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Mehrdad Iranshahi - One of the best experts on this subject based on the ideXlab platform.
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metabolic differences of two Ferula species as potential sources of galbanum an nmr based metabolomics study
Phytochemical Analysis, 2021Co-Authors: Faegheh Farhadi, Mehrdad Iranshahi, Leila Mohtashami, Shokrollah Shakeri Asil, Milad IranshahyAbstract:INTRODUCTION Ferula gummosa Boiss. and Ferula galbaniflua Boiss. & Buhse (Apiaceae) are two important Iranian plants that are considered as potential sources of galbanum (barijeh). Galbanum is traditionally used for treating different diseases including flatulence and memory impairment. OBJECTIVE According to a phylogenetic analysis of the nrDNA ITS sequence and the Flora Iranica, F. gummosa has been considered as a synonym of F. galbaniflua. However, F. galbaniflua and F. gummosa grow in two different geographical locations and have different metabolic patterns. Some researchers believe that F. gummosa and F. galbaniflua are two distinct species. To discriminate these species, we compared metabolic profiles of F. gummosa and F. galbaniflua samples. METHODS 1 H-NMR-based metabolomics analysis was used for classification of F. gummosa and F. galbaniflua samples collected from northeast Iran. The acquired data were analyzed using hierarchical cluster analysis (HCA), partial least squares discriminant analysis (PLS-DA) and orthogonal projection to latent structures discriminant analysis (OPLS-DA). RESULTS The result showed a clear separation between the two species that may be related to the quantity and diversity of their metabolites. Ferula gummosa had higher mogoltacin levels, while F. galbaniflua had higher feselol levels. Ligupersin A and conferdione were significantly detected in F. gummosa, whereas sterol compounds were significantly detected in F. galbaniflua. CONCLUSION Our findings indicate that clear metabolomics discrimination of F. gummosa and F. galbaniflua makes their chemotaxonomic classification possible.
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Osteogenic induction of menstrual blood mesenchymal stem cell by different Ferula species extracts
'International Dose-Response Society', 2021Co-Authors: Razieh Dalirfardouei, Mehrdad Iranshahi, Elahe Mahdipour, Khadijeh JamialahmadiAbstract:Objective: Ferula spp. have many applications in complementary medicine and are recognized as the most important sources of natural products for bone health and regeneration especially in postmenopausal women. Therefore, the aim of this study was to investigate the effects of the extracts from three Ferula species on proliferation and osteogenesis potential of human menstrual blood-derived mesenchymal stem cells (MenSCs). Materials and Methods: The possible cytotoxic activity of three members of Ferula spp. (at concentrations of 5 to 100 μg/ml) was determined using MTT (3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyl tetrazolium bromide) assay. Alkaline phosphatase (ALP) activity assay, Alizarin Red-S staining, and the expression analysis of an osteoblastic gene were performed to evaluate osteogenic differentiation potential. Results: The extracts of F. flabelliloba and F. szowitsiana decreased the viability and growth of MenSCs while F. foetida increased the proliferation of cells after 72 hr incubation. Treatment of MenSCs with selected plant extracts revealed that F. foetida and F. szowitsiana could enhance the osteogenic potential of MenSCs in terms of ALP activity. The Runx-2 expression in the presence of F. foetida was significantly greater than observed following treatment with 17β-estradiol (as positive control). Conclusion: The results of this study suggest that F. foetida and F. szowitsiana may have therapeutic values as a nutraceutical with respect to their considerable influence on osteogenic potential of mesenchymal stem cells
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nmr based metabolomic study of asafoetida
Fitoterapia, 2019Co-Authors: Faegheh Farhadi, Milad Iranshahy, Javad Asili, Mehrdad IranshahiAbstract:Abstract Asafoetida, an oleo-gum-resin obtained from the exudates of Ferula assa-foetida L. roots, is traditionally used to treat various diseases including asthma, gastrointestinal disorders, and intestinal parasites. On the basis of Iranian traditional medicine, the main source of asafetida is F. assa-foetida roots. In folk medicine, however, different Ferula species have been used as sources of asafoetida. To identify the original asafoetida that possesses medicinal properties, we should compare metabolic profiles of different asafoetida sources which are commonly used for the oleo-gum-resin preparation.1H-NMR based metabolomics was used to obtain metabolic profiles of eight asafoetida oleo-gum-resin samples and forty-six samples of Ferula species roots from two main regions of Iran. The acquired data were analyzed using multivariate principal component analysis (PCA), partial least squares discriminant analysis (PLS-DA), and orthogonal projection to latent structures discriminant analysis (OPLS-DA) to identify the metabolic differences and similarities between the samples. Asafoetida is usually produced from Ferula species of southern and eastern regions of Iran. A clear metabolic differentiation was evident between asafoetida oleo-gum- resin samples from the southern and those of the eastern Iran. The distinguished metabolites, umbelliprenin, farnesiferol B, farnesiferol C, samarcandin and galbanic acid are significantly found in southern samples. Only southern asafoetida is obtained from F. assa-foetida. Asafoetida from eastern region of Iran is obtained from other species of Ferula such as F. alliacea and its metabolic profile is far different from that of southern asafoetida.
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cytotoxic activity of the genus Ferula apiaceae and its bioactive constituents
avicenna journal of phytomedicine, 2018Co-Authors: Mehrdad Iranshahi, Ramin Rezaee, Mona Najaf Najafi, Ali Haghbin, Jamal KasaianAbstract:Objective: The genus Ferula L. includes perennial flowering plants belonging to the Apiaceae family. This genus is a rich source of biologically active phytochemicals such as sulfur-containing derivatives, coumarins, sesquiterpenes, sesquiterpene lactones, sesquiterpene coumarins, glucuronic acid, galactose, arabinose, rhamnose, and daucane esters. Over the last decade, considerable attention has been paid to biological activities of these compounds; it is assumed that the most prominent biological features of the genus Ferula are their cytotoxic effects. This article discusses cytotoxic activity of the genus Ferula and their important compounds. Methods: In this mini-review article, papers published from 1990 to April 2016 were included and the following information was discussed; cytotoxic activity of the genus Ferula and their important compounds, the type of cell line used in vitro, concentrations of the extracts/active compound that were used, and the underlying mechanisms of action through which Ferula-related chemicals induced cytotoxicity. In addition, we explained different mechanisms of action through which the active constituents isolated from Ferula, could decrease cellular growth. Conclusion: It is highly recommended that potent and effective compounds that were isolated from Ferula plants and found to be appropriate as adjuvant therapy for certain diseases, should be identified. Also, the versatile biological activities of sesquiterpene coumarins suggest them as promising agents with a broad range of biological applications to be used in the future.
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relaxant effects of asafoetida extract and its constituent umbelliprenin on guinea pig tracheal smooth muscle
Chinese Journal of Integrative Medicine, 2013Co-Authors: Goltaj Bayrami, Mohammad Hossein Boskabady, Mehrdad Iranshahi, Zahra GholamnezhadAbstract:Objective To investigate the relaxant effects of the asafoetida (Ferula Asafoetida Oleo-Gum-Resin) and its coumarin constituent umbelliprenin on tracheal chains of guinea pigs.
Milad Iranshahy - One of the best experts on this subject based on the ideXlab platform.
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metabolic differences of two Ferula species as potential sources of galbanum an nmr based metabolomics study
Phytochemical Analysis, 2021Co-Authors: Faegheh Farhadi, Mehrdad Iranshahi, Leila Mohtashami, Shokrollah Shakeri Asil, Milad IranshahyAbstract:INTRODUCTION Ferula gummosa Boiss. and Ferula galbaniflua Boiss. & Buhse (Apiaceae) are two important Iranian plants that are considered as potential sources of galbanum (barijeh). Galbanum is traditionally used for treating different diseases including flatulence and memory impairment. OBJECTIVE According to a phylogenetic analysis of the nrDNA ITS sequence and the Flora Iranica, F. gummosa has been considered as a synonym of F. galbaniflua. However, F. galbaniflua and F. gummosa grow in two different geographical locations and have different metabolic patterns. Some researchers believe that F. gummosa and F. galbaniflua are two distinct species. To discriminate these species, we compared metabolic profiles of F. gummosa and F. galbaniflua samples. METHODS 1 H-NMR-based metabolomics analysis was used for classification of F. gummosa and F. galbaniflua samples collected from northeast Iran. The acquired data were analyzed using hierarchical cluster analysis (HCA), partial least squares discriminant analysis (PLS-DA) and orthogonal projection to latent structures discriminant analysis (OPLS-DA). RESULTS The result showed a clear separation between the two species that may be related to the quantity and diversity of their metabolites. Ferula gummosa had higher mogoltacin levels, while F. galbaniflua had higher feselol levels. Ligupersin A and conferdione were significantly detected in F. gummosa, whereas sterol compounds were significantly detected in F. galbaniflua. CONCLUSION Our findings indicate that clear metabolomics discrimination of F. gummosa and F. galbaniflua makes their chemotaxonomic classification possible.
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nmr based metabolomic study of asafoetida
Fitoterapia, 2019Co-Authors: Faegheh Farhadi, Milad Iranshahy, Javad Asili, Mehrdad IranshahiAbstract:Abstract Asafoetida, an oleo-gum-resin obtained from the exudates of Ferula assa-foetida L. roots, is traditionally used to treat various diseases including asthma, gastrointestinal disorders, and intestinal parasites. On the basis of Iranian traditional medicine, the main source of asafetida is F. assa-foetida roots. In folk medicine, however, different Ferula species have been used as sources of asafoetida. To identify the original asafoetida that possesses medicinal properties, we should compare metabolic profiles of different asafoetida sources which are commonly used for the oleo-gum-resin preparation.1H-NMR based metabolomics was used to obtain metabolic profiles of eight asafoetida oleo-gum-resin samples and forty-six samples of Ferula species roots from two main regions of Iran. The acquired data were analyzed using multivariate principal component analysis (PCA), partial least squares discriminant analysis (PLS-DA), and orthogonal projection to latent structures discriminant analysis (OPLS-DA) to identify the metabolic differences and similarities between the samples. Asafoetida is usually produced from Ferula species of southern and eastern regions of Iran. A clear metabolic differentiation was evident between asafoetida oleo-gum- resin samples from the southern and those of the eastern Iran. The distinguished metabolites, umbelliprenin, farnesiferol B, farnesiferol C, samarcandin and galbanic acid are significantly found in southern samples. Only southern asafoetida is obtained from F. assa-foetida. Asafoetida from eastern region of Iran is obtained from other species of Ferula such as F. alliacea and its metabolic profile is far different from that of southern asafoetida.
Faegheh Farhadi - One of the best experts on this subject based on the ideXlab platform.
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metabolic differences of two Ferula species as potential sources of galbanum an nmr based metabolomics study
Phytochemical Analysis, 2021Co-Authors: Faegheh Farhadi, Mehrdad Iranshahi, Leila Mohtashami, Shokrollah Shakeri Asil, Milad IranshahyAbstract:INTRODUCTION Ferula gummosa Boiss. and Ferula galbaniflua Boiss. & Buhse (Apiaceae) are two important Iranian plants that are considered as potential sources of galbanum (barijeh). Galbanum is traditionally used for treating different diseases including flatulence and memory impairment. OBJECTIVE According to a phylogenetic analysis of the nrDNA ITS sequence and the Flora Iranica, F. gummosa has been considered as a synonym of F. galbaniflua. However, F. galbaniflua and F. gummosa grow in two different geographical locations and have different metabolic patterns. Some researchers believe that F. gummosa and F. galbaniflua are two distinct species. To discriminate these species, we compared metabolic profiles of F. gummosa and F. galbaniflua samples. METHODS 1 H-NMR-based metabolomics analysis was used for classification of F. gummosa and F. galbaniflua samples collected from northeast Iran. The acquired data were analyzed using hierarchical cluster analysis (HCA), partial least squares discriminant analysis (PLS-DA) and orthogonal projection to latent structures discriminant analysis (OPLS-DA). RESULTS The result showed a clear separation between the two species that may be related to the quantity and diversity of their metabolites. Ferula gummosa had higher mogoltacin levels, while F. galbaniflua had higher feselol levels. Ligupersin A and conferdione were significantly detected in F. gummosa, whereas sterol compounds were significantly detected in F. galbaniflua. CONCLUSION Our findings indicate that clear metabolomics discrimination of F. gummosa and F. galbaniflua makes their chemotaxonomic classification possible.
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nmr based metabolomic study of asafoetida
Fitoterapia, 2019Co-Authors: Faegheh Farhadi, Milad Iranshahy, Javad Asili, Mehrdad IranshahiAbstract:Abstract Asafoetida, an oleo-gum-resin obtained from the exudates of Ferula assa-foetida L. roots, is traditionally used to treat various diseases including asthma, gastrointestinal disorders, and intestinal parasites. On the basis of Iranian traditional medicine, the main source of asafetida is F. assa-foetida roots. In folk medicine, however, different Ferula species have been used as sources of asafoetida. To identify the original asafoetida that possesses medicinal properties, we should compare metabolic profiles of different asafoetida sources which are commonly used for the oleo-gum-resin preparation.1H-NMR based metabolomics was used to obtain metabolic profiles of eight asafoetida oleo-gum-resin samples and forty-six samples of Ferula species roots from two main regions of Iran. The acquired data were analyzed using multivariate principal component analysis (PCA), partial least squares discriminant analysis (PLS-DA), and orthogonal projection to latent structures discriminant analysis (OPLS-DA) to identify the metabolic differences and similarities between the samples. Asafoetida is usually produced from Ferula species of southern and eastern regions of Iran. A clear metabolic differentiation was evident between asafoetida oleo-gum- resin samples from the southern and those of the eastern Iran. The distinguished metabolites, umbelliprenin, farnesiferol B, farnesiferol C, samarcandin and galbanic acid are significantly found in southern samples. Only southern asafoetida is obtained from F. assa-foetida. Asafoetida from eastern region of Iran is obtained from other species of Ferula such as F. alliacea and its metabolic profile is far different from that of southern asafoetida.
Denis Grancher - One of the best experts on this subject based on the ideXlab platform.
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Variability of ferulenol and ferprenin concentration in French giant fennel (Ferula sp.) leaves
Toxicon, 2019Co-Authors: Gilbert Gault, Sébastien Lefebvre, Etienne Benoit, Virginie Lattard, Denis GrancherAbstract:Few studies have reported quantitative data about the levels of prenylated coumarins in Ferula sp. Yet, the toxicity of Ferula sp. is only due to the presence of prenylated coumarins and to their concentrations and all studies suggest the existence of several chemotypes within the same species or even within the same variety. The aim of this study was to investigate the hypothesis of different chemotypes in french Ferula sp. in relationship with the botanical species. In this objective, the species of giant fennels and their concentrations in prenylated coumarins were explored. Three different species or subspecies of giant fennel were detected in continental France: F. communis communis communis L., F. communis catalaunica microcarpa Cauwet-Marc and F. glauca L. Surprisingly, the three species/subspecies of giant fennels were found to be located in exclusive and well separated geographical areas. In French giant fennels, ferulenol and ferprenin were detected. Distribution of ferulenol and ferprenin were found to be different between botanical varieties, but also according to the season, the soil and the altitude. Our study seems to suggest that among F. communis species, the same plant can be regarded as poisonous at one point and another as non-poisonous.
Amirhossein Sahebkar - One of the best experts on this subject based on the ideXlab platform.
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Cytotoxic activities of phytochemicals from Ferula species
DARU Journal of Pharmaceutical Sciences, 2013Co-Authors: Seied Mojtaba Valiahdi, Mehrdad Iranshahi, Amirhossein SahebkarAbstract:Background Ferula species are reputed in folk medicine for the treatment of a variety of disorders. There have been sporadic reports on the chemopreventive and chemosensitizing activities of some terpenoid coumarin derivatives from the genus Ferula . The present study investigated the cytotoxic activity of 11 phytochemicals (conferone, farnesiferol A, acantrifoside E, mogoltadone, diversin, galbanic acid, herniarin, 7-isopentenyloxycoumarin, umbelliprenin, stylosin and tschimgine) from Ferula species together with a newly synthesized prenylated derivative of curcumin (gercumin II). Methods Cytotoxic activity of phytochemicals was evaluated against ovarian carcinoma (CH1), lung cancer (A549) and melanoma (SK-MEL-28) cell lines using MTT assay. Results and conclusion Overall, moderate cytotoxic activity was observed from the tested compounds with IC_50 values in the micromolar range. The highest activity against CH1 and A549 lines was from conferone while stylosin and tschimgine were the most potent compounds against SK-MEL-28 line. In conclusion, the findings of the present investigation did not support a potent cytotoxic activity of the tested phytochemicals against CH1, A549 and SK-MEL-28 cell lines. With respect to previous reports, the beneficial impact of these phytochemicals in cancer therapy may be more attributable to their chemopreventive or chemosensitizing activity rather than direct cytotoxic effects.
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cytotoxic activities of phytochemicals from Ferula species
HASH(0x7fc54be70848), 2013Co-Authors: Seied Mojtaba Valiahdi, Mehrdad Iranshahi, Amirhossein SahebkarAbstract:Background Ferula species are reputed in folk medicine for the treatment of a variety of disorders. There have been sporadic reports on the chemopreventive and chemosensitizing activities of some terpenoid coumarin derivatives from the genus Ferula. The present study investigated the cytotoxic activity of 11 phytochemicals (conferone, farnesiferol A, acantrifoside E, mogoltadone, diversin, galbanic acid, herniarin, 7-isopentenyloxycoumarin, umbelliprenin, stylosin and tschimgine) from Ferula species together with a newly synthesized prenylated derivative of curcumin (gercumin II).
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volatile constituents of the genus Ferula apiaceae a review
Journal of Essential Oil Bearing Plants, 2011Co-Authors: Amirhossein Sahebkar, Mehrdad IranshahiAbstract:Abstract Ferula is a genus of perennial herbs belonging to the family Apiaceae. Members of this genus are mainly distributed throughout the Mediterranean area and central Asia and are reputed in traditional medicine for their therapeutic applications against a range of disorders. Due to the occurrence of essential oils or oleoresins in the Ferula species, these plants usually possess strong aromatic scent. The current review concentrates on the chemical composition of volatile oils from different parts of Ferula species. To date, the essential oils from more than 20 Ferula species have been chemically investigated. The most distinctive feature for the classification of these oils seems to be the presence of sulfur-containing compounds. These compounds have been reported from some Ferula species such as F. assa-foetida, F fukanensis, F latisecta, F. persica and F sinkiangensis. About 160 components were identified as the main components of Ferula oils. Terpenoid compounds were the most abundant constituent...
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biological activities of essential oils from the genus Ferula apiaceae
Asian Biomedicine, 2010Co-Authors: Amirhossein Sahebkar, Mehrdad IranshahiAbstract:The genus Ferula (Apiaceae) comprises about 170 species occurring from central Asia westward to northern Africa. This genus is well-known in folk medicine for the treatment of various organ disorders. Most of Ferula species possess strong aromatic smell that is due to the presence of essential oil or oleoresin in their different organs. This article reviews anti-bacterial, anti-fungal and other biological activities of Ferula oils reported to date. For medicinal applications, the chemical composition of volatile oils obtained from different Ferula species is summarized in Appendix.
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evaluation of cytotoxicity and anticonvulsant activity of some iranian medicinal Ferula species
Pharmaceutical Biology, 2010Co-Authors: Seyyed Majid Bagheri, Amirhossein Sahebkar, Ahmad Reza Gohari, Soodabeh Saeidnia, Maryam Malmir, Mehrdad IranshahiAbstract:Several Ferula (Umbelliferae) species have been used in Iranian traditional medicine as antiflatulent, antispasmodic, anticonvulsant, expectorant, etc. In the present study, cytotoxicity and anticonvulsant activity of the methanol extracts from several Ferula species were evaluated. Air-dried samples of different parts of these plants (Ferula diversivittata Regel & Schmalh. (roots), Ferula persica Willd. (aerial parts), Ferula ovina (Boiss.) Boiss. (roots), Ferula badrakema Kos.-Pol. (roots), Ferula diversivittata (flowers), Ferula latisecta Rech. F. & Aell. (roots), and Ferula badrakema (fruits)) were macerated with methanol for 3 days. The mixtures were then filtered, concentrated and dried. For determination of the cytotoxicity of the extracts and also the oleo-gum-resin of F. assafoetida L., the brine shrimp (Artemia salina) was employed as a model assay system since it provides a convenient in-house pre-screening method for evaluating general cytotoxicity. The methanol extracts of different Ferula sp...