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      Evaluation of effect of alcoholic extract of heartwood of Pterocarpus marsupium on in vitro antioxidant, anti-glycation, sorbitol accumulation and inhibition of aldose reductase activity

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          Abstract

          Rising popularity of phytomedicines in various diseased conditions have strengthened the significance of plant-research and evaluation of phytoextracts in clinical manifestations. Pterocarpus marsupium Roxb., a medicinal plant, known for its anti-oxidant and anti-diabetic activity is a rich source of phytochemicals with antihyperglycemic and antihyperlipidemic activities. However, its possible role in diabetic complications is not evaluated yet. The present study explores the possible role of alcoholic extract of heartwood of P. marsupium in the treatment of long-term diabetic complications. The alcoholic extract of P. marsupium was evaluated for advanced glycation-end-products formation, erythrocyte sorbitol accumulation and rat kidney aldose reductase enzyme inhibition at the concentration of 25–400 μg/ml using in-vitro bioassays. Also the phytoextract at the concentration of 10–320 μg/ml was evaluated for its antioxidant potential by in-vitro antioxidant assays which includes, determination of total phenol content; reducing power assay; nitric oxide scavenging activity; superoxide radical scavenging activity; total antioxidant capacity; total flavonoid content; DPPH scavenging activity; and hydrogen peroxide scavenging activity.

          The alcoholic extract of P. marsupium across varying concentrations showed inhibitory effect as evident by IC 50 on advanced glycation-end-products formation (55.39 μg/ml), sorbitol accumulation (151.00 μg/ml) and rat kidney aldose reductase (195.88 μg/ml). The phytoextract also exhibited high phenolic and flavonoid contents with promising antioxidant potential against the antioxidant assays evaluated. The present investigation suggests that the phytoextract showed prominent antioxidant, antiglycation property and, inhibited accumulation of sorbitol and ALR enzyme, thus promising a beneficial role in reducing/delaying diabetic complications.

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          Prevention of cytotoxicity and inhibition of intercellular communication by antioxidant catechins isolated from Chinese green tea.

          An antioxidant fraction of Chinese green tea (green tea antioxidant; GTA), containing several catechins, has been previously shown to inhibit 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced tumor promotion in mouse skin. In the present study, GTA was shown to have antioxidative activity toward hydrogen peroxide (H2O2) and the superoxide radical (O2-). GTA also prevented oxygen radical and H2O2-induced cytotoxicity and inhibition of intercellular communication in cultured B6C3F1 mouse hepatocytes and human keratinocytes (NHEK cells). GTA (0.05-50 micrograms/ml) prevented the killing of hepatocytes (measured by lactate dehydrogenase release) by paraquat (1-10 mM) and glucose oxidase (0.8-40 micrograms/ml) in a concentration-dependent fashion. GTA (50 micrograms/ml) also prevented the inhibition of hepatocyte intercellular communication by paraquat (5 mM), glucose oxidase (0.8 micrograms/ml), and phenobarbital (500 micrograms/ml). In addition, GTA (50 micrograms/ml) prevented the inhibition of intercellular communication in human keratinocytes by TPA (100 ng/ml). Cytotoxicity and inhibition of intercellular communication, two possible mechanisms by which tumor promoters may produce their promoting effects were therefore prevented by GTA. The inhibition of these two effects of pro-oxidant compounds may suggest a mechanism by which GTA inhibits tumor promotion in vivo.
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            The nitric oxide-scavenging properties of Ginkgo biloba extract EGb 761.

            Ginkgo biloba extract EGb 761 was found to be a scavenger of nitric oxide in in vitro acellular systems, under physiological conditions. EGb 761 competed with oxyhemoglobin for reaction with nitric oxide generated during the interaction of hydroxylamine with Complex I of catalase. An EGb 761 dose-dependent decrease in the amount of nitrite formed in the reaction of oxygen with nitric oxide produced from solution of 5 mM sodium nitroprusside was also observed. These data implicate it as a potential therapeutic agent in conditions of altered production of nitric oxide.
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              Anti-diabetic activity of medicinal plants and its relationship with their antioxidant property.

              Methanolic extract (75%) of Terminalia chebula, Terminalia belerica, Emblica officinalis and their combination named 'Triphala' (equal proportion of above three plant extracts) are being used extensively in Indian system of medicine. They were found to inhibit lipid peroxide formation and to scavenge hydroxyl and superoxide radicals in vitro. The concentration of plant extracts that inhibited 50% of lipid peroxidation induced with Fe(2+)/ascorbate were food to be 85.5, 27, 74 and 69 micro g/ml, respectively. The concentration needed for the inhibition of hydoxyl radical scavenging were 165, 71, 155.5 and 151 micro g/ml, and that for superoxide scavenging activity were found to be 20.5, 40.5, 6.5 and 12.5 micro g/ml, respectively. Oral administration of the extracts (100 mg/kg body weight) reduced the blood sugar level in normal and in alloxan (120 mg/kg) diabetic rats significantly within 4 h. Continued, daily administration of the drug produced a sustained effect.
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                Author and article information

                Contributors
                Journal
                J Tradit Complement Med
                J Tradit Complement Med
                Journal of Traditional and Complementary Medicine
                Elsevier
                2225-4110
                25 November 2016
                July 2017
                25 November 2016
                : 7
                : 3
                : 307-314
                Affiliations
                [a ]Department of Pharmacology, DDPR Central Research Institute for Homoeopathy, Noida, India
                [b ]Department of Pharmacy, Banasthali Vidyapith, Banasthali, Rajasthan, India
                [c ]Department of Bioscience and Biotechnology, Banasthali Vidyapith, Rajasthan, India
                [d ]College of Pharmacy, Maharishi Markandeshwar University, Mullana, Ambala, Harayana, India
                [e ]Department of Plant Molecular Biology, University of Delhi, South Campus, New Delhi, India
                Author notes
                []Corresponding author. pankajgupta77@ 123456gmail.com
                [∗∗ ]Corresponding author. drvshs@ 123456gmail.com
                Article
                S2225-4110(16)30281-4
                10.1016/j.jtcme.2016.11.001
                5506622
                28725625
                b9f749a0-16cb-4b24-876a-c71996204c4f
                Copyright © 2017, Center for Food and Biomolecules, National Taiwan University. Production and hosting by Elsevier Taiwan LLC.

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 12 August 2016
                : 7 October 2016
                : 6 November 2016
                Categories
                Original Article

                anti-glycation,alr inhibition,diabetic complications,oxidative stress,pterocarpus marsupium,sorbitol accumulation

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