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      Cassiae semen: A review of its phytochemistry and pharmacology

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          Abstract

          Cassiae semen ( Leguminosae), a well-known traditional Chinese medicine, has been used for a number of centuries in areas of Southeast Asia, including Korea, Japan and China. The present review aims to provide updated and comprehensive information, on the botany, phytochemistry and pharmacology of Cassiae semen. The available information on Cassiae semen was collected using several different resources, including classic books on Chinese herbal medicine and a number of scientific databases, including the China Academic Journals full-text database, PubMed, SciFinder, the Web of Science and Science Direct. To date >70 chemical compounds have been isolated from Cassiae semen, and the major components have been determined to be anthraquinones, naphthopyrones and volatile oil. The crude extracts and pure compounds of Cassiae semen have been used as effective agents in preclinical and clinical practice due to their beneficial activities, including antihyperlipidemic, antidiabetic, neuroprotective, hepatoprotective, antibacterial, antioxidant and hypotensive activities. With the body of reported data, it has been suggested that Cassiae semen has convincing medicinal potential. However, the pharmacological mechanisms of the main bioactive compounds and the association between structure and activity require further investigation.

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          Most cited references122

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          Traditional Chinese medicine herbal extracts of Cibotium barometz, Gentiana scabra, Dioscorea batatas, Cassia tora, and Taxillus chinensis inhibit SARS-CoV replication

          Development of anti-severe acute respiratory syndrome associated coronavirus (SARS-CoV) agents is pivotal to prevent the reemergence of the life-threatening disease, SARS. In this study, more than 200 extracts from Chinese medicinal herbs were evaluated for anti-SARS-CoV activities using a cell-based assay that measured SARS-CoV-induced cytopathogenic effect (CPE) in vitro on Vero E6 cells. Six herbal extracts, one each from Gentianae Radix (龍膽 lóng dǎn; the dried rhizome of Gentiana scabra), Dioscoreae Rhizoma (山藥 shān yào; the tuber of Dioscorea batatas), Cassiae Semen (決明子 jué míng zǐ; the dried seed of Cassia tora) and Loranthi Ramus (桑寄生 sāng jì shēng; the dried stem, with leaf of Taxillus chinensis) (designated as GSH, DBM, CTH and TCH, respectively), and two from Rhizoma Cibotii (狗脊 gǒu jǐ; the dried rhizome of Cibotium barometz) (designated as CBE and CBM), were found to be potent inhibitors of SARS-CoV at concentrations between 25 and 200 μg/ml. The concentrations of the six extracts needed to inhibit 50% of Vero E6 cell proliferation (CC50) and 50% of viral replication (EC50) were determined. The resulting selective index values (SI = CC50/EC50) of the most effective extracts CBE, GSH, DBM, CTH and TCH were > 59.4, > 57.5, > 62.1, > 59.4, and > 92.9, respectively. Among these extracts, CBM and DBM also showed significant inhibition of SARS-CoV 3CL protease activity with IC50 values of 39 μg/ml and 44 μg/ml, respectively. Our findings suggest that these six herbal extracts may have potential as candidates for future development of anti-SARS therapeutics. Abbreviations SARS, severe acute respiratory syndrome CoV, coronavirus CPE, cytopathogenic effect TCM, traditional Chinese medicine
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            In vitro anti-Helicobacter pylori action of 30 Chinese herbal medicines used to treat ulcer diseases.

            Infection by Helicobacter pylori has been ascertained to be an important etiologic impetus leading usually to chronic active gastritis and gastric ulcer with growing incidences worldwide. Utilizing as the test pathogen a standard and five clinic strains of Helicobacter pylori, the antibacterial action was assessed in vitro with ethanol extracts of 30 Chinese herbal medicines which have been frequently prescribed since ancient times for treating gastritis-like disorders. Among the 30 tested materials, the ethanol extracts of Abrus cantoniensis (Fabaceae), Saussurea lappa (Asteraceae) and Eugenia caryophyllata (Myrtaceae) were strongly inhibitory to all test strains (MICs: approximately 40 microg/ml), and Hippophae rhamnoides (Elaeagnaceae), Fritillaria thunbergii (Liliaceae), Magnolia officinalis and Schisandra chinensis (Magnoliaceae), Corydalis yanhusuo (Papaveraceae), Citrus reticulata (Rutaceae), Bupleurum chinense and Ligusticum chuanxiong (Apiaceae) substantially active with MICs close to 60.0 microg/ml. As to antibacterial actions of the aqueous extracts of the same drugs, those derived from Cassia obtusifolia (Fabaceae), Fritillaria thunbergii and Eugenia caryophyllata were remarkably inhibitory against all the six Helicobacter pylori strains (MICs: approximately 60 microg/ml). The work compared almost quantitatively the magnitude of the anti-Helicobacter pylori actions of the 30 most prescribed gastritis-treating Chinese herbal drugs, and located as well some source plants where potent anti-Helicobacter pylori phytochemicals could be characterized.
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              Cassiae semen, a seed of Cassia obtusifolia, has neuroprotective effects in Parkinson's disease models.

              Cassiae semen, a commonly consumed tea and medicinal food, has been shown to have multiple therapeutic actions related to the prevention of dementia and ischemia. In this study, we investigated the effects of extract of Cassiae semen (COE) against neurotoxicities in in vitro and in vivo Parkinson's disease (PD) models. In PC12 cells, COE attenuated the cell damage induced by 100 microM 6-hydroxydopamine (6-OHDA) stress in MTT assay, and it inhibited the overproduction of reactive oxygen species, glutathione depletion, mitochondrial membrane depolarization and caspase-3 activation at 0.1-10 microg/ml. In addition, COE showed radical scavenging activity in the DPPH and ABTS assays. In mesencephalic dopaminergic (DA) culture, COE protected DA cells against 10 microM 6-OHDA- and 10 microM 1-methyl-4-phenylpyridine-induced toxicities at 0.1-1 microg/ml. We also evaluated the effect of COE in a mouse PD model induced by 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP). In the pole test, COE (50mg/kg, 15 days)+MPTP (30 mg/kg, 5 days)-treated group had decreased T-turn and T-LA which were longer in MPTP group. Moreover, COE significantly protected DA neuronal degeneration induced by MPTP in the substantia nigra and striatum of these mice. These results demonstrate that COE can prevent DA neurons against the toxicities involved in PD. Copyright (c) 2010 Elsevier Ltd. All rights reserved.
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                Author and article information

                Journal
                Mol Med Rep
                Mol Med Rep
                Molecular Medicine Reports
                D.A. Spandidos
                1791-2997
                1791-3004
                September 2017
                29 June 2017
                29 June 2017
                : 16
                : 3
                : 2331-2346
                Affiliations
                Department of Chinese Medicine Pharmaceuticals, School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing 100102, P.R. China
                Author notes
                Correspondence to: Professor Jian Ni, Department of Chinese Medicine Pharmaceuticals, School of Chinese Materia Medica, Beijing University of Chinese Medicine, 11 North Third Ring Road, Beijing 100102, P.R. China, E-mail: njtcm@ 123456263.net
                Article
                mmr-16-03-2331
                10.3892/mmr.2017.6880
                5547955
                28677746
                19b44126-765e-4906-a149-ae5e89faadef
                Copyright: © Dong et al.

                This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.

                History
                : 02 June 2016
                : 11 April 2017
                Categories
                Review

                cassiae semen,phytochemistry,pharmacology
                cassiae semen, phytochemistry, pharmacology

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