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Dive into the research topics where Anett Oehme is active.

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Featured researches published by Anett Oehme.


British Journal of Pharmacology | 2009

Berry anthocyanins and anthocyanidins exhibit distinct affinities for the efflux transporters BCRP and MDR1.

Andrea Dreiseitel; B Oosterhuis; Kv Vukman; Peter Schreier; Anett Oehme; Sanja Locher; Goeran Hajak; Philipp Sand

Background and purpose:  Dietary anthocyanins hold great promise in the prevention of chronic disease but factors affecting their bioavailability remain poorly defined. Specifically, the role played by transport mechanisms at the intestinal and blood–brain barriers (BBB) is currently unknown.


Pharmacological Research | 2009

Berry anthocyanins and their aglycons inhibit monoamine oxidases A and B

Andrea Dreiseitel; Gabriele Korte; Peter Schreier; Anett Oehme; Sanja Locher; Martina Domani; Goeran Hajak; Philipp Sand

Monoamine oxidases (MAO) are mitochondrial enzymes that catalyze the oxidation of monoamines in multiple tissues, including the brain. Elevated MAO activity has long been implicated in the etiology of depression, anxiety, and neurodegenerative disease, fuelling the search for inhibitors in the prevention and treatment of these disorders. We hypothesized that emerging neuroprotective effects of anthocyanins from berry fruits may be explained by an affinity of these polyphenols for MAO isoforms A or B. Using a luminometric MAO assay, 25 anthocyanidins, anthocyanidin-3-glycosides, anthocyanidin-3,5-diglucosides, proanthocyanidins, and phenolic metabolites were examined. For MAO A and B, IC(50) values in the low micromolar range were reached by anthocyanidins and anthocyanidin-3-glycosides, as opposed to values in the low millimolar range for phenolic acids. Kinetic analyses, performed with cyanidin and cyanidin-3-glucoside, indicated a competitive interaction of cyanidin with MAO A plus a mixed competitive and non-competitive mode of interaction of cyanidin with MAO B and of cyanidin-3-glucoside with both enzyme isoforms. Thus anthocyanins and their aglycons achieve MAO inhibition in vitro that is compatible with central nervous functionalities. For extrapolation of the present findings to in vivo effects, future studies will need to address in more detail the bioavailability of these dietary constituents.


Molecular Nutrition & Food Research | 2011

Bilberries and their anthocyanins ameliorate experimental colitis

Heidi Piberger; Anett Oehme; Claudia Hofmann; Andrea Dreiseitel; Philipp Sand; Florian Obermeier; Juergen Schoelmerich; Peter Schreier; Gerhard Krammer; Gerhard Rogler

Bilberries have positive effects in acute and chronic diarrhea. Patients with inflammatory bowel disease (IBD) report on improved symptoms upon ingestion. Bilberries contain approximately 10% of anthocyanins (ACs), which have anti-oxidative, anti-carcinogenic, and anti-inflammatory properties. We investigated whether experimental colitis can be ameliorated by dried bilberries or ACs. Acute and chronic dextrane sodium sulphate (DSS) colitis were induced in Balb/c mice by 2.5% DSS in the drinking water. Mice were fed with dried bilberries or ACs, respectively. Cytokines were determined in supernatants from mesenteric lymph nodes (MLNs) by ELISA and apoptosis was investigated by terminal deoxynucleotidyl transferase biotin-dUTP nick end labeling assays. Oral administration of bilberries during acute DSS-induced colitis ameliorated disease severity and reduced secretion of IFN-γ and tumor necrosis factor from mesenteric lymph node cells. Dried bilberries also improved chronic DSS-colitis. Ingestion of ACs reduced intestinal inflammation in acute and chronic DSS-colitis with decreased histological scores and cytokine secretion. Both bilberries and ACs prevented inflammation-induced apoptosis in colonic epithelial cells. Taken together, ingestion of dried bilberries had positive effects on various parameters especially in acute DSS-colitis. Oral administration of ACs resulted in an amelioration of acute colitis as well as chronic colitis. These promising results justify a clinical study on their therapeutic effect in inflammatory bowel disease patients.


Biochemical and Biophysical Research Communications | 2008

Inhibition of proteasome activity by anthocyanins and anthocyanidins

Andrea Dreiseitel; Peter Schreier; Anett Oehme; Sanja Locher; Gerhard Rogler; Heidi Piberger; Goeran Hajak; Philipp Sand

Recent reports have demonstrated multiple benefits associated with the consumption of berry fruits, including a decreased vulnerability to oxidative stress, reduced ischemic brain damage, protection of neurons from stroke-induced damage and the reversal of age-related changes in brain and behaviour. Berry fruits contain high amounts of anthocyanins, which play a major role as free radical scavengers. The present study addresses proteasome inhibition as a further mechanism by which anthocyanins and their aglycons, the anthocyanidins, may exert health-promoting effects. HL-60 cells were incubated with 19 test substances and inhibition of the chymotrypsin-like enzyme activity was determined in a chemiluminescent assay. Anthocyanins and their aglycons achieved IC(50) values ranging from 7.8 microM for kaempferidinidin and pelargonidin, to 32.4 microM for delphinidin. Thus proteasome inhibitory properties of anthocyanins may contribute to their known anticarcinogenic, antioxidative, anti-inflammatory and neuroprotective activities, rationalizing dietary supplementations with anthocyanins in the prevention and treatment of chronic diseases, including neurodegenerative disorders.


Phytomedicine | 2010

Tea catechins' affinity for human cannabinoid receptors.

Gabriele Korte; Andrea Dreiseitel; Peter Schreier; Anett Oehme; Sanja Locher; Sarah Geiger; Jörg Heilmann; Philipp Sand

Among the many known health benefits of tea catechins count anti-inflammatory and neuroprotective activities, as well as effects on the regulation of food intake. Here we address cannabimimetic bioactivity of catechin derivatives occurring in tea leaves as a possible cellular effector of these functionalities. Competitive radioligand binding assays using recombinant human cannabinoid receptors expressed in Chem-1 and CHO cells identified (-)-epigallocatechin-3-O-gallate, EGCG (K(i)=33.6 microM), (-)-epigallocatechin, EGC (K(i)=35.7 microM), and (-)-epicatechin-3-O-gallate, ECG (K(i)=47.3 microM) as ligands with moderate affinity for type 1 cannabinoid receptors, CB1. Binding to CB2 was weaker with inhibition constants exceeding 50 microM for EGC and ECG. The epimers (+)-catechin and (-)-epicatechin exhibited negligible affinities for both CB1 and CB2. It can be concluded that central nervous cannabinoid receptors may be targeted by selected tea catechins but signaling via peripheral type receptors is less likely to play a major role in vivo.


Molecular Nutrition & Food Research | 2009

Anthocyanins as lipoxygenase inhibitors

Bastian Knaup; Anett Oehme; Anagnostis Valotis; Peter Schreier

Health benefits associated with diets rich in anthocyanins are ascribed to multilevel biological activities including antioxidative and anti-inflammatory effects. The present study addresses lipoxygenase inhibition as a mechanism by which anthocyanins may exert health promoting effects. The inhibitory potential of delphinidin (Dp), cyanidin (Cy), peonidin (Pn), and malvidin (Mv) glycosides, i.e., 3-O-glucosides, 3-O-galactosides, and 3-O-arabinosides as well as their aglycons was analyzed by using soybean lipoxygenase-1 and human neutrophil granulocyte 5-lipoxygenase. The determined IC(50) values comprised a wide range, i.e., from the sub-microM level until practically no effect of inhibition (Mv and its glycosides). With IC(50) values of 0.43 and 0.49 microM Dp 3-O-glucoside (Dp3glc) and Dp 3-O-galactoside (Dp3gal) were found to be the most effective soybean lipoxygenase-1 inhibitors; their strong inhibitory potential was also reflected by the IC(50) values determined for these anthocyanins in the 5-lipoxygenase inhibition exhibiting 2.15 and 6.9 microM, respectively. As to the mechanism of inhibition, experiments carried out with lipoxygenase-1 revealed the uncompetitive type. Considering the powerful inhibitory properties of Dp glycosides in relation to their currently known availability in human metabolism, in vivo prevention of inflammatory diseases by these anthocyanins could be envisaged.


Molecular Nutrition & Food Research | 2011

Preparation and characterization of shellac-coated anthocyanin pectin beads as dietary colonic delivery system†

Anett Oehme; Anagnostis Valotis; Gerhard Krammer; Ingfried Zimmermann; Peter Schreier

SCOPE Anthocyanins are connected with various biological activities. A promising way to enhance the availability of anthocyanins for in situ effects in the lower intestine is colon-specific delivery. METHODS AND RESULTS Shellac and shellac/hydroxypropyl methylcellulose (HPMC) coated anthocyanin amidated pectin beads as dietary colonic delivery systems were successfully prepared by ionotropic gelation and fluid bed Wurster coating with aqueous shellac solution. Release characteristics, studied in vitro and ex vivo using simulated gastric fluid (SGF), ileostomy fluid and colostomy fluid (CF) revealed a retardation of anthocyanins during simulated passage of stomach and ileum as well as the desired release of pigments in the colon. Coating level was identified as an important parameter. By addition of 5 or 15% of the water-soluble polysaccharide HPMC to the shellac film, resistance in SGF was increased due to the plasticizer properties of the polymer. Incorporation of 15% HPMC (w/w based on shellac) into the shellac film additionally led to increased anthocyanin diffusivity and complete release as well as degradation of the formulation in CF. CONCLUSION In the used in vitro and ex vivo model system mimicking the human intestinal transit, the potential of shellac and shellac/HPMC coated anthocyanin amidated pectin beads as dietary colon targeting systems was demonstrated.


Journal of Medicinal Food | 2009

An examination of anthocyanins' and anthocyanidins' affinity for cannabinoid receptors.

Gabriele Korte; Andrea Dreiseitel; Peter Schreier; Anett Oehme; Sanja Locher; Goeran Hajak; Philipp Sand

A growing body of evidence suggests that anthocyanins and anthocyanidins may possess analgesic properties in addition to neuroprotective and anti-inflammatory activities. These functionalities suggest a role for the cannabinoid receptor (CB) in mediating biological effects. Competitive radioligand binding assays identified cyanidin (K(i) = 16.2 microM) and delphinidin (K(i) = 21.3 microM) as ligands with moderate affinity to human CB1. For CB2, similar affinities were achieved by cyanidin (K(i) = 33.5 microM), delphinidin (K(i) = 34.3 microM), and peonidin (K(i) = 46.4 microM). Inhibition constants >50 microM were obtained for pelargonidin, malvidin, cyanidin-3,5-di-O-glucoside, cyanidin-3-O-glucoside, cyanidin-3-O-galactoside, and cyanidin-3-O-rutinoside for both CB subtypes.


Phytotherapy Research | 2009

Cytochrome P450 2C19 inhibitory activity of common berry constituents.

Philipp Sand; Andrea Dreiseitel; Martin Stang; Peter Schreier; Anett Oehme; Sanja Locher; Goeran Hajak

The cytochrome P450 enzyme CYP2C19 is involved in the metabolism of many commonly prescribed drugs, including proton pump inhibitors, antiepileptics and antidepressants. CYP2C19 inhibitors from food and food supplements may augment the toxicity of these agents and lead to noncompliance with treatment. The present investigation addresses CYP2C19 inhibition by 18 berry constituents using a chemiluminescent assay. Test compounds displayed inhibitory properties in a concentration‐dependent fashion, with IC50 values ranging from 20.2 µM up to >316 µM. In the order of decreasing effect size, anthocyanidins were followed by anthocyanidin‐monoglycosides and procyanidins. Anthocyanidin‐diglucosides exhibited weak and biphasic effects. When compared with the CYP2C19 inhibitor fluvoxamine, the flavonoids under study were 50‐ to 750‐fold less potent. It is concluded that the above natural substances are moderate to poor inhibitors of CYP2C19 in vitro. Copyright


Molecular Nutrition & Food Research | 2008

Anthocyanins and their metabolites are weak inhibitors of cytochrome P450 3A4

Andrea Dreiseitel; Peter Schreier; Anett Oehme; Sanja Locher; Goeran Hajak; Philipp Sand

The cytochrome P450 enzyme cytochrome P450 3A4 (CYP3A4) controls the metabolism of about 60% of all drugs, and its inhibition may dramatically affect drug safety. Modulation of cytochrome P450 activity has been observed by constituents of fruit extracts including several flavonoids. The present investigation addresses CYP3A4 inhibition by anthocyanins, their aglycons, proanthocyanidins, and phenolic metabolites using a chemiluminescent assay. Test compounds inhibited CYP3A4 activity in a concentration-dependent manner featuring IC(50) values from 12.2 up to 7,842 microM. In the order of decreasing effect size, anthocyanidins were followed by anthocyanins, proanthocyanidins, and phenolic acids. When compared to earlier data on furanocoumarins from grapefruit extract, the inhibitory activity of tested anthocyanins, and anthocyanidins was shown to be about 10,000-fold weaker, and was negligible for phenolic acids (>100 000-fold weaker). Future studies are invited to address effects of the above flavonoids on other CYP isoforms for more detailed toxicity profiles.

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Philipp Sand

University of Regensburg

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Sanja Locher

University of Würzburg

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Goeran Hajak

University of Regensburg

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Gabriele Korte

University of Regensburg

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Heidi Piberger

University of Regensburg

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