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Research Article

Healing effect of Dillenia indica fruit extracts standardized to betulinic acid on ultraviolet radiation-induced psoriasis-like wounds in rats

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Pages 641-648 | Received 04 May 2016, Accepted 26 Nov 2016, Published online: 12 Dec 2016

References

  • Alam MB, Rahman MS, Hasan M, Khan MM, Nahar K, Sultana S. 2012. Antinociceptive and antioxidant activities of the Dillenia indica bark. Int J Pharmacol. 8:243–251.
  • Apu A, Muhit M, Tareq S, Pathan A, Jamaluddin A, Ahmed M. 2010. Antimicrobial activity and brine shrimp lethality bioassay of the leaves extract of Dillenia indica Linn. J Young Pharm. 2:50–53.
  • Bruze M, Isaksson M, Dooms-Goossens A. 1995. The influence of patch tests with clobetasol propionate on adjacent patch test reactions. Contact Dermatitis. 32:167–170.
  • Cheng Y, Shao Y, Yan W. 2011. Solubilities of betulinic acid in thirteen organic solvents at different temperatures. J Chem Eng Data. 56:4587–4591.
  • Christensen BV, Abdel-Latif IA. 1949. Colorimetric and fluorometric studies on the Borntraeger reaction for anthraquinone drugs. J Am Pharm Assoc Am Pharm Assoc. 38:487–489.
  • Franco IJ. 2012. Minhas 500 plantas medicinais. Aparecida, Brasil: Editora Santuário.
  • Gandhi D, Mehta P. 2013. Dillenia indica Linn and Dillenia pentagyna Roxb: pharmacognostic, phytochemical and therapeutic aspects. J App Pharm Sci. 3:134–142.
  • Gordon ML. 1998. The role of clobetasol propionate emollient 0.05% in the treatment of patients with dry, scaly, corticosteroid-responsive dermatoses. Clin Ther. 20:26–39.
  • Handa SS. 2008. An overview of extraction techniques for medicinal and aromatic plants. In: Handa SS, Khanuja SPS, Longo G, Rakesh DD, editors. Extraction technologies for medicinal and aromatic plants. Trieste, Italy: International Centre for Science and High technology; p. 21–52.
  • Hofbauer M, Dowd PM, Atkinson J, Whitefield M, Greaves MW. 1988. Evaluation of a therapeutic concentration of dithranol in the mouse-tail test. Br J Dermatol. 118:85–89.
  • Jaques JA, Rezer JF, Ruchel JB, Souza VC, Pinheiro KV, Schlemmer KB, Schlemmer JB, Bertoldo TM, Martins NM, Bertoncheli CM, et al. 2012. An experimental model of contact dermatitis: evaluation of the oxidative profile of Wistar rats treated with free and nanoencapsulated clobetasol. Redox Rep. 17:206–213.
  • Jingbo W, Aimin C, Qi W, Xin L, Huaining L. 2015. Betulinic acid inhibits IL-1β-induced inflammation by activating PPAR-γ in human osteoarthritis chondrocytes. Int Immunopharmacol. 29:687–692.
  • Kadam DP, Suryakar AN, Ankush RD, Kadam CY, Deshpande KH. 2010. Role of oxidative stress in various stages of psoriasis. Indian J Clin Biochem. 25:388–392.
  • Khare RK, Prasad AK, Kumar S, Iyer SV, Vaidya SK, Bigoniya P. 2013. Flavonoid and triterpene rich fraction of Dillenia indica Linn. leaves: as anti-inflammatory & anti-arthritic activity. Indo Am J Pharm Res. 3:4653–4659.
  • Khoddami A, Wilkes MA, Roberts TH. 2013. Techniques for analysis of plant phenolic compounds. Molecules. 18:2328–2375.
  • Kumar D, Mallick S, Vedasiromoni JR, Pal BC. 2010. Anti-leukemic activity of Dillenia indica L. fruit extract and quantification of betulinic acid by HPLC. Phytomedicine. 17:431–435.
  • Kumar S, Kumar V, Prakash O. 2011. Antidiabetic, hypolipidemic and histopathological analysis of Dillenia indica (L.) leaves extract on alloxan induced diabetic rats. Asian Pac J Trop Med. 4:347–352.
  • Levine RL, Garland D, Oliver CN, Amici A, Climent I, Lenz AG, Ahn BW, Shaltiel S, Stadtman ER. 1990. Determination of carbonyl content in oxidatively modified proteins. Meth Enzymol. 186:464–478.
  • Lingaraju MC, Pathak NN, Begum J, Balaganur V, Ramachandra HD, Bhat RA, Ram M, Singh V, Kandasamy K, Kumar D, et al. 2015. Betulinic acid attenuates renal oxidative stress and inflammation in experimental model of murine polymicrobial sepsis. Eur J Pharm Sci. 70:12–21.
  • Lorenzi H, Souza HM, Torres MAV, Bacher LB. 2003. Árvores exóticas no Brasil: madeireiras, ornamentais e aromáticas. Nova Odessa, SP: Instituto Plantarum.
  • Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. 1951. Protein measurement with the Folin phenol reagent. J Biol Chem. 193:265–275.
  • Lund W. 2009. The pharmaceutical codex: principles and practice of pharmaceutics. New Delhi: CBS Publisher and Distributor.
  • Martins DF, Mazzardo-Martins L, Gadotti VM, Nascimento FP, Lima DA, Speckhann B, Favretto GA, Bobinski F, Cargnin-Ferreira E, Bressan E, et al. 2011. Ankle joint mobilization reduces axonotmesis-induced neuropathic pain and glial activation in the spinal cord and enhances nerve regeneration in rats. Pain. 152:2653–2661.
  • Migliato KF, Chiosini MA, Mendonca FA, Esquisatto MA, Salgado HR, Santos GM. 2011. Effect of glycolic extract of Dillenia indica L. combined with microcurrent stimulation on experimental lesions in Wistar rats. Wounds. 23:111–120.
  • Müller SD, Florentino D, Ortmann CF, Martins FA, Danielski LG, Michels M, de Souza Constantino L, Petronilho F, Reginatto FH. 2016. Anti-inflammatory and antioxidant activities of aqueous extract of Cecropia glaziovii leaves. J Ethnopharmacol. 185:255–262.
  • Ohkawa H, Ohishi N, Yagi K. 1979. Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. Anal Biochem. 95:351–358.
  • Oliveira BHD, Cid AM, Santos CAM, Espındola APDM. 2002. Determination of the triterpenoid, betulinic acid, in Doliocarpus schottianus by HPLC. Phytochem Anal. 13:95–98.
  • Peach K, Tracey MV. 1956. Modern methods of plant analysis. Berlin, Germany: Springer Verlag.
  • Petronilho F, Dal-Pizzol F, Costa GM, Kappel VD, de Oliveira SQ, Fortunato J, Cittadini-Zanette V, Moreira JC, Simões CM, Dal-Pizzol F, et al. 2012. Hepatoprotective effects and HSV-1 activity of the hydroethanolic extract of Cecropia glaziovii (embaúba-vermelha) against acyclovir-resistant strain. Pharm Biol. 50:911–918.
  • Rahman MS, Shams-Ud-Doha KM, Roksana R. 2011. Antidiarrhoeal activity of the leaf and fruit extracts of Dillenia indica. Int J Biosci. 1:39–46.
  • Scola G, Kappel VD, Moreira JCF, Dal-Pizzol F, Salvador M. 2011. Antioxidant and anti-inflammatory activities of winery wastes seeds of Vitis labrusca. Cienc Rural. 41:1233–1238.
  • Sharma HK, Chhangte L, Dolui AK. 2001. Traditional medicinal plants in Mizoram, India. Fitoterapia. 72:146–161.
  • Shome U, Khanna RK, Sharma HP. 1980. Pharmacognostic studies of Dillenia indica Linn. II – Fruit and seed. Proc Indian Acad Sci. 89:91–104.
  • Shrivastav S, Sindhu RK, Kumar S, Kumar P. 2009. Anti-psoriatic and phytochemical evaluation of Thespesia populnea barks extract. Int J Pharm Pharm Sci. 1(Supp.1):176–185.
  • Sood SK, Bhardwaj R, Lakhanpal TN. 2005. Ethnic Indian plants in cure of diabetes. Jodhpur, India: Scientific Publishers.
  • United States Department of Agriculture – Agricultural Research Service (USDA/ARS). 1995. Taxon: Dillenia indica L. [Internet]. US National Plant Germplasm System; [cited 2015 Dec 28]. Available from: https://npgsweb.ars-grin.gov/gringlobal/taxonomydetail.aspx?14122.
  • Vijayalakshmi A, Ravichandiran V, Malarkodi V, Nirmala S, Jayakumari S. 2012. Screening of flavonoid quercetin from the rhizome of Smilax china Linn. for anti-psoriatic activity. Asian Pac J Trop Biomed. 2:269–275.
  • Vogel GH, Vogel WH. 2002. Drug discovery and evaluation: Pharmacological assays. Berlin Heidelberg, Germany: Springer-Verlag.
  • Wolberink EAW, van Erp PEJ, Teussink MM, vand de Kerkhof PCM, Gerritsen MJP. 2011. Cellular features of psoriatic skin: imaging and quantification using in vivo reflectance confocal microscopy. Cytometry B Clin Cytom. 80B:141–149.
  • Yeshwante SB, Juvekar AR, Nagmotti DM, Wankhede SS, Shah AS, Pimprikar RB, Saindane DS. 2009. Anti-inflammatory activity of methanolic extracts of Dillenia indica L. leaves. J Young Pharm. 1:63–66.
  • Yuan B, Wang X, Wang Z, Wei J, Qing C, Lu S. 2010. Comparison of fibrogenesis caused by dermal and adipose tissue injury in an experimental model. Wound Repair Regen. 18:202–210.
  • Zhao Y, Miriyala S, Miao L, Mitov M, Schnell D, Dhar SK, Cai J, Klein JB, Sultana R, Butterfield DA, et al. 2014. Redox proteomic identification of HNE-bound mitochondrial proteins in cardiac tissues reveals a systemic effect on energy metabolism after doxorubicin treatment. Free Radic Biol Med. 72:55–65.