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Hazardous pharmacokinetic interaction of Saint John's wort (Hypericum perforatum) with the immunosuppressant cyclosporin.

Contrary to common belief, over-the-counter herbal remedies may cause clinically relevant drug interactions. With the enclosed report we would like to alert other physicians that herbal extracts of Saint John's wort (Hypericum perforatum) may cause a sudden remarkable decrease of cyclosporin trough concentrations. A kidney transplantation patient treated with 75 mg bid doses of cyclosporin for many years experienced a sudden drop in her cyclosporin trough concentrations. This change was in temporal relationship to hypericum extract comedication, and a re-challenge gave similar results. The mean dose-normalized cyclosporin concentration during this comedication (90% confidence interval) was 0.48 (0.43 to 0.54) ng/(ml x mg) and was constantly below the respective concentration without the herbal remedy (0.84 (0.79 to 0.89) ng/(ml x mg)). This difference in the pharmacokinetics of cyclosporin indicates a relevant influence of St John's wort extract. The potential clinical consequence of this pharmacokinetic herb-drug interaction is apparent, since low cyclosporin levels are associated with an increased risk of rejection after organ transplantation and are usually not suspected upon intake of plant products. In view of the permanently increasing use of St John's wort preparations for various indications and the clinical relevance of this interaction, our report may contribute to the ongoing debate on the prescription status and safety of hypericum extracts.

Cyclosporine↗

St john's wort (Hypericum perforatum) counteracts deleterious effects of the chronic restraint stress on recall in rats.

This study aimed at verifying a hypothesis that St. John's wort (Hypericum perforatum) alleviates stress-induced memory impairments. Administration of Hypericum perforatum (350 mg kg(-1) daily for 21 days) significantly enhanced recall of passive avoidance behavior (PAB), but had no effect on the acquisition of conditioned avoidance responses (CARs). Rats stressed chronically (2 h daily for 21 days) displayed diminished recall of the PAB and this effect was abolished by St John's wort. Chronic administration of the "equivalent" to the stress dose of exogenous corticosterone (5 mg kg(-1) daily for 21 days) also impaired recall of PAB, and this effect was also reversed by Hypericum perforatum. None of our treatments produced significant motor coordination impairments as tested in a 'chimney' test. It appears that H. perforatum prevents stress-induced deterioration of memory in rats.

Animals↗

[Hypericum and phototherapy].

A sunlight deficiency, as is experienced at our latitude in winter, induces a seasonal affective disorder (SAD) or winter depression in some people. First line of treatment of this form of depression is bright-light therapy, as a type of substitution therapy. SAD is treated with similar success using antidepressant drugs like hypericum (St. John's wort). Phototherapy also has an antidepressive effect on non-seasonal depressions, albeit not quite as pronounced. When using phototherapy light is transformed into electric impulses in the retina. These impulses are transmitted to the hypothalamus and the central nervous structures controlling metabolism, hormones and the circadian rhythms. These processes are governed by very complex regulatory mechanisms. Feedback loop mechanisms induce constant adaptation of the photosensitivity of the retinal photoreceptors while also controlling the central nervous structures. New findings on the interaction and interweaving of depression, light, metabolism, hormones and circadian rhythms support the following hypothesis: The photodynamic impact of hypericum magnifies the effect of normal light, as if the patient were subject to continuous light therapy. The photosensitizing effect of hypericum is thus not only of interest as an undesirable side-effect but also for its therapeutic effects.

Combined Modality Therapy↗

[Antidepressant effect of ethanol extracts from three species of sect. Hypericum medicinal plants in mice].

OBJECTIVE: To explore the antidepressant actions of ethanol extracts from three species of sect. Hypericum medicinal plants. METHODS: The forced swimming test and mouse tail suspensions in mice were used. RESULT: Ethanol extracts of sect. Hypericum medicinal plants significantly shortened motionless time of mice forced swimming and despair time of mouse tail suspension in the two behavior despair animal models of depression. The effect of H. faberi was weaker than that of H. perforatum. CONCLUSION: These findings demonstrated that the extracts from three species of sect. Hypericum medicinal plants possessed obvious antidepressant activity.

Animals↗

St. John's Wort (Hypericum perforatum): clinical effects on depression and other conditions.

St. John's Wort (Hypericum perforatum), a perennial flowering plant, has been used medicinally for thousands of years, and has most recently been identified as an effective treatment for mild to moderate depression. Clinical studies on the use of this plant for depression have utilized liquid tinctures and standardized solid extracts (0.3% hypericin--300 mg three times a day). Severe depression may also respond to this botanical, although it appears a larger dose is needed (600 mg solid extract three times a day). Hypericum has been favorably compared to numerous antidepressant drugs, the studies having revealed equivalent results and a much more favorable incidence of side effects. Studies have also demonstrated its efficacy in treating seasonal affective disorder. In vitro investigations of Hypericum show antiviral activity, although there is evidence these promising results might not occur in vivo. Traditional actions and uses include enhancement of wound healing, as well as anti-inflammatory and analgesic activity.

Depression↗

Antidepressant-like effect of Hypericum perforatum (St John's wort) on the sleep polysomnogram.

We studied the effect of two doses (0.9 mg and 1.8 mg) of Hypericum perforatum (St John's wort) on the sleep polysomnogram of healthy subjects using a placebo-controlled, cross-over design. Both doses of hypericum significantly increased the latency to rapid eye movement (REM) sleep without producing any other effect on sleep architecture. Our data are consistent with the proposed clinical antidepressant efficacy of hypericum, and raise the possibility that its pharmacological mechanism of action may be similar to that of conventional antidepressant medication.

Adult↗

A double-blind randomised trial to investigate three different concentrations of a standardised fresh plant extract obtained from the shoot tips of Hypericum perforatum L.

The aim of this randomised double-blind multi-centre parallel group comparative study was to investigate the efficacy and tolerability of a new standardised fresh-plant extract obtained from the shoot tips of St. John's wort (Hypericum perforatum L.) in the treatment of mild to moderate depression. 348 out-patients (259 female, 89 male) with mild to moderate depression were recruted by 12 psychiatrc specialty practices and 26 general practices. The patients took during 6 weeks 3 times a day 1 tablet of a Hypericum preparation standardised to either 0.17 mg (114 patients), 0.33 mg (115 patients), or 1 mg (119 patients) total hypericin per day (Hyperiforce). The main outcome measure was the Hamilton Psychiatric Rating Scale for Depression; additional measures were the Hospital Anxiety and Depression Scale and the Clinical Global Impression. At the end of treatment, a reduction in the average Hamilton Depression score from an initial 16-17 to 8-9, i.e. a relative reduction of about 50%, was observed in all groups (280 patients, par protocol analysis). The response rates were 62%, 65% and 68%, respectively (348 patients, intention to treat analysis). Overall, the intergroup comparison revealed no significant differences. Tolerability was excellent, with mild adverse reactions probably causally related to the treatment occurring in only 7 of the 348 patients (2%). This Hypericum preparation is effective in all three doses and is well tolerated.

Adult↗

Hypericin levels in human serum and interstitial skin blister fluid after oral single-dose and steady-state administration of Hypericum perforatum extract (St. John's wort).

The photodynamically active plant pigment hypericin, a characteristic metabolite of Hypericum perforatum (St. John's wort), is widely used as an antidepressant. When administered orally, phototoxic symptoms may limit the therapeutic use of hypericin-containing drugs. Here we describe the high-performance liquid chromatographic (HPLC) detection of hypericin and semiquantitative detection of pseudohypericin in human serum and skin blister fluid after oral single-dose (1 x 6 tablets) or steady-state (3 x 1 tablet/day, for 7 days) administration of the Hypericum extract LI 160 in healthy volunteers (n = 12). Serum levels of hypericin and pseudohypericin were always significantly higher than skin levels (p </= 0.01). After oral single-dose administration of Hypericum extract the mean serum level of total hypericin (hypericin + pseudohypericin) was 43 ng/ml and the mean skin blister fluid level was 5.3 ng/ml. After steady-state administration the mean serum level of total hypericin was 12.5 ng/ml and the mean skin blister fluid level was 2.8 ng/ml. These skin levels are far below hypericin skin levels that are estimated to be phototoxic (>100 ng/ml).

Adult↗

[Genotoxicity of a standardized Hypericum extract].

St. John's wort (Hypercum perforatum) contains hypericin and hypericin-like substances as well as flavonoids, of which particularly Quercetin has generated a wide-spread controversial discussion with respect to mutagenic action. The genotoxicity of a standardized aqueous ethanolic Hypericum extract (Hypericum extract Steigerwald, Psychotonin M) was verified in different in-vivo and in-vitro testsystems with mammalian cells. The in-vitro investigations were performed with the HGPRT (hypoxanthine guanidine phosphoribosyl transferase)-test, UDS (unscheduled DNA synthesis)-test and with the cell transformation test using Syrian hamster embryo cells. Both the in-vitro tests as well as the in-vivo tests--fur spot test of the mouse and the chromosome aberration test with the bone marrow cells of the chinese hamster--were negative, giving completely no indication of a mutagenic potential of Hypericum extract. These investigations lend support to the view that results from bacterial short-term tests are of very limited transferability to human.

Animals↗

Analysis of selected constituents in methanolic extracts of Hypericum perforatum collected in different localities by capillary ITP-CZE.

The on-line combination of CZE with capillary ITP (ITP-CZE) was used for the separation and quantification of selected flavonoids and phenolic acids in Hypericum perforatum leaves and flowers collected in six different localities in Slovakia. The leading electrolyte in the ITP preseparation step was 10 mM HCl with Tris as counterion (pH* 7.2). The terminating electrolyte was 50 mM boric acid of pH* 8.2 (adjusted with barium hydroxide). The BGE in the electrophoretic step contained 25 mM beta-hydroxy-4-morpholinopropanesulfonic acid (MOPSO), 50 mM Tris, 65 mM boric acid, pH* 8.3. The content of methanol in all electrolytes was 20% v/v. The total time of the analysis (including the preseparation step) was approximately 35 min. The rectilinear calibration ranges were between 0.125 and 5.0 microg/mL with kaempferol as internal standard. The correlation coefficients ranged between 0.9912 (for quercitrin and chlorogenic acid) and 0.9988 (for isoquercitrin). The RSD values are between 0.86 and 7.78% (n = 6) when determining rutin and quercetin (4 microg/mL). The optimized method was employed for the assay of flavonoids in medicinal plant extract of different collections of Hypericum perforatum haulm. The variability of the content of the active components depending on the place of collection was confirmed.

Boric Acids↗

Antioxidant and cytotoxic activities of Hypericum sp. on brine shrimps and human cancer cell lines.

Ten different samples of five Hypericum sp. were tested on brine shrimps, human colon carcinoma and human hepatoma cell lines for their cytotoxic activities. H. triquetrifolium Turra. (Rafina) showed the highest activity (LC50 = 22 mg/mL) on brine shrimps, while the extracts of the other nine samples showed significant to moderate activities (LC50 from 37 to 107 mg/mL). H. empetrifolium Wild. (Parnon) showed the highest activity in human colon carcinoma and human hepatoma cell lines, with LC50 values 29 and 25.1 mg/mL, respectively, while the LC50 values of the other samples were more than 45 mg/mL. It is very interesting to observe that most Hypericum samples showed good antioxidant activity in vitro.

Animals↗

Evaluation of the central properties of several Hypericum species from the Canary Islands.

The infusions of the aerial parts in blossom of Hypericum canariense, H. glandulosum, H. reflexum and H. grandifolium (Hypericaceae) were evaluated for their pharmacological activity on the central nervous system in mice using various behavioural models including locomotor and muscle relaxant activity, effect on normal body temperature, pentobarbital-induced sleep, oxotremorine and tetrabenazine-induced syndrome, apomorphine-induced hypothermia and 5-hydroxytryptophan-induced head twitches, as well as a forced swimming test. These infusions did not alter significantly the locomotor activity, pentobarbital induced sleeping time and body temperature, with the exception of H. canariense which produced a slight but significant hypothermia. Additionally, no muscle relaxant or anticholinergic activity were observed. These infusions antagonized the ptosis and/or motor depression induced by tetrabenazine as well as shortening the immobility time in the forced swimming test. The observations suggest that the infusions of these Hypericum species possess antidepressant activity in mice, without inducing muscle relaxation, anticholinergic and sedative properties.

Administration, Oral↗

Experience with St John's Wort (Hypericum perforatum) in children under 12 years with symptoms of depression and psychovegetative disturbances.

The value of an extract of Hypericum perforatum (St John's wort) for children with mild to moderate depressive symptoms was investigated for the first time in a multi-centre post-marketing surveillance study. One hundred and one children under 12 years were treated for a minimum of 4 weeks with an extension to 6 weeks with parental consent and medical practitioner recommendation. the dosage used ranged from 300 to 1800 mg per day. Compliance, tolerability and efficacy were assessed every 2 weeks by physicians and parents. Based on the data available for analysis, the number of physicians rating effectiveness as 'good' or 'excellent' was 72% after 2 weeks, 97% after 4 weeks and 100% after 6 weeks. The ratings by parents were very similar. There was, however, an increasing amount of missing data at each assessment point with the final evaluation including only 76% of the initial sample. Tolerability was good and no adverse events were reported. The results of this study suggest that Hypericum is a potentially safe and effective treatment for children with symptoms of depression.

Antidepressive Agents↗

Determination of naphthodianthrones and phloroglucinols from Hypericum perforatum extracts by liquid chromatography/tandem mass spectrometry.

Hypericum perforatum L. (St. John's Wort) has long been known as a medicinal plant, and has been used for the treatment of depression and neuralgic disorders. Its main active constituents are believed to be a naphthodianthrone, hypericin, and a phloroglucinol, hyperforin. A sensitive high performance liquid chromatography (HPLC)/electrospray tandem mass spectrometric method for fast simultaneous determination of six major naphthodianthrones and phloroglucinols of Hypericum perforatum extract has been developed. The method, based on multiple dissociation reaction monitoring (MRM), allows the analysis of hypericin, protohypericin, pseudohypericin, protopseudo-hypericin, hyperforin and adhyperforin from the extract in less than 5 min. Good linearity over the range 0.1-1000 ng/mL for hyperforin and 2-500 ng/mL for hypericin was observed. Intra-assay accuracy and precision varied from 2 to 19% within these ranges. Lower levels of quantitation for hyperforin were 0.5 ng/mL and 2 ng/mL for hypericin.

Anthraquinones↗

Role of hyperforin in the antidepressant-like activity of Hypericum perforatum extracts.

RATIONALE: Hyperforin has been identified as an active constituent of Hypericum perforatum but its importance in the antidepressant effect of this plant's extracts is not really known. OBJECTIVE: To evaluate the antidepressant-like activity of two extracts in relation to the content of hyperforin and its plasma and whole brain concentrations, compared with a stable salt of hyperforin (dicyclohexylammonium; DCHA). METHODS: The effects of the extracts and hyperforin were evaluated in the rat forced swimming test. The specificity of the effects was demonstrated evaluating the rats' locomotor activity. Plasma and brain concentrations of hyperforin were determined by high performance liquid chromatography. RESULTS: The 4.5% extract (but not the 0.5% extract) given as three IP injections in 24 h (3.12-6.25 mg/kg) reduced the total immobility of rats, yielding dose-related plasma concentrations of hyperforin. These concentrations were of a similar magnitude to those after hyperforin DCHA which also significantly reduced immobility when given on the basis of the hyperforin content of the 4.5% extract (0.14 and 0.28 mg/kg). However, hyperforin was undetectable in rat brain, possibly because of poor passage of the blood-brain barrier. CONCLUSION: These results support the view that hyperforin plays a key role in the antidepressant-like activity of Hypericum p. However, brain concentrations after effective doses are probably far from those active in vitro on the neurotransmitter mechanisms so far investigated.

Animals↗

Genetic and biochemical analysis of Hypericum perforatum L. plants regenerated after cryopreservation.

Shoot-tips from in vitro cultured Hypericum perforatum L. genotypes were subjected to assessments of developmental competence, genetic stability, and biosynthetic ability to identify critical points during cryopreservation. Survival rate, chromosome number stability, alteration in VNTR sequences and hypericin content were evaluated, in plants after pre-culture, and two subsequent cryogenic steps (cryoprotection and cooling) and those recovered from cryopreserved meristems. Pre-culture and cryoprotection treatments, did not reveal any significant differences, in these studied characteristics. Genetic stability was assessed by chromosome counts and analysis of variability in the VNTR sequences. No changes in chromosome number were detected in comparison with the untreated control but minor alterations were revealed in non-coding sequences. The content of hypericin after the recovery of cryopreserved meristems remained comparable with the unfrozen control. The controlled rate freezing technique used for cryopreservation was relevant for restoration of genetic and biochemical stability in Hypericum perforatum L. shoot-tips.

Anthracenes↗

Hypericum perforatum methanolic extract inhibits growth of human prostatic carcinoma cell line orthotopically implanted in nude mice.

The antiproliferative effect of serotonin-reuptake inhibitors (SSRI) and serotonin antagonists has been demonstrated in prostate tumors. Since Hypericum perforatum components act as serotonin-reuptake inhibitors and exert cytotoxic effects on several human cancer cell lines, in this work we analyzed the effect of a treatment with Hypericum perforatum extract (HPE) on the growth of human prostate cancer cells in vitro and in vivo. This study highlighted a significant reduction of tumor growth and number of metastasis suggesting that this natural compound may be useful in the treatment of prostate cancer.

Animals↗

Protective activity of Hypericum androsaemum infusion against tert-butyl hydroperoxide-induced oxidative damage in isolated rat hepatocytes.

Hypericum androsaemum L. (Guttiferae) is a medicinal plant with antioxidant activity. Increasing evidence regarding free radical generating agents suggests that hepatotoxic-related disorders may involve reactive oxygen species (ROS). The purpose of this study was to investigate the protective effect of Hypericum androsaemum infusion on isolated rat hepatocytes oxidative injury induced by tert-butyl hydroperoxide (t-BHP). The results showed that pretreatment of the cells with this infusion (16, 62 and 250 microg/ml) prevented the leakage of lactate dehydrogenase (LDH) and lipid peroxidation caused by a 30-min treatment with t-BHP (1mM). However, infusion-induced alterations on glutathione homeostasis were noticed, as it was observed by the increase in glutathione oxidised form (GSSG) and depletion in total glutathione levels, which indicates that plant-derived antioxidant extracts may not be considered a generalised way of treating pro-oxidant-related diseases.

Animals↗