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    المصدر: Biomedica; Vol. 43 No. 2 (2023); 282-295 ; Biomédica; Vol. 43 Núm. 2 (2023); 282-295 ; 2590-7379 ; 0120-4157

    وصف الملف: application/pdf; text/xml

    العلاقة: https://revistabiomedica.org/index.php/biomedica/article/view/6611/5270Test; https://revistabiomedica.org/index.php/biomedica/article/view/6611/5342Test; Chang CW, Wong JM, Tung CC, Shih IL, Wang HY, Wei SC. Intestinal stricture in Crohn’s disease. Intest Res. 2015;13:19-26. https://doi.org/10.5217/ir.2015.13.1.19Test; Khor B, Gardet A, Xavier RJ. Genetics and pathogenesis of inflammatory bowel disease. Nature. 2011;474:307-17. https://doi.orgTest 10.1038/nature10209; Ananthakrishnan AN. Environmental risk factors for inflammatory bowel disease. Gastroenterol Hepatol. 2013;9:367-74. https://doi.org/10.1053/j.gastro.2019.04.016Test; Chichlows ki M, Hale LP. Bacterial-mucosal interactions in inflammatory bowel disease: an alliance gone bad. Am J Physiol Gastrointest Liver Physiol. 2008;295:1139-49. https://doi.org/10.1152/ajpgi.90516.2008Test; Sales-Campos H, Basso PJ, Alves VB, Fonseca MT, Bonfá G, Nardini V et al. Classical and recent advances in the treatment of inflammatory bowel diseases. Braz J Med Biol Res. 2015;48:96-107. https://doi.org/10.1590/1414-431X20143774Test; Anderson JM, Itallie Van CM. Architecture of tight junctions and principles of molecular composition. Semin Cell Dev Biol. 2014;36:157-65. https://doi.org/10.1016/j.semcdb.2014.08.011Test; Garud S, Peppercorn MA. Ulcerative colitis: Current treatment strategies and future prospects. Therap Adv Gastroenterol. 2009;2:99-108. https://doi.org/10.1177/1756283X09102329Test; Carvalho PE. Sabiá (Mimosa caesalpiniifolia). Circular Técnica da Embrapa. 2007;135:1-7.; Aguiar LC, Barros RFM. Plantas medicinais cultivadas em quintais de comunidades rurais no domínio do cerrado piauiense (Município de Demerval Lobão, Piauí, Brasil). Revista Brasileira de Plantas Medicinais. 2012;14:419-34. https://doi.org/10.1590/S1516-05722012000300001Test; Rakotomalala G, Agard C, Tonnerre P, Tesse A, Derbre S, Michalet S, et al. Extract from Mimosa pigra attenuates chronic experimental pulmonary hypertension. J Ethnopharmacol. 2013;148:106-16. https://doi.org/10.1016/j.jep.2013.03.075Test; Silva MJ, Endo LH, Dias ALT, Silva GA, Santos MH, Silva MA. Avaliação da atividade antioxidante e antimicrobiana dos extratos e frações orgânicas de Mimosa caesalpiniifolia Benth. (Mimosaceae). Revista de Ciências Farmacêuticas Básica e Aplicada. 2012;33:267-74.; Silva MJ, Carvalho AJ, Rocha CQ, Wilegas W, Silva MA, Gouvêa CM. Ethanolic extract of Mimosa caesalpiniifolia leaves: Chemical characterization and cytotoxic effect on human breast cancer MCF-7 cell line. S Afr J Bot. 2014;93:64-9. https://doi.org/10.1016/j.sajb.2014.03.011Test; Silva MJD, de Moura CFG, da Silva VHP, da Silva MA, Vilegas W, Ribeiro DA. Ethanolic extract of Mimosa caesalpiniifolia leaves: modulates chemically induced genotoxicity by cadmium exposure in liver and blood cells of rats. Planta Med. 2014;16:30. https://doi.org/10.1055/s-0034-1394688Test; Albuquerque UP, Oliveira RF. Is the use-impact on native caatinga species in Brazil reduced by the high species richness of medicinal plants? J Ethnopharmacol. 2017;113:156-70. https://doi.org/10.1016/j.jep.2007.05.025Test; Silva MJD, Ana SM, Silva N, Dias AT, Vilegas W, Macías A. Bioassay-guided isolation of fungistatic compounds from Mimosa caesalpiniifolia leaves. J Nat Prod. 2019;6:1496-502. https://doi.org/10.1021/acs.jnatprod.8b01025Test; Silva MD, Vilegas W, Silva MA, Paiotti APR, Pastrelo MM, Ruiz PLM, et al. The antiinflammatory potential of Mimosa caesalpiniifolia following experimental colitis: Role of COX-2 and TNF-Alpha Expression. Drug Res. 2017;67:19. https://doi.org/10.1055/s-0043-119750Test; Sanchez-Fidalgo S, Cárdeno A, Sánchez-Hidalgo M, Aparicio-Soto M, Alarcón de la Lastra C. Dietary extra virgin olive oil polyphenols supplementation modulates DSSinduced chronic colitis in mice. J Nutr Biochem. 2013;24:1401-13. https://doi.org/10.1016/j.jnutbio.2012.11.008Test; Dieleman LA, Palmen MJ, Akol H, Bloemena E, Pena AS, Meuwissen SG, et al. Chronic experimental colitis induced by dextran sulphate sodium (DSS) is characterized by Th1 and Th2 ctokines. Clin Exp Immunol. 1998;114:385-91. https://doi.org/10.1046/j.1365-2249.1998.00728.xTest; Ribeiro WR, Vinolo MAR, Calixto LA. Ferreira CM. Use of gas chromatography to quantify short chain fatty acids in the serum, colonic luminal content and feces of mice. Bioprotocol. 2018;20:e3089. https://doi.org/10.21769/bioprotoc.3089Test; Silva MJD, Beserra FP, Rodrigues VP, Silva MA, Silva GA, Hiruma-Lima CA, et al. Mimosa caesalpiniifolia (Fabaceae), a medicinal plant from Brazilian cerrado with antioxidant and antiinflammatory properties. Int J Complement Alt Med. 2021;14.; Rejón-Orante JC, Perdomo-Suaréz DP, Rejón-Rodríguez A, Hernández SH, Liévano OEG, Rodríguez DL, et al. Aqueous root extracts from Mimosa albida Humb. & Bonpl. ex Willd display antinociceptive activity in mice. J Ethnopharmacol. 2013;149:522-6. https://doi.org/10.1016/j.jep.2013.07.010Test; Bendgude RD, Maniyar MG, Kondawar MS, Patil SB, Hirave RV. Anthelmintic activity of leaves of Mimosa pudica. Int J Inst Pharm Life Sci. 2012;2:120-5.; Rivera-Arce E, Chávez-Soto MA, Herrera-Arellano A, Arzate S, Agüero J, Feria-Romero IA, et al. Therapeutic effectiveness of a Mimosa tenuiflora córtex extract in venous leg ulceration treatment. J Ethnopharmacol. 2007;109:523–8. https://doi.org/10.1016/j.jep.2006.08.032Test; Cheng Z, Zhou H, Yin J, Yu L. ESR estimation of hydroxyl radical scavenging capacity for lipophilic antioxidants. J Agric Food Chem. 2007;55:3325-33. https://doi.org/10.1021/jf0634808Test; Cohen LJ, Cho JH, Gevers D, Chu H. Genetic factors and the intestinal microbiome guide development of microbe-based therapies for inflammatory bowel diseases. Gastroenterology. 2019;156:2174-89. https://doi.org/10.1053/j.gastro.2019.03.017Test; Rivera-Arce E, Chávez-Soto MA, Herrera-Arellano A, Arzate S, Agüero J, FeriaRomero IA, et al. Therapeutic effectiveness of a Mimosa tenuiflora córtex extract in venous leg ulceration treatment. J Ethnopharmacol. 2007;109:523-8. https://doi.org/10.1016/j.jep.2006.08.032Test; Octaviano de Souza RS, de Albuquerque UP, Monteiro JM, Cavalcanti de Amorim EL. Jurema-Preta (Mimosa tenuiflora [Willd.] Poir.): a review of its traditional use, phytochemistry and pharmacology. Brazilian Archives of Biology and Technology. 2008;51:93747. https://doi.org/10.1590/S1516-89132008000500010Test; Okayasu I, Hatakeyama S, Yamada M, Ohkusa T, Inagaki Y, Nakaya R. A novel method in the induction of reliable experimental acute and chronic ulcerative colitis in mice. Gastroenterology. 1990;98:694-702. https://doi.org/10.1016/0016-5085Test(90)90290-H; Benoit C, Jesse DA, Madhu M, Matam VK. Dextran sulfate sodium (DSS)-induced colitis in mice. Curr Protoc Immunol. 2014;104:1-14. https://doi.org/10.1002/0471142735.im1525s104Test; Nighot, Al-Sadi R, Rawat M, Guo S, Watterson DM, Ma TP. Matrix metalloproteinase 9-induced increase in intestinal epithelial tight junction permeability contributes to the severity of experimental DSS colitis. Am J Physiol Gastrointest Liver Physiol. 2015;309:G988-97. https://doi.org/10.1152/ajpgi.00256.2015Test; Abe H, Urao T, Ito T, Seki M, Shinozaki K, Yamaguchi-Shinozaki K. Arabidopsis AtMYC2 (bHLH) and AtMYB2 (MYB) function as transcriptional activators in abscisic acid signaling. Plant Cell. 2003;15:63-78. https://doi.org/10.1105/tpc.006130Test; Abe H, Yamaguchi-Shinozaki K, Urao T, Iwasaki T, Hosokawa D, Shinozaki K. Role of Arabidopsis MYC and MYB homologs in drought- and abscisic acid-regulated gene expression. Plant Cell. 1997;9:1859-1868. https://doi.org/10.1105/tpc.9.10.1859Test; Aharoni A, Giri AP, Deuerlein S, Griepink F, de Kogel WJ, Verstappen FWA, et al. Terpenoid metabolism in wild-type and transgenic Arabidopsis plants. Plant Cell. 2003;15:2866-84. https://doi.org/10.1105/tpc.016253Test; Anderson JP, Badruzsaufari E, Schenk PM, Manners JM, Desmond OJ, Ehlert C, et al. Antagonistic interaction between abscisic acid and jasmonateethylene signaling pathways modulates defense gene expression and disease resistance in Arabidopsis. Plant Cell. 2004;16:3460-79. https://doi.org/10.1105/tpc.104.025833Test; Arimura GI, Ozawa R, Kugimiya S, Takabayashi J, Bohlmann J. Herbivore-induced defense response in a model legume. Two-spotted spider mites induce emission of (E)-beta-ocimene and transcript accumulation of (E)-beta-ocimene synthase in Lotus japonicus. Plant Physiol. 2004;135:1976-83. https://doi.org/10.1104/pp.104.042929Test; Arnaud N, Girin T, Sorefan K, Fuentes S, Wood TA, Lawrenson T, et al. Gibberellins control fruit patterning in Arabidopsis thaliana. Genes Dev. 2010;24:2127-32. https://doi.org/10.3389/fpls.2011.00107Test; Mcguckin MA, Eri RD, Das I, Lourie R, Florin TH. Intestinal secretory cell ER stress and inflammation. Biochem Soc Trans. 2011;39:1081-5.; Cummings JH, Rombeau J, Sakata T. Physiological and clinical aspects of short-chain fatty acids. Cambridge: Cambridge University Press; 1995.; Dostal A, Lacroix C, Bircher L, Pham VT, Follador R, Zimmermann MB, et al. Iron modulates butyrate production by a child gut microbiota in vitro. mBio 2015;6: e01453-15. https://doi.org/10.1128/mBio.01453-15Test; Tedelind S, Westberg F, Kjerrulf M, Vidal A. Antiinflammatory properties of the short-chain fatty acids acetate and propionate: A study with relevance to inflammatory bowel disease. World J Gastroenterol. 2007;13:2826-32. https://doi.org/10.3748/wjg.v13.i20.2826Test; Van Paassen NB, Vincent A, J. Puiman PJ, van der Sluis M, Bouma J, Boehm G, et al. The regulation of intestinal mucin MUC2 expression by short-chain fatty acids: implications for epithelial protection. Biochem J. 2009;13:211-9. https://doi.org/10.1042/BJ20082222Test; https://revistabiomedica.org/index.php/biomedica/article/view/6611Test

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    المساهمون: (UNIFESP) Universidade Federal de São Paulo, (UNIFAL-MG) Universidade Federal de Alfenas, (UNESP) Universidade Estadual Paulista Júlio de Mesquita Filho, Pereira, Joice Naiara Bertaglia|:Técnico|:(LEDM) Lab. Estratégico de Diagnóstico Molecular, (LEDM) Lab. Estratégico de Diagnóstico Molecular

    العلاقة: Biomédica Revista del Instituto Nacional de Salud; Biomédica; Garnevi-Fávero A, Silva KN, Ribeiro WR, Ferreira CM, Sartorelli P, Cardili L, et al. Effects of Mimosa caesalpiniifolia pre-formulation on the intestinal barrier during sodium dextran sulfate-induced colitis in Wistar rats. Biomédica. 2023 Jun; 43(2). doi:10.7705/biomedica.6611.; https://repositorio.butantan.gov.br/handle/butantan/4970Test; 43; v. 43, n. 2, jun. 2023; 2023 Jun; 43(2); BR78.1; IBProd

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