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Dive into the research topics where Hamid-Reza Adhami is active.

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Featured researches published by Hamid-Reza Adhami.


Phytochemical Analysis | 2013

Combination of Bioautography with HPTLC–MS/NMR: A Fast Identification of Acetylcholinesterase Inhibitors from Galbanum†

Hamid-Reza Adhami; Uta Scherer; Hanspeter Kaehlig; Timm Hettich; Götz Schlotterbeck; Eike Reich; Liselotte Krenn

INTRODUCTION In the search for new natural compounds with acetylcholinesterase (AChE) inhibitory activity this study focused on galbanum, the oleo gum-resin from Ferula gummosa Boiss., which had shown AChE inhibitory activity in a screening. OBJECTIVE The isolation of bioactive compounds from plant extracts usually is laborious and time consuming. In an approach to accelerate the characterisation of compounds with AChE inhibitory activity, the potential of a combination of HPTLC bioautography with HPTLC-MS/NMR for the fast identification of active compounds in galbanum was studied. METHOD Pre-fractionation of the dichloromethane extract was performed by vacuum liquid chromatography. The resulting fractions were separated by HPTLC and active zones determined by bioautography. A TLC-MS interface was used to elute the single zones from the plates directly into a mass spectrometer. The interface was also used to extract the two major active zones from HPTLC plates for off-line one- and two-dimensional NMR and quadrupole time of flight (QTOF) MS. RESULTS The isolated compounds were identified as 7-{[(2E)-3,7-dimethylocta-2,6-dien-1-yl]oxy}-2H-chromen-2-one (auraptene) and 7-{[(1R,4aR,6S,8aS)-6-hydroxy-5,5,8a-trimethyl-2-methylenedecahydronaphthalen-1-yl]methoxy}-2H-chromen-2-one (farnesiferol A). This is the first report of these substances in F. gummosa. Their median inhibitory concentration (IC50 ) values for AChE inhibition were determined as 47 and 17 µg/mL in comparison with physostigmine as a positive control (IC50 : 0.8 µg/mL) and their concentrations in galbanum were quantified by HPLC as 3.5% and 7.9%, respectively. CONCLUSION The study showed that HPTLC-MS/NMR can be considered as a fast and high-confidence method for dereplication of natural compounds. From the correlation of the concentration of the elucidated compounds and their IC50 values for AChE inhibition it can be concluded that auraptene and farnesiferol A are contributing to this activity of galbanum.


Phytotherapy Research | 2011

Screening of Medicinal Plants from Iranian Traditional Medicine for Acetylcholinesterase Inhibition

Hamid-Reza Adhami; Hassan Farsam; Liselotte Krenn

To find new herbal compounds with an acetylcholinesterase (AChE) inhibitory effect, this study focused on herbal drugs and resins which have been used in Iranian traditional medicine for the treatment of cognitive disorders. Forty drugs were selected from authoritative written documents of Iranian traditional medicine. Each drug was extracted by accelerated solvent extraction using dichloromethane followed by methanol. The 80 extracts were screened for AChE inhibitory activity by a TLC bioautography method. The inhibiting effect of the 32 most active extracts was measured by a microplate colorimetric assay. Due to the best activity, the seeds of Peganum harmala L. were investigated in detail. From the TLC bioautography assay the alkaloids harmaline and harmine were identified as active compounds. This result was confirmed by means of HPLC‐DAD. The IC50 values were 41.2 μg/mL for the methanol extract, 95.5 μg/mL for the dichloromethane extract, 8.4 μg/mL for harmaline and 10.9 μg/mL for harmine. The concentrations of active compounds in the extracts were determined by a fast and precise HPLC method. As the amounts of harmaline and harmine in the extracts were correlated with the IC50 values of the extracts, it can be concluded that these two alkaloids are responsible for the AChE inhibitory activity of P. harmala. Copyright


Food Chemistry | 2015

Preparative isolation of oleocanthal, tyrosol, and hydroxytyrosol from olive oil by HPCCC

Hamid-Reza Adhami; Martin Zehl; Christina Dangl; Dominic Dorfmeister; Marco Stadler; Ernst Urban; Peter Hewitson; Svetlana Ignatova; Liselotte Krenn

For the provision of oleocanthal (OLC), a phenolic compound with very promising pharmacological properties, isolation from olive oil is a very important option. Due to the compounds sensitivity to decomposition upon exposure to oxygen and light, a very gentle isolation method has been developed under use of high performance countercurrent chromatography (HPCCC). By partition of olive oil between hexane and methanol, an extract enriched in phenolics was prepared and subjected to a two-step HPCCC separation under use of heptane-EtOAc-MeOH-H2O mixtures in normal-phase and reverse phase mode, respectively. With this method, the isolation of tyrosol, hydroxytyrosol, and the mixture of (3S,4E)- and (3S,4Z)-OLC was achieved in approx. 70 min for each step. By one- and two-dimensional NMR-experiments and LC-MS, the equilibrium of (3S,4E)- and (3S,4Z)-OLC in such olive oil extracts has unambiguously been proven for the first time.


Scientia Pharmaceutica | 2013

Compounds from gum ammoniacum with acetylcholinesterase inhibitory activity.

Hamid-Reza Adhami; Johannes Lutz; Hanspeter Kählig; Martin Zehl; Liselotte Krenn

The use of herbal medicinal preparations in dementia therapy has been studied based on experience from traditional medicine. A dichloromethane extract of gum ammoniacum, the gum-resin from Dorema ammoniacum D. Don had shown acetylcholinesterase (AChE) inhibitory activity in a previous study. The aim of this study was the isolation and characterization of the active compounds from this resin. The extract was investigated by a respective colorimetric microplate assay and the active zones were identified via TLC bioautography and isolated using several chromatographic techniques. The structures of the active components were characterized by one- and two-dimensional 1H and 13C NMR spectroscopy and mass spectrometry as (2′S,5′S)-2′-ethenyl-5′-(3-hy-droxy-6-methyl-4-oxohept-5-en-2-yl)-7-methoxy-2′-methyl-4H-spiro[chromene-3,1′-cyclopentane]-2,4-dione (1), which is an analogue of doremone A and a new natural compound, and as (2′S,5′R)-2′-ethenyl-5′-[(2R,4R)-4-hydroxy-6-methyl-3-oxohept-5-en-2-yl]-7-methoxy-2′-methyl-4H-spiro[chromene-3,1′-cyclo-pentane]-2,4-dione (2 = doremone A), (4E,8E)-1-(2,4-dihydroxyphenyl)-5,9,13-trimethyltetradeca-4,8,12-trien-1-one (3 = dshamirone), and 4,7-dihydroxy-3-[(2E,6E)-3,7,11-trimethyldodeca-2,6,10-trien-1-yl]-2H-chromen-2-one (4 = am-moresinol). Dshamirone turned out to be the most active compound with an IC50 value for AChE inhibitory activity of 23.5 μM, whereas the other substances showed weak activity. The concentrations of the analytes in the resin were determined by HPLC as 3.1%, 4.6%, 1.9%, and 9.9%, respectively.


Journal of Chromatography B | 2013

LC–NMR, NMR, and LC–MS identification and LC–DAD quantification of flavonoids and ellagic acid derivatives in Drosera peltata

Christina Braunberger; Martin Zehl; Jürgen Conrad; Sonja Fischer; Hamid-Reza Adhami; Uwe Beifuss; Liselotte Krenn


Journal of Ethnopharmacology | 2012

Catechol alkenyls from Semecarpus anacardium: Acetylcholinesterase inhibition and binding mode predictions

Hamid-Reza Adhami; T. Linder; Hanspeter Kaehlig; Daniela Schuster; Martin Zehl; Liselotte Krenn


Archive | 2007

HERBAL MEDICINE IN IRAN

Hamid-Reza Adhami; B Mesgarpour; Hassan Farsam


Phytochemistry Letters | 2015

Simultaneous quantification of anthrones and chromones in Aloe ferox (“Cape aloes”) using UHPLC–MS

Sowesa Kanama; Alvaro Viljoen; G.P.P. Kamatou; Weiyang Chen; Maxleene Sandasi; Hamid-Reza Adhami; Ben-Erik Van Wyk


Phytochemistry Letters | 2014

Acetylcholinesterase inhibitors from galbanum, the oleo gum-resin of Ferula gummosa Boiss.

Hamid-Reza Adhami; Veronika Fitz; Andrea Lubich; Hanspeter Kaehlig; Martin Zehl; Liselotte Krenn


Phytochemistry Letters | 2015

Preparative isolation of bio-markers from the leaf exudate of Aloe ferox (“aloe bitters”) by high performance counter-current chromatography☆

Hamid-Reza Adhami; Alvaro Viljoen

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Alvaro Viljoen

Tshwane University of Technology

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