitro in a MECLR to evaluate its possible contribution to the effect of the Hypericum ointment. Furthermore, we assessed the effect of hyperforin on the proliferation of peripheral blood mononuclear cells (PBMC) in vitro. Compared with untreated skin, treatment with Hypericum ointment resulted in a significant suppression of the MECLR (P </= 0.001) that was similar to the effect of SSR. The combination of Hypericum ointment plus SSR was not significantly different from either treatment alone. EC isolated from skin treated with the hyperforin containing ointment also showed a reduced capacity to stimulate the proliferation of allogeneic T cells (P </= 0.001). Similarly, in vitro incubation of EC with hyperforin suppressed the proliferation of alloreactive T cells (P </= 0.001). Furthermore, hyperforin inhibited the proliferation of PBMC in a dose-dependent manner, without displaying pronounced toxic effects as determined by Trypan blue staining. The results demonstrate an inhibitory effect of Hypericum extract and of its metabolite hyperforin on the MECLR and on the proliferation of T lymphocytes that may provide a rationale for the traditional treatment of inflammatory skin disorders with Hypericum extracts.

Adjuvants, Immunologic↗

Investigation of the effect on photosensitivity following multiple oral dosing of two different hypericum extracts in healthy men.

The naphthodiantrones hypericin and pseudohypericin, ingredients of hypericum extracts, are known as potent photosensitizers that may cause phototoxic effects in grazing animals after excessive ingestion of hypericum species and in some cases in higher concentrations of hypericum extracts oder pure hypericin in humans as well. Therefore, the objective of the present studies was to investigate the effect of two different hypericum extracts (STW 3, STW 3-VI) on photosensitivity with respect to minimal erythema dose (MED) after 14 days treatment. Both open, multiple-dose, one-phase studies were conducted in 20 healthy men, receiving one tablet per day. MED values were determined prior to hypericum extract administration (baseline) and after 14 days treatment using an erythem tester emitting a light very similar to sun light (main emission spectrum: 285-350 nm). Skin reactions with respect to MED were evaluated 12 h, 24 h (primary endpoint), 48 h and 7 days after irradiation. All volunteers reached steady-state of hypericin/pseudohypericin plasma concentrations before study day 14, when the irradiation under treatment conditions took place. In all subjects MED was measurable under baseline and under hypericum treatment conditions. With respect to the primary endpoint, in both studies, mean MED (24 h) were not significantly different between baseline and after 14 days hypericum treatment. However, individually photosensitivity of the skin could increase under treatment conditions, just as well photosensitivity could decrease or remain unchanged. There were no clinically relevant changes in the laboratory parameters, the vital signs, physical findings and other observations related to safety during the examinations. In one study (STW 3), two adverse events were reported, both described as hypersensitivity to light in mild Intensity. The two studies showed that treatment with the two hypericum extracts under steady state and under prescribed conditions were safe medications without significant increases of photosensitivity.

Adolescent↗

Interleukin-6 involvement in antidepressant action of Hypericum perforatum.

Hypericum, a plant widely used as antidepressant has been shown to interact with the immune system. We studied the effects of the administration of the Hypericum perforatum extract Ph-50, a Hypericum extract, standardized to flavonoids (50%) and containing 0.3% of hypericin and 4.5% of hyperforin in a forced swimming test and tryptophan, serotonin (5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) diencephalic content using a high performance liquid chromatography method in male interleukin-6 (IL-6) knock-out (IL-6(-/-)) and wild type (IL-6(+/+)) mice. Hypericum extract (Ph-50; 500 mg/kg) oral acute administration reduced the immobility time of wild type, but not of knockout mice. Tryptophan content was not modified by Hypericum in all the animal groups. Serotonin and 5-HIAA diencephalic content was increased by Hypericum in both wild type and knockout mice. However, the increase observed in the wild type was greater than in knockout mice. These data indicate that IL-6 could be necessary to the antidepressant action of Hypericum, and that this cytokine (probably) mediates the effects of Hypericum through activation of the serotonin system.

Administration, Oral↗

A preliminary investigation on the acute pharmacodynamic effects of hypericum on cognitive and psychomotor performance.

Research has indicated that the herb St John's Wort (Hypericum perforatum) has comparable efficacy to conventional antidepressants in the treatment of depression. Although clinical studies have demonstrated that hypericum has a superior side-effect profile compared to standard antidepressants, no study has directly compared the cognitive and psychomotor effects of hypericum with those of other antidepressants. The aim of the current study was to examine the acute effects of hypericum on cognitive and psychomotor function, and to compare its effects with those of amitriptyline. Thirteen healthy volunteers received an acute dose of placebo, amitriptyline (25 mg, positive control) or hypericum (900 mg or 1800 mg) in a double-blind, placebo-controlled design. Cognitive and psychomotor tests and subjective measures of sedation were administered before and 1, 2 and 4 hours after drug administration. Amitriptyline impaired performance on a battery of psychological tests, which included critical flicker fusion (CFF), choice reaction time (CRT), digit symbol substitution test (DSST), profile of mood states (POMS) and the line analogue rating scale (LARS), while hypericum had neutral effects on performance in these tests. However, hypericum induced a dose-related impairment on DSST. Current findings suggest that clinical doses of hypericum do not impair attention, sensorimotor function or information processing.

Adult↗

Acute treatment of moderate to severe depression with hypericum extract WS 5570 (St John's wort): randomised controlled double blind non-inferiority trial versus paroxetine.

OBJECTIVE: To investigate the efficacy of hypericum extract WS 5570 (St John's wort) compared with paroxetine in patients with moderate to severe major depression. DESIGN: Randomised double blind, double dummy, reference controlled, multicentre non-inferiority trial. SETTING: 21 psychiatric primary care practices in Germany. PARTICIPANTS: 251 adult outpatients with acute major depression with total score > or = 22 on the 17 item Hamilton depression scale. INTERVENTIONS: 900 mg/day hypericum extract WS 5570 three times a day or 20 mg paroxetine once a day for six weeks. In initial non-responders doses were increased to 1800 mg/day hypericum or 40 mg/day paroxetine after two weeks. MAIN OUTCOME MEASURES: Change in score on Hamilton depression scale from baseline to day 42 (primary outcome). Secondary measures were change in scores on Montgomery-Asberg depression rating scale, clinical global impressions, and Beck depression inventory. RESULTS: The Hamilton depression total score decreased by mean 14.4 (SD 8.8) points, corresponding to 56.6% (SD 34.3%) of the baseline value, in the hypericum group and by 11.4 (SD 8.6) points (44.8% (SD 33.5%) of baseline value) in the paroxetine group (intention to treat analysis; similar results were observed in the per protocol analysis). The intention to treat analysis (lower one sided 97.5% confidence limit 1.5 points for the difference hypericum minus paroxetine) and the per protocol analysis (lower confidence limit 0.7 points) showed non-inferiority of hypericum and statistical superiority over paroxetine. The lower limits in both cases exceeded the pre-specified non-inferiority margin of -2.5 points and the superiority margin of 0. The incidence of adverse events was 0.035 and 0.060 events per day of exposure for hypericum and paroxetine, respectively. CONCLUSIONS: In the treatment of moderate to severe major depression, hypericum extract WS 5570 is at least as effective as paroxetine and is better tolerated.

Antidepressive Agents, Second-Generation↗

Extracts and constituents of Hypericum perforatum inhibit the binding of various ligands to recombinant receptors expressed with the Semliki Forest virus system.

Extracts, fractions and constituents of Hypericum perforatum were studied for in vitro receptor binding with various ligands to recombinant CNS receptors expressed with the Semliki Forest virus expression system. For this purpose we have prepared membranes of CHO cells with high density of several opioid, serotonin, estrogen, histamine, GABAA, neurokinin and metabotropic glutamate receptors, respectively. A lipophilic Hypericum fraction revealed relatively potent inhibition to the binding of the mu-, delta- and kappa-opioid and the 5-HT6 and 5-HT7 receptors. Moreover, Hypericum constituents such as the naphthodianthrones, hypericin and pseudohypericin, and the phloroglucinole hyperforin inhibited both binding to the opioid and serotonin receptors in the lower micromolar range. Estrogen binding was 50% inhibited by the biflavonoid I3,II8-biapigenin at micromolar concentration. The lipophilic Hypericum fraction provided a less potent inhibition of the neurokinin-1 receptor binding compared to the opioid and serotonin receptors. A total ethanolic Hypericum extract potently inhibited GABAA binding at approximately 3 micrograms/ml. This inhibition is however not specific to Hypericum, since extracts of plants like Valeriana officinalis and Passiflora incarnata showed similar inhibitions. Binding to neither histamine nor metabotropic glutamate receptors was affected by Hypericum extracts. These results support the hypothesis that several active constituents of Hypericum might in a synergistic way contribute to its antidepressant effect in the central nervous system.

Animals↗

[Topical treatment of atopic dermatitis with Hypericum cream. A randomised, placebo-controlled, double-blind half-side comparison study].

BACKGROUND: Recent investigations suggest an anti-inflammatory and antibacterial effect of hyperforin, which is a major constituent of Hypericum perforatum L. (Saint John's wort). OBJECTIVE: In a half-side comparison study we assessed the efficacy of a cream containing Hypericum extract standardized to 1.5% hyperforin (verum) in comparison to the corresponding vehicle (placebo) for the treatment of subacute atopic dermatitis. The study design was a prospective randomized placebo-controlled double-blind single center study. METHODS: In twenty one patients suffering from mild to moderate atopic dermatitis (mean SCORAD 44.5) the treatment with verum or placebo was randomly allocated to the left or right site of the body, respectively. The patients were treated twice daily over a period of four weeks. Eighteen patients completed the study. The severity of the skin lesions on the left and right site was determined by means of a modified SCORAD-index (primary endpoint). RESULTS: The intensity of the eczematous lesions improved on both sites of treatment. However, the Hypericum cream was significantly superior to the vehicle at all clinical visits (days 7, 14, 28) (p<0.05). Skin colonization with Staphylococcus aureus was reduced by both verum and placebo, showing a trend to better antibacterial activity of the Hypericum cream (p=0.064). Skin tolerance and cosmetic acceptability was good or excellent with both the Hypericum cream and the vehicle (secondary endpoints). CONCLUSION: Hypericum cream was significantly superior to its vehicle in the topical treatment of mild to moderate atopic dermatitis. The therapeutic efficacy of the Hypericum cream should be evaluated in further studies with larger patient cohorts, in comparison to standard therapeutic agents (i.e. corticosteroids).

Adolescent↗

St. John's wort (Hypericum perforatum): a review of the current pharmacological, toxicological, and clinical literature.

RATIONALE: St. John's wort (Hypericum perforatum) has recently gained popularity as an alternative treatment for mild to moderate depression. Given the current widespread use of this herbal remedy, it is important for medical professionals to understand the potential pharmacological pathways through which Hypericum may exert an antidepressant effect. OBJECTIVES: (1) To review the current pharmacological, toxicological, and clinical literature available on Hypericum, and (2) to provide a synthesis of this information into a form that may be easily used by health care providers. METHOD: A comprehensive review of the recent scientific literature (January 1990-March 2000) was performed using the following electronic databases and reference publications: MEDLINE, The Cochrane Library, HealthSTAR, Current Contents (all editions), European Scientific Cooperative on Phytotherapy monographs, German Commission E monographs, and the Physicians' Desk Reference for Herbal Medicines, 1st edition. RESULTS: One hundred and seven (107) publications in the English language and three publications in German were included in the review. Collectively, the data suggest that therapeutic preparations of Hypericum extract appear to exert potentially significant pharmacological activity within several neurochemical systems believed to be implicated in the pathophysiology of depression. However, little information exists regarding the safety of Hypericum, including potential herb-drug interactions. CONCLUSIONS: Additional research on the pharmacological and biochemical activity of Hypericum and its several bioactive constituents is necessary to further elucidate the mode(s) of antidepressant action. Given what is currently known and unknown about the biological properties of Hypericum, those who choose to use this herb should be closely monitored by a physician.

Animals↗

Hypericum pollen determines the presence of burglars at the scene of a crime: an example of forensic palynology.

Two male intruders entered a house in which the sole female occupant slept having left the back door unlocked for the return of her live-in boyfriend. She awoke and saw strangers in her bedroom. The intruders ran off, one leaving a jacket behind on the kitchen floor. One of the intruders subsequently returned to recover his jacket, but in his rush to leave the house he brushed against a flowering Hypericum bush growing just outside the back door. A suspect was arrested later that day and charged with indecent assault on a female and burglary, but denied any involvement and refused to name any associate. A day following the offence the suspect's clothes were taken for forensic examination. Pollen analysis of selected parts of his clothing showed that his track pants contained 14% Hypericum pollen, denim jacket 24%, and polo shirt 27.5%. Traces of Hypericum pollen occurred on other items. Most of these pollen grains still had their cell contents preserved and were on the clothing in clumps consistent with having recently been collected by the clothing and not having been aerially dispersed. The pollen from the Hypericum bush was identical in colour, shape, development, and size range to the pollen from the clothing. The clothes had so much Hypericum pollen on them that they had to have been in direct and intimate contact with a flowering bush. Pollen evidence is by its nature circumstantial and often cannot be used on its own to convict, or more strictly to determine the truth. The suspect may have been in contact with Hypericum elsewhere, but detailed investigations indicated that this was unlikely. In 30 years of New Zealand forensic work Hypericum had only ever been found on clothing in trace amounts. This is but one way in which forensic palynology can assist law enforcement agencies to determine the history behind a criminal action, and demonstrates that forensic palynology should be considered as an integral part of any criminal investigation.

Botany↗

Hypericum perforatum as a nootropic drug: enhancement of retrieval memory of a passive avoidance conditioning paradigm in mice.

Depression, among other non-cognitive symptoms, is common in patients with dementia. The effect of Hypericum perforatum (St. John's Wort) extract, with well-documented antidepressant activity, was tested on memory retrieval 24 h after training on a one-trial passive avoidance task in mice. Acute administration of Hypericum extract (4.0, 8.0, 12.0, and 25.0 mg/kg i.p.) before retrieval testing increased the step-down latency during the test session. The same doses of Hypericum extract, on the other hand, failed to reverse scopolamine-induced amnesia of a two-trial passive avoidance task. The involvement of serotonergic, adrenergic, and dopaminergic mechanisms in the facilitatory effect of Hypericum extract on retrieval memory was investigated. Pretreatment of the animals with serotonergic 5-HT1A receptor antagonist (-)-pindolol (0.3, 1.0, and 3.0 mg/kg), serotonergic 5-HT2A receptor blocker spiperone (0.01, 0.03, and 0.1 mg/kg), alpha adrenoceptor antagonist phentolamine (1, 5, and 10 mg/kg), beta receptor antagonist propranolol (5, 7.5, and 10 mg/kg), dopaminergic D1 receptor antagonist SCH 23390 (0.01, 0.05, and 0.1 mg/kg), and dopaminergic D2 receptor antagonist sulpiride (5, 7.5, and 10 mg/kg) revealed the involvement of adrenergic and serotonergic 5-HT1A receptors in the facilitatory effect of Hypericum extract on retrieval memory. It is concluded that Hypericum extract may be a better alternative for treatment of depression commonly associated with dementia than other antidepressants known to have anticholinergic side effects causing delirium, sedation and even exacerbating already existing impaired cognition. In dementias of old age, Hypericum perforatum would, therefore, serve as one medication targeting both depression and amnesia with lower potential side effects.

Amnesia↗

Impact of hypericum (St.-John's-wort) given prenatally on cognition of mice offspring.

This study investigated the cognitive impact of prenatal exposure to the herbal antidepressant hypericum in CD-1 mice. Hypericum (182 mg/kg/day) or a placebo was consumed in food bars for 2 weeks before mating and throughout gestation. The hypericin content in our hypericum formulation was in the middle range of standardized hypericum products. One offspring per gender from each litter (hypericum 13, placebo 12) was tested on each of the following tasks: juvenile runway with adult memory, adult Morris maze, adult passive avoidance, or adult straight water runway followed by a dry Cincinnati maze. Learning occurred in both genders in all tasks (P<.003) with no significant differences between treatments at the final trial. Female offspring exposed to hypericum, rather than to a placebo, required more time to learn the Morris maze task (P<.05). Postlearning sessions did not show any significant differences. In conclusion, prenatal exposure to a therapeutic dose of hypericum did not have a major impact on certain cognitive tasks in mice offspring.

Animals↗

Comparison of hypericum extracts with imipramine and fluoxetine in animal models of depression and alcoholism.

Clinical evidence suggests that hypericum extracts (Hypericum perforatum L., St. John's wort) have antidepressive properties and may offer an interesting alternative for the treatment of mood disorders. In addition, hypericum extracts, as well as standard antidepressants such as the tricyclic, impramine, and the selective serotonin reuptake inhibitor, fluoxetine, have been reported to be of therapeutic benefit in the treatment of alcoholism, as these compounds may reduce alcohol craving and/or intake in particular subgroups of patients. It was the aim of the present study to compare the effects of hypericum extracts with those of imipramine and fluoxetine in the rat forced swimming test (RFST), a model of depression, as well as in cAA rats, a genetic model of alcoholism. In the RFST, triple i.p. administration of imipramine (3-30 mg/kg) and fluoxetine (3-30 mg/kg) induced a dose-dependent reduction in immobility: the minimal effective dose (MED) being 30 and 10 mg/kg, and the maximal effect being 50% and 57% immobility reduction, for imipramine and fluoxetine, respectively. In this test, the hypericum extracts Ze 117 (Remotiv) and LI 160 (Jarsin) also induced a statistically significant reduction of immobility when administered under the same application schedule (5-40 mg/kg, i.p., triple application). In the case of the hypericum extracts the dose-response relationship was inverted U-shaped with a MED value of 20 mg/kg and a maximal effect of 41% and 32% immobility reduction, for Ze 117 and LI 160, respectively. Interestingly, the anti-immobility effects tended to be more pronounced after subacute (1 week, B.I.D.) treatment with 10 mg/kg of imipramine, fluoxetine, or Ze 117, as compared with acute treatment. This phenomenon is in accordance with clinical experience and suggests that repeated treatment is required for full development of antidepressive effects. In the alcohol-preferring cAA rats, acute i.p. administration of imipramine (3-30 mg/kg), fluoxetine (1-10 mg/kg) and Ze 117 (10-40 mg/kg) dose-dependently reduced alcohol intake in a 12-h limited access two-bottle [ethanol 10% (v/v) versus water] choice procedure: with MED values of 30, 5 and 20 mg/kg, respectively. The anti-alcohol effects of fluoxetine and Ze 1-17 appeared to be specific, as reductions in alcohol intake coincided with reductions in alcohol preference. The present study suggests that hypericum extracts have antidepressant-like properties which resemble those of clinically established antidepressants, and that Remotiv may be an interesting adjunct for the treatment of alcoholism.

Alcoholism↗

Effect of the Hypericum perforatum extract on serotonin turnover in the mouse brain.

St. John's Wort, a traditional herbal medicine obtained from the extract of Hypericum perforatum, has been used in the treatment of mild depression. Its mechanism of action remains to be established. The present study confirmed that Hypericum extract exhibited very weak inhibitory activities towards MAO. Mouse brain MAO activities was unchanged following either acute or chronic treatment with Hypericum extract. 5-HIAA levels were found to be significantly increased in the cerebral cortex, hypothalamus, hippocampus and caudate 3 h after treatment with the Hypericum extract at a dose as low as 10 mg/Kg. An increase of 5-HT levels was also observed in hypothalamus and hippocampus. The increase of brain 5-HIAA was not further enhanced following chronic administration of the herb. The Hypericum extract significantly reduced the plasma tryptophan levels, the precursor of 5-HT. The action of Hypericum extract is consistent with the notion that serotonergic system is involved. The effect of Hypericum extract on the brain 5-HIAA and 5-FIT levels appeared to be quite different from the effect of classical 5-HT re-uptake blockers.

Animals↗

Effect of acute administration of hypericum perforatum-CO2 extract on dopamine and serotonin release in the rat central nervous system.

The hydromethanolic extract of Hypericum perforatum has been shown to be an effective antidepressant, although its mechanism of action is still unclear. In this study, in vivo microdialysis was used to investigate the effects of Hypericum perforatum-CO2 extract on dopamine (DA), 3,4-dihydroxyphenylacetic acid (DOPAC), serotonin (5-HT), and 5-hydroxyindoleacetic acid (5-HIAA) release in various areas of brain. Administration of Hypericum perforatum extract (1 mg/kg, p.o.) caused a slight, but significant increase of DA outflow both in the nucleus accumbens and the striatum. The maximal increase of DA efflux (+19.22+/-1.93%, relative to the control group) in the nucleus accumbens occurred 100 min after administration of Hypericum perforatum. In the striatum, the extract maximally enhanced DA outflow (+24.83+/-7.49 %, relative to the control group) 80 min after administration. Extraneuronal DOPAC levels were not significantly affected by Hypericum perforatum treatment. Moreover, Hypericum perforatum (1 mg/kg, p.o.) did not produce any significant effect on either 5-HT or 5-HIAA efflux in the ventral hippocampus. This study shows for the first time that Hypericum perforatum extract is capable of increasing in vivo DA release.

3,4-Dihydroxyphenylacetic Acid↗

Serotonin, norepinephrine and dopamine involvement in the antidepressant action of hypericum perforatum.

Hypericum perforatum is considered an effective alternative to the synthetic antidepressants in the treatment of mild-to-moderate depression. Recently, we showed that the effects on neurotransmitter contents in different brain regions of laboratory animals are more evident after administration of hypericum extracts containing a higher concentration of flavonoids, thus suggesting that these compounds are important in the antidepressant action of hypericum perforatum. We studied the effects of Ph-50, a hypericum extract standardized to flavonoids (50%) and containing 0.3% hypericin and 4.5% hyperforin on brain serotonin content, norepinephrine and dopamine by a high-performance liquid chromatography method in discrete brain areas (cortex, diencephalon and brainstem) in male Sprague-Dawley rats. Moreover, we evaluated the effects of Ph-50 alone or in association with sulpiride (a dopamine receptor antagonist), metergoline (a serotonin receptor antagonist) and 6-hydroxydopamine (6-OH-DA, destroying norepinephrine-containing neurons) using a forced-swimming test in the rat. Hypericum extract (Ph-50; 250-500 mg/kg) with acute oral administration enhanced serotonin, norepinephrine and dopamine content in the brain and reduced the immobility time of rats in the forced-swimming test. Sulpiride, metergoline and 6-OH-DA significantly increased the period of immobility in the forced-swimming test for the rats receiving hypericum extract (Ph-50). The results indicate that the neurotransmitters studied could be involved in the anti-immobility effects of hypericum, and suggest that its antidepressant action is probably mediated by serotonergic, noradrenergic and dopaminergic system activation.

Animals↗

Clinical trials with hypericum extracts in patients with depression--results, comparisons, conclusions for therapy with antidepressant drugs.

By the spring of 2002, results from 34 controlled, double-blind trials of Hypericum extracts in some 3000 patients, predominantly with mild to moderate forms of depression, had been published. An overview is given of the studies conducted since 1990. In the majority of them, the efficacy criterion (primary endpoint) was the score and/or response rate on the Hamilton Rating Scale of Depression (HAMD). In ten studies, based on extracts prepared with 50% or 60% ethanol in water (V/V), the dosages ranged from 300 mg to 1050 mg of extract per day. Five of the ten studies were placebo-controlled and in all five cases, the Hypericum extract was shown to be significantly superior. Results with Hypericum were as good or even better than with imipramine or fluoxetine. In the period since 1990, a total of twelve controlled trials have been published with one particular extract prepared with 80% methanol in water (V/V), of which six were placebo-controlled, two compared Hypericum with imipramine and one each with maprotiline, amitriptyline, sertraline or light therapy. Dosages ranged from 450-1200 mg extract per day. Statistical analysis of the total Hamilton scores showed significant differences between Hypericum extract and placebo in four of the six placebo-controlled studies and a trend in favour of the active treatment in the other two. Of the five comparative trials against four different synthetic antidepressants, amitriptyline was significantly superior to Hypericum after six weeks of therapy, whilst there were no significant differences in treatment outcome between Hypericum and the other synthetics in the remaining four studies. The results of the trials conducted to date show no major differences in efficacy of the alcoholic extracts. Taking all the results into account, it can be assumed that the threshold dose for efficacy against individual symptoms and complaints that occur in the course of the depressive illness could be about 300 mg of extract per day. In the medically supervised treatment of mild to moderate depression, doses of approximately 500-1000 mg of extract per day of these preparations of St. John's Wort are of comparable efficacy to synthetic antidepressants in their normally prescribed dosages.

Antidepressive Agents↗

Hypericum extract versus imipramine or placebo in patients with moderate depression: randomised multicentre study of treatment for eight weeks.

OBJECTIVES: To assess the efficacy and safety of hypericum extract (STEI 300, Steiner Arzneimittel, Berlin) compared with imipramine and placebo in patients in primary care with a current episode of moderate depression. DESIGN: Randomised, double blind, multicentre, parallel group trial for 8 weeks. SETTING: Trained panel of 18 general practitioners from four German states: Bavaria, Berlin, Rhineland Palatinate, and Saxony. PARTICIPANTS: 263 patients (66 men, 197 women) with moderate depression according to ICD-10 (international classification of diseases, 10th revision) codes F32. 1 and F33.1. INTERVENTIONS: 1050 mg hypericum extract (350 mg three times daily), 100 mg imipramine (50 mg, 25 mg, and 25 mg daily), or placebo three times daily. MAIN OUTCOME MEASURES: Change from baseline score on the 17 item version of the Hamilton depression scale, the Hamilton anxiety scale, the clinical global impressions scale, Zung's self rating depression scale, and SF-36, and adverse events profile. RESULTS: Hypericum extract was more effective at reducing Hamilton depression scores than placebo and as effective as imipramine (mean -15.4 (SD 8.1), -12.1 (7.4), and -14.2 (7.3) respectively). Comparable results were found for Hamilton anxiety and clinical global impressions scales and were most pronounced for the Zung self rating depression scale. Quality of life was more improved in the standardised mental component scale of the SF-36 with both active treatments than with placebo but in the physical component scale was improved only by hypericum extract compared with placebo. The rate of adverse events with hypericum extract was in the range of the placebo group but lower than that of the imipramine group (0.5, 0.6, and 1.2 events per patient respectively). CONCLUSIONS: At an average dose of 350 mg three times daily hypericum extract was more effective than placebo and at least as effective as 100 mg imipramine daily in the treatment of moderate depression. Treatment with hypericum extract is safe and improves quality of life.

Adult↗