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The efficacy of St. John's Wort in patients with minor depressive symptoms or dysthymia--a double-blind placebo-controlled study.

INTRODUCTION: We studied the efficacy of St. John's Wort compared with placebo in patients with minor depressive symptoms or dysthymia, with the main focus on which diagnostic entities are optimally amenable to treatment with two different doses of Hypericum, and which are not. METHODS: One hundred and fifty patients, 25-70 years old, meeting ICD-10 criteria for mild or moderately severe depressed episodes or with dysthymia, and having a 17-item Hamilton Depression Scale for Depression (HAM-D) total score between 7 and 17, were randomly assigned to an extract. The extract, PM235, manufactured by Cederroth International AB, Sweden, was given t.i.d. in a lower (0.12% hypericine) or a higher (0.18% hypericine) formulation, based on 270mg extractions or identical placebo. Clinical response was defined by HAM-D as a 50% reduction and/or a score 7. The Beck Depression Inventory (BDI) and Visual Analog Scales (VAS) were used as secondary efficacy parameters. Measures were conducted at screening, baseline, and after 3 and 6 weeks of treatment. RESULTS: We found a large discrepancy in response between dysthymic and non-dysthymics, the latter seemingly more sensitive to Hypericum. HAM-D showed tendency but no significance toward a more frequent improvement of the non-dysthymics treated with Hypericum (p=0.057). BDI criteria showed significance (p=0.045) for both doses of Hypericum compared to placebo. Pooling high- and low-dose groups together, a significant reduction for HAM-D7 and BDI criteria was found among non-dysthymic patients (p=0.03). Significant improvement in response to Hypericum was found in symptoms reflected by VAS - again only in non-dysthymic patients (p=0.041). DISCUSSION: We observed, a tendency toward a more frequent significant improvement of the non-dysthymic patient treated with PM235, though this did not reach the level of statistical significance. In a secondary analysis, pooling both hypericine-treated groups concluded that Hypericum has a clinical significant effect in minor depressed patients with HAM-D up to 17. This finding was significant only in non-dysthymic patients.

Adult↗

St John's wort for depression--an overview and meta-analysis of randomised clinical trials.

OBJECTIVE: To investigate if extracts of Hypericum perforatum (St John's wort) are more effective than placebo in the treatment of depression, are as effective as standard antidepressive treatment, and have fewer side effects than standard antidepressant drugs. DESIGN: Systematic review and meta-analysis of trials revealed by searches. TRIALS: 23 randomised trials including a total of 1757 outpatients with mainly mild or moderately severe depressive disorders: 15 (14 testing single preparations and one a combination with other plant extracts) were placebo controlled, and eight (six testing single preparations and two combinations) compared hypericum with another drug treatment. MAIN OUTCOME MEASURES: A pooled estimate of the responder rate ratio (responder rate in treatment group/responder rate in control group), and numbers of patients reporting and dropping out for side effects. RESULTS: Hypericum extracts were significantly superior to placebo (ratio = 2.67; 95% confidence interval 1.78 to 4.01) and similarly effective as standard antidepressants (single preparations 1.10; 0.93 to 1.31, combinations 1.52; 0.78 to 2.94). There were two (0.8%) drop outs for side effects with hypericum and seven (3.0%) with standard antidepressant drugs. Side effects occurred in 50 (19.8%) patients on hypericum and 84 (52.8%) patients on standard antidepressants. CONCLUSION: There is evidence that extracts of hypericum are more effective than placebo for the treatment of mild to moderately severe depressive disorders. Further studies comparing extracts with standard antidepressants in well defined groups of patients and comparing different extracts and doses are needed.

Antidepressive Agents↗

Antioxidant properties of some hydroalcoholic plant extracts with antiinflammatory activity.

The hydroalcoholic extracts of Calendula officinalis, Hypericum perforatum, Plantago lanceolata and Glycyrrhiza glabra which exhibited different anti-inflammatory activities were evaluated for the possible mode of action by studying their antioxidant potential. In the present study we investigated if standardized hydroalcoholic extracts of plants such as Calendula officinalis, Hypericum perforatum, Plantago lanceolata and Glycyrrhiza glabra produced by Hofigal Stock Company could modulate the respiratory burst of human activated neutrophils, as a consequence of their antioxidant capacity. Their antioxidant properties were measured using a colorimetric assay (Total Antioxidant Status kit). We demonstrated that Hypericum perforatum and Calendula officinalis hydroalcoholic extracts possessed a significant antioxidant activity while Plantago lanceolata and Glycyrrhiza glabra hydroalcoholic extracts had a minor antioxidant status. Using reactive oxygen species-generating systems (OZ-activated human PMN neutrophils), Calendula officinalis and Hypericum perforatum extracts showed strong reactive oxygen species scavenging property, Hypericum perforatum extract exhibing the highest scavenging activity. These results confirm the potential of Calendula officinalis and Hypericum perforatum investigated hydroalcoholic extracts as medicinal remedies to be used in different inflammatory/allergic diseases. These extracts could be a useful tool for obtaining new antioxidant/anti-inflammatory agents.

Anti-Inflammatory Agents↗

Long-term effects of St. John's wort and hypericin on monoamine levels in rat hypothalamus and hippocampus.

Hypericum perforatum L. (St. John's wort) is one of the leading psychotherapeutic phytomedicines and, because of this, great effort has been devoted to clarifying its mechanism of action. Chronic effects of St. John's wort and hypericin, one of its major active compounds, on regional brain amine metabolism have not been reported yet. We used a high-performance liquid chromatography system to examine the effects of short-term (2 weeks) and long-term (8 weeks) administration of imipramine, Hypericum extract or hypericin on regional levels of serotonin (5-HT), norepinephrine, dopamine and their metabolites in the rat brain. We focused our interest on the hypothalamus and hippocampus, as these brain regions are thought to be involved in antidepressant drug action. Imipramine (15 mg/kg, p.o.), Hypericum extract (500 mg/kg, p.o.), and hypericin (0.2 mg/kg, p.o.) given daily for 8 weeks significantly increased 5-HT levels in the hypothalamus (P<0.05). The 5-HT turnover was significantly lowered in both brain regions after 8 weeks of daily treatment with the Hypericum extract (both P<0.05). Consistent changes in catecholamine levels were only detected in hypothalamic tissues after long-term treatment. Comparable to imipramine, Hypericum extract as well as hypericin significantly decreased 3,4-dihydroxyphenylacetic acid and homovanillic acid levels in the hypothalamus (P<0.01). Our data clearly show that long-term, but not short-term administration of St. John's wort and its active constituent hypericin modify levels of neurotransmitters in brain regions involved in the pathophysiology of depression.

Animals↗

[Saint John's Wort as an antidepressant].

Although in Germany St. John's wort (Hypericum perforatum) is the most widely prescribed antidepressant, in the Netherlands little is known about it. Nevertheless patients ask for it more often or take it as self-medication. There has been much research into the antidepressant efficacy of hypericum extracts, but the methodological quality has been moderate. In recent years studies with a much better design were published in European journals. Hypericum extract in a dosage of 900 mg/day is effective in mild to moderately severe depressed outpatients. Maintenance therapy has not been studied sufficiently yet. The side effect profile is on a placebo level. Recently interactions with other medications were described (decrease of plasma level/clinical efficacy of protease inhibitors, warfarin, theophyllin, cyclosporin, third generation oral contraconceptives, digoxin and phenprocoumon). A patient's request to be treated with hypericum extract can be considered, e.g. if the patient experiences troublesome side effects on other drugs. In case hypericum is the initial antidepressant and the effect falls short of the expectations, treatment with a synthetic standard antidepressant should be applied.

Antidepressive Agents↗

St. John's Wort: clinical status in psychiatry.

Depression and anxiety are among the top 10 health problems for which complementary and alternative therapies (CATs) are most frequently used, and medicinal herbs are among the most popular of these treatments. St. John's wort (Hypericum perforatum) is a perennial herb that has become a widely used depression therapy. Extracts of hypericum have shown affinity for receptors within multiple neurochemical systems. The primary active substance responsible for the antidepressant effect is not well defined, but most work has concentrated specifically on the hypericin and hyperforin components. Although hypericum has demonstrated significant antidepressant and antianxiety effects in multiple studies, there are several recent studies that do not support the previous evidence. In all reported studies, hypericum extracts have been well tolerated. In addition, new psychiatric uses for hypericum in obsessive-compulsive disorder, generalized anxiety disorder, menopausal symptoms, and alcohol dependence have been reported. Because patients are choosing to pursue CAT as a first-line therapy, psychiatrists will need to have a better understanding of phytomedicines used for treating depression and anxiety, and thus be better prepared to serve as effective allies of their patients.

Journal Article↗

Hypericin and pseudohypericin: pharmacokinetics and effects on photosensitivity in humans.

Extracts of St. John's wort (Hypericum perforatum) are used in treatment of depression. They contain various substances with the naphthodianthrones hypericin and pseudohypericin as characteristic ingredients. These compounds were shown to cause phototoxicity in cell culture and in animals. A placebo-controlled randomized clinical trial with monitoring of hypericin and pseudohypericin plasma concentration was performed to evaluate the increase in dermal photosensitivity in humans after application of high dose hypericum extracts. The study was divided into a single dose and a multiple dose part. In the single dose period, each of 13 volunteers received in a double blind fourfold complete crossover design, either placebo, or 900, 1800 or 3600 mg of a standardized hypericum extract (LI 160) containing zero, 2.81, 5.62 and 11.25 mg of total hypericin (total hypericin is the sum of hypericin and pseudohypericin). Maximum total hypericin plasma concentrations were observed about 4 h after dosage and were 0, 0.028, 0.061 and 0.159 mg/L, respectively. Before and 4 h after drug intake, the subjects were exposed at small areas of their back to increasing doses of solar simulated irradiation (SSI, with combined ultraviolet A, UV-A, and UV-B light) and another part was exposed to selective UV-A light irradiation. Minimal erythema dose was determined 5, 20 and 68 h after irradiation. Comparison of SSI sensitivity without and with hypericum extract did not show and difference and there was no dose-related trend in light sensitivity. Sensitivity to selective UV-A light was increased only after the highest dose from a minimal tanning dose of 10.8 J/ cm2 (mean) after placebo to 8.7 J/cm2 after 3600 mg extract with marginal statistical significance (p = 0.03 by one sided paired t-test). There was no correlation between total hypericin plasma concentrations and photosensitivity. In the multiple dose part, 50 volunteers received 600 mg hypericum extract t.i.d. with a daily dose of 5.6 mg of total hypericin. Comparison of UV light sensitivity before dosing with day 15 of treatment showed a slightly increased SSI sensitivity expressed by decrease of the MED from 0.17 to 0.16 J/cm2 (p = 0.005 by Wilcoxon test), and similarly, sensitivity to UV-A light increased (the mean tanning dose decreased from 9.9 to 7.8 J/cm2, p < 0.0001). This increase in cutaneous light sensitivity could be compensated by reducing irradiation time by 21%. Doses used in this study were higher than typical doses in current commercial preparations. In spite of these high doses in the double blind single dose part, frequency of side effects was equal to placebo medication and UV light sensitivity was not or only marginally increased. The study does not, however, exclude phototoxic reactions with doses above 11.25 mg of total hypericin and plasma levels above 100 micrograms/L. Furthermore, phototoxicity may be different after application of pure hypericin, since some constituents in the plant extract may exhibit protective effects.

Adult↗

Effect of St John's wort dose and preparations on the pharmacokinetics of digoxin.

BACKGROUND AND OBJECTIVE: St John's wort preparations vary in composition, main constituents, formulation, and daily dose administered. The aim of the study was to evaluate the possible pharmacokinetic interaction of marketed St John's wort formulations and doses with digoxin. METHODS: A randomized, placebo-controlled, parallel-group study was performed in 96 healthy volunteers in 3 study parts. A 7-day loading phase with digoxin was followed by 14 days of comedication with placebo or one of 10 St John's wort products varying in dose and formulation. The pharmacokinetics of digoxin was determined before comedication and on day 14 of comedication. RESULTS: Comedication comprised traditionally used Hypericum products; 2 g powder without hyperforin, tea, juice, oil extract, and placebo had no significant interaction with digoxin nor did hyperforin-free extract (Ze 117) or low daily doses of hyperforin-containing Hypericum powder (1 g, 0.5 g). However, comedication with the high-dose hyperforin-rich extract LI 160 resulted in a reduction of digoxin area under the curve from time 0 to 24 hours (AUC(0-24)) of -24.8% (95% confidence interval [CI], -28.3 to -21.3), a reduction in digoxin maximal plasma concentration (C(max)) of -37% (95% CI, -42 to -32), and a reduction in digoxin plasma concentration at 24 hours after previous dosing (C(trough)) of -19% (95% CI, -27 to -11). Comedication with 4 g Hypericum powder with comparable hyperforin content resulted in a reduction in digoxin AUC(0-24) of -26.6% (95% CI, -37.3 to -15.9), a reduction in digoxin C(max) of -38% (95% CI, -48 to -18), and a reduction in digoxin C(trough) of -19% (95% CI, -27 to -10). Two grams of Hypericum powder with half the hyperforin content resulted in a less prominent reduction in AUC(0-24) of -17.7% (95% CI, -21.6 to -13.7), C(max) (-21%; 95% CI, -40 to -2), and C(trough) (-13%; 95% CI, -21 to -5). CONCLUSIONS: The interaction of St John's wort and digoxin varies within St John's wort preparations and doses and seems to be correlated with the dose, particularly of hyperforin.

Adolescent↗

Transport of amentoflavone across the blood-brain barrier in vitro.

The biflavone amentoflavone is an ingredient of Hypericum perforatum L. (Clusiaceae), a plant which is widely used for the treatment of mild to moderate depression. Amentoflavone inhibits the binding of flumazenil to the benzodiazepine binding site of the GABA A -receptor (IC(50) = 14.9 nM). Since it has to pass the blood-brain barrier (BBB) before reaching this receptor, the penetration of [(3)H]-amentoflavone through BBB was studied in an in vitro model consisting of primary cell cultures of porcine brain capillary endothelial cells (BCEC). Concentration-dependent uptake (37-2000 nM) was neither saturable nor temperature-sensitive indicating passive diffusion as the major uptake mechanism. This finding was confirmed by transport experiments through BCEC monolayers (> 2 % of applied dose was transported after 30 min). Co-administration of Hypericum extract increased amentoflavone transport significantly (amentoflavone alone: permeability coefficient P(app) = 4.59.10(-6) cm/s; co-administrated sucrose: P(app) = 3.22.10(-6)cm/s; amentoflavone together with hypericum: P(app) = 6.74.10(-6)cm/s, co-administrated sucrose P(app) = 5.49.10(-6)cm/s) indicating that Hypericum constituents enhance amentoflavone transport possibly by modulating paracellular permeability. Experiments with the P-glycoprotein (P-gp) overexpressing cell line P388-MDR showed that amentoflavone uptake was significantly enhanced by addition of the P-gp inhibitor verapamil, suggesting a P-gp mediated back-transport out of the cells. In conclusion, our findings show, that amentoflavone is able to pass the blood-brain barrier in vitro by passive diffusion.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

St. John's wort induces hepatic drug metabolism through activation of the pregnane X receptor.

St. John's wort (Hypericum perforatum) is an herbal remedy used widely for the treatment of depression. Recent clinical studies demonstrate that hypericum extracts increase the metabolism of various drugs, including combined oral contraceptives, cyclosporin, and indinavir. In this report, we show that hyperforin, a constituent of St. John's wort with antidepressant activity, is a potent ligand (K(i) = 27 nM) for the pregnane X receptor, an orphan nuclear receptor that regulates expression of the cytochrome P450 (CYP) 3A4 monooxygenase. Treatment of primary human hepatocytes with hypericum extracts or hyperforin results in a marked induction of CYP3A4 expression. Because CYP3A4 is involved in the oxidative metabolism of >50% of all drugs, our findings provide a molecular mechanism for the interaction of St. John's wort with drugs and suggest that hypericum extracts are likely to interact with many more drugs than previously had been realized.

Bridged Bicyclo Compounds↗

Role of hyperforin in the pharmacological activities of St. John's Wort.

The phloroglucinol derivative hyperforin has been recently shown to be a major antidepressant component in the extract of Hypericum perforatum. Experimental studies clearly demonstrated its activity in different behavioral models of depression. Moreover clinical studies linked the therapeutic efficacy of Hypericum extracts to their hyperforin content, in a dose-dependent manner. The molecular mechanism of action of hyperforin is still under investigation. Hyperforin has been shown to inhibit, like conventional antidepressants, the neuronal uptake of serotonin, norepinephrine and dopamine. However, hyperforin inhibits also the uptake of gamma-aminobutyric acid (GABA) and L-glutamate. The uptake inhibition by hyperforin does not involve specific binding sites at the transporter molecules; its mechanism of action seems to be related to sodium conductive pathways, leading to an elevation in intracellular Na(+) concentration. Other additional mechanisms of action of hyperforin, involving ionic conductances as well synaptosomal and vesicular function, have been suggested. In addition to its antidepressant activity, hyperforin has many other pharmacological effects in vivo (anxiolytic-like, cognition-enhancing effects) and in vitro (antioxidant, anticyclooxygenase-1, and anticarcinogenic effects). These effects could be of clinical importance. On the other hand, the role of hyperforin in the pharmacological interactions occurring during Hypericum extract therapy must be fully investigated. Hyperforin seems to be responsible for the induction of liver cytochrome oxidase enzymes and intestinal P-glycoprotein. Several pharmacokinetic studies performed in rats and humans demonstrated oral bioavailability of hyperforin from Hypericum extract. Only recently a new chromatographic method for detection of hyperforin in the brain tissue has been developed and validated. Taking into account the chemical instability of hyperforin, current efforts are directed to the synthesis of new neuroactive derivatives.

Animals↗

The in vitro screening for acetylcholinesterase inhibition and antioxidant activity of medicinal plants from Portugal.

Essential oil, ethanolic extract and decoction of 10 plant species from interior Portugal were analyzed for their activity towards acetylcholinesterase (AChE) enzyme and their antioxidant activity. Of these, Melissa officinalis, Paronychia argentea, Sanguisorba minor, Hypericum undulatum and Malva silvestris are used in herbal medicine, Laurus nobilis and Mentha suaveolens as condiments, and Salvia officinalis, Lavandula angustifolia and Lavandula pedunculata also as aromatics. Melissa officinalis and Mentha suaveolens showed AChE inhibitory capacity higher then 50% in the essential oil fraction. Laurus nobilis, Hypericum undulatum, and Sanguisorba minor showed a high inhibition value of AChE in the ethanolic fraction, 64% (1 mg ml(-1)) 68% (0.5 mg ml(-1)), and 78% (1 mg ml(-1)), respectively. Higher values of AChE inhibitory activity were found using decoctions of Lavandula pedunculata, Mentha suaveolens and Hypericum undulatum, 68, 69 and 82% (at a concentration of 5mg dry plant ml(-1) of assay), respectively. The free radical scavenger activity was higher for the polar extracts. In the water extracts most of the plants showed values around 90%. When antioxidant activity was measured with the beta-carotene-linoleic acid assay high activity (65-95%) was also found in the water extracts. Hypericum undulatum, Melissa officinalis and Laurus nobilis showed both high AChE inhibitory capacity and antioxidant activity.

Antioxidants↗

St. John's wort for depression: a meta-analysis of well-defined clinical trials.

Studies concluding that St. John's wort (Hypericum perforatum) is an effective antidepressant can be challenged due to questionable methodology. We attempt to correct this by a meta-analysis utilizing only well-defined clinical trials. Controlled, double-blind studies using strictly defined depression criteria were analyzed by the rate of change of depression and by the number of "treatment responders." Rates of side effects and dropouts were also analyzed. Hypericum was 1.5 times more likely to result in an antidepressant response than placebo and was equivalent to tricyclic antidepressants (TCAs). The meta-analysis also showed that there was a higher dropout rate in the TCA group and that the TCAs were nearly twice as likely to cause side effects, including those more severe than hypericum. Hypericum perforatum was more effective than placebo and similar in effectiveness to low-dose TCAs in the short-term treatment of mild to moderately severe depression. However, design problems in existing studies prevent definitively concluding that St. John's wort is an effective antidepressant.

Adult↗

[St John's wort against depression in favour again].

Extracts of Hypericum perforatum St. John's wort, have been used since antiquity for the treatment of depressive symptoms. In 25 controlled clinical trials where hypericum extract was compared with placebo and established antidepressants, improvement was obtained in 61 percent of patients on low-dose treatment (< 1.2 mg hypericum extract), and in 75 percent of patients treated with a higher dose (2.7 mg). The side effects were mild and occurred at lower frequency than did those of other antidepressants. The constituent of hypericum extract that is responsible for the antidepressant effect has not been identified. Nor is the mechanism of action known, but a combination of low-grade monoamine oxidase inhibition and noradrenaline and serotonin reuptake blockade seems the most likely alternative, though other interesting mechanisms have also been proposed. Owing to their beneficial effect and low toxicity, preparations containing extracts from H perforatum might furnish an alternative to established therapy, especially among patients concerned about stigmatization or less apprehensive of herbal medication than of synthetic drugs.

Controlled Clinical Trials as Topic↗

Potential antidepressant properties of IDN 5491 (hyperforin-trimethoxybenzoate), a semisynthetic ester of hyperforin.

Hyperforin is one of the possible active principles mediating the antidepressant activity of Hypericum perforatum L. extracts. The ester derivative IDN 5491 (hyperforin-trimethoxybenzoate) showed antidepressant-like properties in the forced swimming test (FST) in rats, with no effect on open-field activity, when given as three intraperitoneal injections in 24 h at 3.125 and 6.25 mg/kg. The plasma concentrations of IDN 5491 were 30-50 microM, and those of hyperforin much lower but still close to those after effective doses of hyperforin-dicyclohexylammonium and Hypericum extract. This suggests that hyperforin plays a role in the antidepressant-like effect of the ester and of Hypericum extract. In vitro binding and uptake data showed that IDN 5491 is inactive on a wide panel of CNS targets at a concentration (14 microM) much higher than that measured in the brain of treated rats (0.3 microM). Like the extract, the antidepressant-like effect of IDN 5491 was blocked by (-)-sulpiride, a selective D2 receptor antagonist and by BD-1047, a selective sigma1 antagonist. Ex-vivo binding studies showed that brain sigma1 receptors are occupied after in vivo treatment with IDN 5491, possibly by an unknown metabolite or by endogenous ligand induced by hyperforin.

Animals↗

Phototoxic and apoptosis-inducing capacity of pseudohypericin.

Pseudohypericin (PH) and hypericin (H) are photosensitizing plant pigments from Hypericum perforatum. H displays cytotoxic and apoptosis-inducing effects in neoplastic cell lines. Here, we have assessed the phototoxic and apoptosis-inducing capacity of PH compared to H in a cell culture model with human leukemic lymphoma cells (Jurkat). Treatment with both photoactivated H and PH resulted in a dose-dependent inhibition of cell proliferation, whereas not photoactivated H and PH had no effect at the concentrations tested. The half-maximal inhibitory concentration (IC50) of H was lower (100 ng/mL) as compared to PH (200 ng/mL) (p < 0.05). In an apoptosis assay we found a dose-dependent increase of DNA fragmentation after treatment with both photoactivated H and PH. The cytotoxic potential of PH should be taken into account during systemic therapy with Hypericum extracts, since PH is about two times more abundant than H in Hypericum perforatum.

Anthracenes↗

St. John's wort in mild to moderate depression: the relevance of hyperforin for the clinical efficacy.

In a randomized, double-blind, placebo-controlled, multicenter study, the clinical efficacy and safety of two different extracts of St. John's wort were investigated in 147 male and female outpatients suffering from mild or moderate depression according to DSM-IV criteria. Following a placebo run-in period of three to seven days, the patients were randomized to one of three treatment groups: During the 42-day treatment period, they received 3 x 1 tablets of either placebo, Hypericum extract WS 5573 (300 mg, with a content of 0.5% hyperforin), or Hypericum extract WS 5572 (300 mg, with a content of 5% hyperforin). The manufacturing process for the two Hypericum preparations was identical, so that they differed only in their hyperforin content. Efficacy regarding depressive symptoms was assessed on days 0, 7, 14, 28, and 42, using the Hamilton Rating Scale for Depression (HAMD, 17-item version) and the Depression Self-Rating Scale (D-S) according to von Zerssen. In addition, the severity of illness was also rated by the investigators on days 0 and 42 using the Clinical Global Impression (CGI) scale. The last observation of patients withdrawn from the trial prematurely was carried forward. At the end of the treatment period (day 42), the patients receiving WS 5572 (5% hyperforin) exhibited the largest HAMD reduction versus day 0 (10.3 +/- 4.6 points; mean +/- SD), followed by the WS 5573 group (0.5% hyperforin; HAMD reduction 8.5 +/- 6.1 points) and the placebo group (7.9 +/- 5.2 points). As regards the change in the HAMD total score between day 0 and treatment end and its relationship to the hyperforin dose, a significant monotonic trend was demonstrated in the Jonckheere-Terpstra test (p = 0.017). In pairwise comparisons, WS 5572 (5% hyperforin) was superior to placebo in alleviating depressive symptoms according to HAMD reduction (Mann-Whitney U-test: p = 0.004), whereas the clinical effects of WS 5573 (0.5% hyperforin) and placebo were descriptively comparable. These results show that the therapeutic effect of St. John's Wort in mild to moderate depression depends on its hyperforin content.

Antidepressive Agents↗

The relationship between early changes in the HAMD-17 anxiety/somatization factor items and treatment outcome among depressed outpatients.

The 17-item Hamilton Rating Scale for Depression (HAMD-17) Anxiety/Somatization factor includes six items: Anxiety (psychic), Anxiety (somatic), Somatic Symptoms (gastrointestinal), Somatic Symptoms (general), Hypochondriasis and Insight. This study examines the relationship between early changes (defined as those observed between baseline and week 1) in these HAMD-17 Anxiety/Somatization Factor items and treatment outcome among major depressive disorder (MDD) patients who participated in a study comparing the antidepressant efficacy of a standardized extract of hypericum with both placebo and fluoxetine. Following a 1-week, single-blind washout, patients with MDD diagnosed by the Structured Clinical Interview for DSM-IV (SCID) were randomized to 12 weeks of double-blind treatment with hypericum extract (900 mg/day), fluoxetine (20 mg/day) or placebo. The relationship between early changes in HAMD-17 anxiety/somatization factor items and treatment outcome was assessed separately for patients who received study treatment (hypericum or fluoxetine) versus placebo with a logistic regression method. One hundred and thirty-five patients (female 57%, mean age=37.3+/-11.0 years; mean baseline HAMD-17=19.7+/-3.2 years) were randomized to double-blind treatment and were included in the intent-to-treat (ITT) analyses. After adjusting for baseline HAMD-17 scores and for multiple comparisons with the Bonferroni correction, patients who remitted (HAMD-17 score <8) after study treatment had significantly greater early improvement in Somatic Symptoms (General) scores than non-remitters. No other significant differences in early changes were noted for the remaining items between remitters versus non-remitters who received active treatment. For patients treated with placebo, early change was not predictive of remission for any of the items after Bonferroni correction. In conclusion, the presence of early improvement on the HAMD-17 item concerning fatigue and general somatic symptoms is significantly predictive of achieving remission at endpoint with active study treatment but not with placebo.

Adolescent↗