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Biomedical subjects

Brigitte Kopp

Publications and source records attributed to Brigitte Kopp.

11 recordsLinked to original sources

Dihydroxy-7-methoxy-1,4-benzoxazin-3-one (DIMBOA) and 2,4-dihydroxy-1,4-benzoxazin-3-one (DIBOA), two naturally occurring benzoxazinones contained in sprouts of Gramineae are potent aneugens in human-derived liver cells (HepG2).

Benzoxazinoids (BAs) are toxic constituents of sprouts of Gramineae such as wheat, maize and rye and are part of the plant defence system against pests. In the last years, sprouts have been increasingly consumed as health foods and are also used for the production of dietary supplements. In the present study we investigated the mutagenic activities of the two most abundant BAs, namely 2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one (DIMBOA) and 2,4-dihydroxy-1,4-benzoxazin-3-one (DIBOA) in the Salmonella/microsome assay and additionally, in micronucleus (MN) assay and single cell gel electrophoresis (SCGE) assay in a human-derived liver cell line (HepG2). DIBOA caused significant induction of his(+) revertants in all three strains in the range between 0.02 and 0.50 mg/plate; the highest activity was observed in TA100 (fivefold increase over the background at the highest dose level). The effect in YG1024 (a derivative of TA98 with increased acetyltransferase activity) was only slightly higher than the effect in the parental strain indicating that acetylation plays no crucial role in the activation of this BA. DIMBOA was in general less active and a positive result was only seen in the base substitution strain (TA100). Addition of rat liver homogenate (S9-mix) led to a significant (ca. twofold) increase of the mutagenic activities of both BAs. In SCGE assays with HepG2 cells consistently negative results were obtained with both compounds whereas in MN assays significant dose dependent effects were observed under similar experimental conditions. DIMBOA caused significant effects already at concentrations > or =1 microM; at the highest dose (20 microM) the MN frequency was sevenfold higher than the background level. DIBOA caused weaker effects and was positive at doses > or =2.5 microM, the maximal induction (twofold over background) was observed with 20 microM. Overall, DIMBOA was ca. 30-fold more active as DIBOA. Subsequent experiments with pancentromeric probes showed that >80% of the MN induced at the highest doses gave a centromere positive signal indicating that both BAs are aneugenic. This is an interesting observation as it is assumed that aneuploidy is a key event in cancer induction and at present no other aneugenic plant-derived substances of dietary relevance are known.

Analysis of Variance↗

Investigation of the spasmolytic activity of the flavonoid fraction of Achillea millefolium s.l. on isolated guinea-pig ilea.

The spasmolytic activity of a flavonoid fraction of a commercial sample of yarrow (Achillea millefolium s.l.), its main flavonoids as well as quercetin and two flavonoid metabolites were investigated on isolated terminal guinea-pig ilea. The aglycones quercetin, luteolin and apigenin exhibited the highest antispasmodic activities with IC50 values of 7.8 micromol/L, 9.8 micromol/L and 12.5 micromol/L, respectively. Rutin and the flavonoid metabolites homoprotocatechuic acid and homovanillic acid showed no significant effects on contractility of the terminal ilea. From the results on the spasmolytic activity of the flavonoid fraction, the glycosides and the respective aglycones it is concluded that in tea prepared from yarrow the concentration of the flavonoids is high enough to exert a spasmolytic effect in the gut, which is mainly caused by blockade of the calcium inward current, but additionally also by mediator-antagonistic effects.

Achillea↗

Anthrone C-glucosides from Rheum emodi.

In a study of the anthraderivatives in roots of Rheum emodi, three new anthrone C-glucosides, named 10-hydroxycascaroside C (1), 10-hydroxycascaroside D (2) and 10R-chrysaloin 1-O-beta-D-glucopyranoside (3) were isolated besides the rare compounds cascaroside C (4), cascaroside D (5) and cassialoin (6). Additionally the investigation resulted in the isolation of an acetylated chrysophanol glucoside, 8-O-beta-D-(6'-O-acetyl)glucopyranosyl-chrysophanol (7). The structures were established by comprehensive spectroscopic investigations.

Acetylation↗

Capillary electrophoretic separation and quantification of flavone-O- and C-glycosides in Achillea setacea W. et K.

A simple method for the rapid separation and quantification of flavone-O- and C-glycosides in A. setacea W. et K. by capillary zone electrophoresis (CZE) with UV detection is described. Using 25 mM sodium borate with 20% (v/v) of methanol (pH 9.3) as running buffer sufficient separation of the analytes was achieved within 19 min. For the quantitative determination isorhamnetin-3-O-rutinoside was used as internal standard. The method was successfully applied to a rapid characterisation of the flavonoid complex and a precise quantification of the single and total amount of the flavonoids in different samples of A. setacea.

Achillea↗

Apoptosis-mediated selective killing of malignant cells by cardiac steroids: maintenance of cytotoxicity and loss of cardiac activity of chemically modified derivatives.

Cardiac glycosides are commonly used drugs in clinical medicine. We analyzed the cytotoxic effect of six steroids belonging to the bufadienolide family on malignant T lymphoblasts and normal peripheral blood mononuclear cells (PBMC). One compound was a natural bufadienolide glycoside (hellebrin) with cardiac activity. The other five compounds were chemically modified derivatives that did not contain cardioactive groups. We found that these steroids were able to cause time-dependent apoptosis in Jurkat T lymphoblasts, whereas they only minimally affected PBMC. Preferential killing of malignant cells was induced by the natural cardioactive substance hellebrin and by three of the five chemically modified non-cardioactive derivatives. The substances caused mitochondrial transmembrane potential disruption and internucleosomal DNA fragmentation in tumor cells. The cytoplasmic and nuclear events of bufadienolide-induced apoptosis were strongly inhibited in the presence of caspase 8, caspase 9, or caspase 3 inhibitors, as well as in the presence of the broad-spectrum caspase inhibitor Z-VAD-FMK. Overexpression of Bcl-2 significantly protected bufadienolide-treated cells from phosphatidylserine translocation, transmembrane potential disruption, and internucleosomal DNA fragmentation. Our results show that the analyzed bufadienolide derivatives preferentially kill malignant human lymphoblasts by initiating apoptosis via the classical caspase-dependent pathway. Apoptosis-inducing agents specific for tumor cells might be ideal anti-tumor drugs. The therapeutic use of bufadienolides has been hampered by their concomitant cardiac activity. The description of compounds without cardiac activity but with tumor-specific cytotoxicity suggests the potential of using them in cancer therapy.

Amino Acid Chloromethyl Ketones↗

Sulfemodin 8-O-beta-D-glucoside, a new sulfated anthraquinone glycoside, and antioxidant phenolic compounds from Rheum emodi.

A sulfated emodin glucoside, emodin 8-O-beta-D-glucopyranosyl-6-O-sulfate (1), was isolated from the roots of Rheum emodi in an investigation of the active constituents of this Nepalese medicinal plant, and its structure was determined by spectroscopic and chemical methods. Additionally, two rare auronols, carpusin (2) and maesopsin (3), besides other anthraquinones and phenolics, were isolated and identified. Compounds 2 and 3 showed significant antioxidant activity in the DPPH assay, while chrysophanol, physcion, and emodin and their 8-O-glucosides were found to be inactive.

Anthraquinones↗

Quantification of the flavonoid glycosides in Passiflora incarnata by capillary electrophoresis.

Capillary electrophoresis has been applied for the separation and quantification of the flavonoids in Passiflorae herba. Separations were performed using 25 mM sodium borate with 20 % methanol (pH 9.5). For the quantification quercetin 3-O-arabinoside was used as internal standard. The method was applied to the determination of the flavonoid glycosides in 10 different commercial samples of the drug and showed similar flavonoid patterns, but differences concerning the single and total amounts of flavonoids. The total flavonoid contents determined with the new method correlated satisfactorily with those achieved by the spectrophotometric assay according to the European Pharmacopoeia.

Borates↗

Microbial contamination of medicinal plants--a review.

Medicinal plants may be associated with a broad variety of microbial contaminants, which are represented by bacteria, fungi and viruses. Inevitably, this microbiological background depends on several environmental factors and exerts an important impact on the overall quality of herbal products and preparations. Risk assessment of the microbial load of medicinal plants has therefore become an important subject in the establishment of modern Hazard Analysis and Critical Control Point (HACCP) schemes. This study intends to contribute to this knowledge by giving a survey of published data regarding the microbial contamination of herbal plants, by dealing with methodological aspects and by considering the influence of different commonly used pharmaceutical preparation techniques on the microbiological status of the products. Finally, quality standards are discussed, which could be considered for guidelines and/or possible inclusion in the Ph.Eur. 2000.

Bacteria↗

Flavonoids from Achillea nobilis L.

The detailed investigation of a methanolic extract of aerial parts of Achillea nobilis resulted in the isolation of 10 flavonoids. A new C-glycosylflavone, luteolin-6-C-apiofuranosyl-(1'''-->2'')-glucoside, was isolated besides orientin, isoorientin, vitexin, isoschaftoside, luteolin-7-O-beta-glucuronide, luteolin-4'-O-beta-glucoside and quercetin-3-O-methyl ether and two rare flavonolglycosides, quercetin-3-O-alpha-arabinosyl-(1'''-->6'')-glucoside and quercetin-3-O-methylether-7-O-beta-glucoside. The structures were established either by comparison with authentic substances or by UV, 1H NMR and 13C NMR spectroscopic methods including 2D-NMR techniques and ESI-MS.

Achillea↗