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      The Synthesis and Antitumor Activity of Twelve Galloyl Glucosides

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      Molecules
      MDPI
      galloyl glucoside, synthesis, antitumor activity

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          Abstract

          Twelve galloyl glucosides 1–12, showing diverse substitution patterns with two or three galloyl groups, were synthesized using commercially available, low-cost d-glucose and gallic acid as starting materials. Among them, three compounds, methyl 3,6-di- O-galloyl- α- d-glucopyranoside ( 9), ethyl 2,3-di- O-galloyl- α- d-glucopyranoside ( 11) and ethyl 2,3-di- O-galloyl- β- d-glucopyranoside ( 12), are new compounds and other six, 1,6-di- O-galloyl- β- d-glucopyranose ( 1), 1,4,6-tri- O-galloyl- β- d-glucopyranose ( 2), 1,2-di- O-galloyl- β- d-glucopyranose ( 3), 1,3-di- O-galloyl- β- d-glucopyranose ( 4), 1,2,3-tri- O-galloyl- α- d-glucopyranose ( 6) and methyl 3,4,6-tri- O-galloyl- α- d-glucopyranoside ( 10), were synthesized for the first time in the present study. In in vitro MTT assay, 1–12 inhibited human cancer K562, HL-60 and HeLa cells with inhibition rates ranging from 64.2% to 92.9% at 100 μg/mL, and their IC 50 values were determined to be varied in 17.2–124.7 μM on the tested three human cancer cell lines. In addition, compounds 1–12 inhibited murine sarcoma S180 cells with inhibition rates ranging from 38.7% to 52.8% at 100 μg/mL in the in vitro MTT assay, and in vivo antitumor activity of 1 and 2 was also detected in murine sarcoma S180 tumor-bearing Kunming mice using taxol as positive control.

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          Most cited references52

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          Anti-cancer, anti-diabetic and other pharmacologic and biological activities of penta-galloyl-glucose.

          1, 2, 3, 4, 6-penta-O-galloyl-beta-D-glucose (PGG) is a polyphenolic compound highly enriched in a number of medicinal herbals. Several in vitro and a handful of in vivo studies have shown that PGG exhibits multiple biological activities which implicate a great potential for PGG in the therapy and prevention of several major diseases including cancer and diabetes. Chemically and functionally, PGG appears to be distinct from its constituent gallic acid or tea polyphenols. For anti-cancer activity, three published in vivo preclinical cancer model studies with PGG support promising efficacy to selectively inhibit malignancy without host toxicity. Potential mechanisms include anti-angiogenesis; anti-proliferative actions through inhibition of DNA replicative synthesis, S-phase arrest, and G(1) arrest; induction of apoptosis; anti-inflammation; and anti-oxidation. Putative molecular targets include p53, Stat3, Cox-2, VEGFR1, AP-1, SP-1, Nrf-2, and MMP-9. For anti-diabetic activity, PGG and analogues appear to improve glucose uptake. However, very little is known about the absorption, pharmacokinetics, and metabolism of PGG, or its toxicity profile. The lack of a large quantity of highly pure PGG has been a bottleneck limiting in vivo validation of cancer preventive and therapeutic efficacies in clinically relevant models.
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            The in vitro activity of geraniin and 1,3,4,6-tetra-O-galloyl-beta-D-glucose isolated from Phyllanthus urinaria against herpes simplex virus type 1 and type 2 infection.

            Phyllanthus urinaria Linnea (Euphorbiaceae) is a widely used traditional medicinal plant by oriental countries and has been reported to possess various biological activities. Previously, the acetone extract from Phyllanthus urinaria was found to inhibit herpes simplex virus (HSV) infection. In this study, geraniin and 1,3,4,6-tetra-O-galloyl-beta-D-glucose (1346TOGDG), both of which were isolated from the acetone extract of Phyllanthus urinaria, were examined for their activity against HSV-1 and HSV-2 in vitro. Results showed that geraniin actively suppressed HSV-2 infection, whereas 1346TOGDG effectively inhibited HSV-1 infection. The 50% inhibitory concentration (IC(50)) was 18.4+/-2.0 microM for geraniin against HSV-2 infection, and 19.2+/-4.0 microM for 1346TOGDG against HSV-1. No toxic effect towards the host cell was observed at the antiviral concentrations. In conclusion, geraniin and 1346TOGDG were found to inhibit HSV-1 and HSV-2 multiplication at different magnitudes of potency.
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              Effects of interaction of tannins with co-existing substances. VII. Inhibitory effects of tannins and related polyphenols on xanthine oxidase.

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                Author and article information

                Contributors
                Role: Academic Editor
                Journal
                Molecules
                Molecules
                molecules
                Molecules
                MDPI
                1420-3049
                27 January 2015
                February 2015
                : 20
                : 2
                : 2034-2060
                Affiliations
                State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, Beijing 100850, China; E-Mails: sdrlcw@ 123456126.com (C.-W.L.); huajind@ 123456hotmail.com (H.-J.D.)
                Author notes
                [* ] Author to whom correspondence should be addressed; E-Mail: cuicb@ 123456126.com or cuicb@ 123456sohu.com ; Tel./Fax: +86-10-6821-1656.
                Article
                molecules-20-02034
                10.3390/molecules20022034
                6272398
                25633333
                6ffa4a6b-f037-45ad-9472-b2014b2566f0
                © 2015 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 26 December 2014
                : 21 January 2015
                Categories
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                galloyl glucoside,synthesis,antitumor activity
                galloyl glucoside, synthesis, antitumor activity

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