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Current Topics in Medicinal Chemistry

Editor-in-Chief

ISSN (Print): 1568-0266
ISSN (Online): 1873-4294

Review Article

Plants and Phytocompounds Active Against Bothrops Venoms

Author(s): Roberta Jeane Bezerra Jorge, René Duarte Martins, Renata Mendonça Araújo, Meykson Alexandre da Silva, Helena Serra Azul Monteiro and Rafael Matos Ximenes*

Volume 19, Issue 22, 2019

Page: [2003 - 2031] Pages: 29

DOI: 10.2174/1568026619666190723153925

Price: $65

Abstract

Snakebite envenomation is an important health problem in tropical countries, with severe human and social consequences. In Latin America, the Bothrops species constitute the main threat to humans, and the envenomation caused by these species quickly develops into severe local tissue damage, including swelling, hemorrhaging, myonecrosis, skin ulceration, and pain. The systemic effects of envenomation are usually neutralized by antivenom serum therapy, despite its intrinsic risks. However, neutralization of local tissue damage remains a challenge. To improve actual therapy, two major alternatives are proposed: the rational design of new specific antibodies for most of the tissue damaging/ poor immunogenic toxins, or the search for new synthetic or natural compounds which are able to inhibit these toxins and complement the serum therapy. Natural compounds isolated from plants, mainly from those used in folk medicine to treat snakebite, are a good choice for finding new lead compounds to improve snakebite treatment and minimize its consequences for the victims. In this article, we reviewed the most promising plants and phytocompounds active against bothropic venoms.

Keywords: Bothrops, Snakebite envenomation, Medicinal plants, Natural inhibitors, Secondary metabolites, Anti-bothropic serum.

Graphical Abstract

[1]
Harrison, R.A.; Hargreaves, A.; Wagstaff, S.C.; Faragher, B.; Lalloo, D.G. Snake envenoming: A disease of poverty. PLoS Negl. Trop. Dis., 2009, 3(12)e569
[http://dx.doi.org/10.1371/journal.pntd.0000569] [PMID: 20027216]
[2]
Gutiérrez, J.M.; Calvete, J.J.; Habib, A.G.; Harrison, R.A.; Williams, D.J.; Warrell, D.A. Snakebite envenoming. Nat. Rev. Dis. Primers, 2017, 3, 17063.
[http://dx.doi.org/10.1038/nrdp.2017.63] [PMID: 28905944]
[3]
Cardoso, J.L.; Fan, H.W.; França, F.O.; Jorge, M.T.; Leite, R.P.; Nishioka, S.A.; Avila, A.; Sano-Martins, I.S.; Tomy, S.C.; Santoro, M.L.; Chudzinski, A.M.; Castro, S.B.; Kamiguti, A.S.; Kelen, E.M.A.; Hirata, M.H.; Mirandola, R.M.S.; Theakston, R.D.G.; Warrell, D.A. Randomized comparative trial of three antivenoms in the treatment of envenoming by lance-headed vipers (Bothrops jararaca) in São Paulo, Brazil. Q. J. Med., 1993, 86(5), 315-325.
[PMID: 8327649]
[4]
Caron, E.J.; Manock, S.R.; Maudlin, J.; Koleski, J.; Theakston, R.D.; Warrell, D.A.; Smalligan, R.D. Apparent marked reduction in early antivenom reactions compared to historical controls: was it prophylaxis or method of administration? Toxicon, 2009, 54(6), 779-783.
[http://dx.doi.org/10.1016/j.toxicon.2009.06.001] [PMID: 19520099]
[5]
Brown, N.; Landon, J. Antivenom: the most cost-effective treatment in the world? Toxicon, 2010, 55(7), 1405-1407.
[http://dx.doi.org/10.1016/j.toxicon.2010.02.012] [PMID: 20171241]
[6]
de Silva, H.A.; Ryan, N.M.; de Silva, H.J. Adverse reactions to snake antivenom, and their prevention and treatment. Br. J. Clin. Pharmacol., 2016, 81(3), 446-452.
[http://dx.doi.org/10.1111/bcp.12739] [PMID: 26256124]
[7]
Habib, A.G.; Brown, N.I. The snakebite problem and antivenom crisis from a health-economic perspective. Toxicon, 2018, 150(150), 115-123.
[http://dx.doi.org/10.1016/j.toxicon.2018.05.009] [PMID: 29782952]
[8]
Chippaux, J.P. Incidence and mortality due to snakebite in the Americas. PLoS Negl. Trop. Dis., 2017, 11(6)e0005662
[http://dx.doi.org/10.1371/journal.pntd.0005662] [PMID: 28636631]
[9]
Farias, I.B.; Morais-Zani, K.; Serino-Silva, C.; Sant’Anna, S.S.; Rocha, M.M.T.D.; Grego, K.F.; Andrade-Silva, D.; Serrano, S.M.T.; Tanaka-Azevedo, A.M. Functional and proteomic comparison of Bothrops jararaca venom from captive specimens and the Brazilian Bothropic Reference Venom. J. Proteomics, 2018, 174, 36-46.
[http://dx.doi.org/10.1016/j.jprot.2017.12.008] [PMID: 29275044]
[10]
Tasoulis, T.; Isbister, G.K. A review and database of snake venom proteomes. Toxins (Basel), 2017, 9(9)E290
[http://dx.doi.org/10.3390/toxins9090290] [PMID: 28927001]
[11]
Correa-Netto, C.; Teixeira-Araujo, R.; Aguiar, A.S.; Melgarejo, A.R.; De-Simone, S.G.; Soares, M.R.; Foguel, D.; Zingali, R.B. Immunome and venome of Bothrops jararacussu: A proteomic approach to study the molecular immunology of snake toxins. Toxicon, 2010, 55(7), 1222-1235.
[http://dx.doi.org/10.1016/j.toxicon.2009.12.018] [PMID: 20060013]
[12]
Segura, A.; Castillo, M.C.; Núñez, V.; Yarlequé, A.; Gonçalves, L.R.; Villalta, M.; Bonilla, C.; Herrera, M.; Vargas, M.; Fernández, M.; Yano, M.Y.; Araújo, H.P.; Boller, M.A.; León, P.; Tintaya, B.; Sano-Martins, I.S.; Gómez, A.; Fernández, G.P.; Geoghegan, P.; Higashi, H.G.; León, G.; Gutiérrez, J.M. Preclinical assessment of the neutralizing capacity of antivenoms produced in six Latin Americancountries against medically-relevant Bothrops snake venoms. Toxicon, 2010, 56(6), 980-989.
[http://dx.doi.org/10.1016/j.toxicon.2010.07.001] [PMID: 20621114]
[13]
Gutiérrez, J.M.; Lomonte, B.; Sanz, L.; Calvete, J.J.; Pla, D. Immunological profile of antivenoms: preclinical analysis of the efficacy of a polyspecific antivenom through antivenomics and neutralization assays. J. Proteomics, 2014, 105, 340-350.
[http://dx.doi.org/10.1016/j.jprot.2014.02.021] [PMID: 24583507]
[14]
Gutiérrez, J.M.; Rucavado, A.; Chaves, F.; Díaz, C.; Escalante, T. Experimental pathology of local tissue damage induced by Bothrops asper snake venom. Toxicon, 2009, 54(7), 958-975.
[http://dx.doi.org/10.1016/j.toxicon.2009.01.038] [PMID: 19303033]
[15]
Calvete, J.J.; Sanz, L.; Pérez, A.; Borges, A.; Vargas, A.M.; Lomonte, B.; Ângulo, Y.; Gutiérrez, J.M.; Chalkidis, H.M.; Mourão, R.H.; Furtado, M.F.; Moura-Da-Silva, A.M. Snake population venomics and antivenomics of Bothrops atrox: Paedomorphism along its transamazonian dispersal and implications of geographic venom variability on snakebite management. J. Proteomics, 2011, 74(4), 510-527.
[http://dx.doi.org/10.1016/j.jprot.2011.01.003] [PMID: 21278006]
[16]
Sousa, L.F.; Nicolau, C.A.; Peixoto, P.S.; Bernardoni, J.L.; Oliveira, S.S.; Portes-Junior, J.A.; Mourão, R.H.V.; Lima-dos-Santos, I.; Sano-Martins, I.S.; Chalkidis, H.M.; Valente, R.H.; Moura-da-Silva, A.M. Comparison of phylogeny, venom composition and neutralization by antivenom in diverse species of bothrops complex. PLoS Negl. Trop. Dis., 2013, 7(9)e2442
[http://dx.doi.org/10.1371/journal.pntd.0002442] [PMID: 24069493]
[17]
Lomonte, B.; León, G. ângulo, Y.; Rucavado, A.; Núñez, V. Neutralization of Bothrops asper venom by antibodies, natural products and synthetic drugs: contributions to understanding snakebite envenomings and their treatment. Toxicon, 2010, 55, 1412-1413.
[http://dx.doi.org/10.1016/j.toxicon.2010.02.018]
[18]
Baraldi, P.T.; Magro, A.J.; Matioli, F.F.; Marcussi, S.; Lemke, N.; Calderon, L.A.; Stábeli, R.G.; Soares, A.M.; Correa, A.G.; Fontes, M.R. A novel synthetic quinolinone inhibitor presents proteolytic and hemorrhagic inhibitory activities against snake venom metalloproteases. Biochimie, 2016, 121, 179-188.
[http://dx.doi.org/10.1016/j.biochi.2015.11.031] [PMID: 26700145]
[19]
Santos Barreto, G.N.; de Oliveira, S.S.; Dos Anjos, I.V.; Chalkidis, H.M.; Mourão, R.H.; Moura-da-Silva, A.M.; Sano-Martins, I.S.; Gonçalves, L.R. Experimental Bothrops atrox envenomation: Efficacy of antivenom therapy and the combination of Bothrops antivenom with dexamethasone. PLoS Negl. Trop. Dis., 2017, 11(3)e0005458
[http://dx.doi.org/10.1371/journal.pntd.0005458] [PMID: 28306718]
[20]
Mors, W.B. Plants against snake-bites. Mem. Inst. Oswaldo Cruz, 1991, 86(Suppl. 2), 193.
[http://dx.doi.org/10.1590/S0074-02761991000600044] [PMID: 1842000]
[21]
Mors, W.B.; Nascimento, M.C.; Pereira, B.M.; Pereira, N.A. Plant natural products active against snake bite--the molecular approach. Phytochemistry, 2000, 55(6), 627-642.
[http://dx.doi.org/10.1016/S0031-9422(00)00229-6] [PMID: 11130675]
[22]
Upasani, S.V.; Beldar, V.G.; Tatiya, A.U.; Upasani, M.S.; Surana, S.J.; Patil, D.S. Ethnomedicinal plants used for snakebite in India: A brief overview. Integr. Med. Res., 2017, 6(2), 114-130.
[http://dx.doi.org/10.1016/j.imr.2017.03.001] [PMID: 28664135]
[23]
Giovannini, P.; Howes, M.R. Medicinal plants used to treat snakebite in Central America: Review and assessment of scientific evidence. J. Ethnopharmacol., 2017, 199, 240-256.
[http://dx.doi.org/10.1016/j.jep.2017.02.011] [PMID: 28179114]
[24]
Soares, A.M.; Januário, A.H.; Lourenço, M.V.; Pereira, A.M.; Pereira, P.S. Neutralizing effects of Brazilian plants against snake venoms. Drugs Future, 2004, 29, 1105-1117.
[http://dx.doi.org/10.1358/dof.2004.029.11.851973]
[25]
Soares, A.M.; Ticli, F.K.; Marcussi, S.; Lourenço, M.V.; Januário, A.H.; Sampaio, S.V.; Giglio, J.R.; Lomonte, B.; Pereira, P.S. Medicinal plants with inhibitory properties against snake venoms. Curr. Med. Chem., 2005, 12(22), 2625-2641.
[http://dx.doi.org/10.2174/092986705774370655] [PMID: 16248818]
[26]
Nakagawa, M.; Nakanishi, K.; Darko, L.L. VICK, J.A. Structures of cabenegrins A-I and A-II, potent anti-snake venoms. Tetrahedron Lett., 1982, 23, 3855-3858.
[http://dx.doi.org/10.1016/S0040-4039(00)87726-6]
[27]
de Moura, V.M.; Freitas de Sousa, L.A.; Cristina Dos-Santos, M.; Almeida Raposo, J.D.; Evangelista Lima, A.; de Oliveira, R.B.; da Silva, M.N.; Veras Mourão, R.H. Plants used to treat snakebites in Santarém, western Pará, Brazil: an assessment of their effectiveness in inhibiting hemorrhagic activity induced by Bothrops jararaca venom. J. Ethnopharmacol., 2015, 161, 224-232.
[http://dx.doi.org/10.1016/j.jep.2014.12.020] [PMID: 25536288]
[28]
Pereira, I.C.; Barbosa, A.M.; Salvador, M.J.; Soares, A.M.; Ribeiro, W.; Cogo, I.C.; Zamuner, S.R. Anti-inflammatory activity of Blutaparon portulacoides ethanolic extract against the inflammatory reaction induced by Bothrops jararacussu venom and isolated myotoxins BthTX-I and II. J. Venom. Anim. Toxins Incl. Trop. Dis., 2009, 15(3), 527-545.
[http://dx.doi.org/10.1590/S1678-91992009000300013]
[29]
Pereañez, J.A.; Lobo-Echeverri, T.; Rojano, B.; Vargas, L.; Fernadez, M.; Gaviria, C.A.; Núñez, V. Correlation of the inhibitory activity of phospholipase A2 snake venom and the antioxidant activity of Colombian plant extracts. Brazil. J. Pharmacogn., 2010, 20(6), 910-916.
[http://dx.doi.org/10.1590/S0102-695X2010005000030]
[30]
Otero, R.; Núñez, V.; Jiménez, S.L.; Fonnegra, R.; Osorio, R.G.; García, M.E.; Díaz, A. Snakebites and ethnobotany in the northwest region of Colombia: Part II: neutralization of lethal and enzymatic effects of Bothrops atrox venom. J. Ethnopharmacol., 2000, 71(3), 505-511.
[http://dx.doi.org/10.1016/S0378-8741(99)00197-X] [PMID: 10940590]
[31]
Biondo, R.; Pereira, A.M.; Marcussi, S.; Pereira, P.S.; França, S.C.; Soares, A.M. Inhibition of enzymatic and pharmacological activities of some snake venoms and toxins by Mandevilla velutina (Apocynaceae) aqueous extract. Biochimie, 2003, 85(10), 1017-1025.
[http://dx.doi.org/10.1016/S0300-9084(03)00138-X] [PMID: 14644557]
[32]
Veronese, E.L.; Esmeraldino, L.E.; Trombone, A.P.; Santana, A.E.; Bechara, G.H.; Kettelhut, I.; Cintra, A.C.; Giglio, J.R.; Sampaio, S.V. Inhibition of the myotoxic activity of Bothrops jararacussu venom and its two major myotoxins, BthTX-I and BthTX-II, by the aqueous extract of Tabernaemontana catharinensis A. DC. (Apocynaceae). Phytomedicine, 2005, 12(1-2), 123-130.
[http://dx.doi.org/10.1016/j.phymed.2003.07.010] [PMID: 15693719]
[33]
Otero, R.; Fonnegra, R.; Jiménez, S.L.; Núñez, V.; Evans, N.; Alzate, S.P.; García, M.E.; Saldarriaga, M.; Del Valle, G.; Osorio, R.G.; Díaz, A.; Valderrama, R.; Duque, A.; Vélez, H.N. Snakebites and ethnobotany in the northwest region of Colombia: Part I: Traditional use of plants. J. Ethnopharmacol., 2000, 71(3), 493-504.
[http://dx.doi.org/10.1016/S0378-8741(00)00243-9] [PMID: 10940589]
[34]
Otero, R.; Núñez, V.; Barona, J.; Fonnegra, R.; Jiménez, S.L.; Osorio, R.G.; Saldarriaga, M.; Díaz, A. Snakebites and ethnobotany in the northwest region of Colombia. Part III: neutralization of the haemorrhagic effect of Bothrops atrox venom. J. Ethnopharmacol., 2000, 73(1-2), 233-241.
[http://dx.doi.org/10.1016/S0378-8741(00)00321-4] [PMID: 11025161]
[35]
Núñez, V.; Otero, R.; Barona, J.; Saldarriaga, M.; Osorio, R.G.; Fonnegra, R.; Jiménez, S.L.; Díaz, A.; Quintana, J.C. Neutralization of the edema-forming, defibrinating and coagulant effects of Bothrops asper venom by extracts of plants used by healers in Colombia. Braz. J. Med. Biol. Res., 2004, 37(7), 969-977.
[http://dx.doi.org/10.1590/S0100-879X2004000700005] [PMID: 15264003]
[36]
Caro, D.; Ocampo, Y.; Castro, J.; Barrios, L.; Salas, R.; Franco, L.A. Protective effect of Dracontium dubium against Bothrops asper venom. Biomed. Pharmacother., 2017, 89, 1105-1114.
[http://dx.doi.org/10.1016/j.biopha.2017.02.080] [PMID: 28298071]
[37]
Lovera, A.; Bonilla, C.; Hidalgo, J. Neutralizing effect of the aqueous extract of Dracontium loretense (SERGHA) on the lethal activity of the poison of Bothrops atrox, Rev. Peru. Med. Exp. Public Health, 2006, 23(3), 177-181.
[38]
Moura, V.M.; Sousa, L.A.F.; Oliveira, R.B.; Silva, A.M.M.; Chalkidis, H.M.; Silva, M.N.; Pacheco, S.; Mourão, R.H.V. Inhibition of the principal enzymatic and biological effects of the crude venom of Bothrops atrox by plant extracts. J. Med. Plants Res., 2013, 7(31), 2330-2337.
[http://dx.doi.org/10.5897/JMPR2013.5148]
[39]
Lisboa-Neto, A.S.; Ribeiro, A.E.A.S.; Feitosa, E.F.; Wanderley, C.W.S.; Oliveira, A.P.; Almeida, J.R.G.S.; Palheta-Junior, R.C. Cocos nucifera oil decreases edema and mechanical hypernociception induced by Bothrops jararacussu venom in mice. Planta Medica International Open, 2017, 4(1), e17-e23.
[http://dx.doi.org/10.1055/s-0043-105273]
[40]
Bernard, P.; Scior, T.; Didier, B.; Hibert, M.; Berthon, J.Y.; Berthon, J.Y. Ethnopharmacology and bioinformatic combination for leads discovery: application to phospholipase A(2) inhibitors. Phytochemistry, 2001, 58(6), 865-874.
[http://dx.doi.org/10.1016/S0031-9422(01)00312-0] [PMID: 11684183]
[41]
Januário, A.H.; Santos, S.L.; Marcussi, S.; Mazzi, M.V.; Pietro, R.C.I.R.; Sato, D.N.; Ellena, J.; Sampaio, S.V.; França, S.C.; Soares, A.M. Neo-clerodane diterpenoid, a new metalloprotease snake venom inhibitor from Baccharis trimera (Asteraceae): anti-proteolytic and anti-hemorrhagic properties. Chem. Biol. Interact., 2004, 150(3), 243-251.
[http://dx.doi.org/10.1016/j.cbi.2004.09.016] [PMID: 15560891]
[42]
Badilla, B.; Chaves, F.; Mora, G.; Poveda, L.J. Edema induced by Bothrops asper (Squamata: Viperidae) snake venom and its inhibition by Costa Rican plant extracts. Rev. Biol. Trop., 2006, 54(2), 245-252.
[http://dx.doi.org/10.15517/rbt.v54i2.13865] [PMID: 18494294]
[43]
Melo, P.A.; do Nascimento, M.C.; Mors, W.B.; Suarez-Kurtz, G. Inhibition of the myotoxic and hemorrhagic activities of crotalid venoms by Eclipta prostrata (Asteraceae) extracts and constituents. Toxicon, 1994, 32(5), 595-603.
[http://dx.doi.org/10.1016/0041-0101(94)90207-0] [PMID: 8079371]
[44]
Diogo, L.C.; Fernandes, R.S.; Marcussi, S.; Menaldo, D.L.; Roberto, P.G.; Matrangulo, P.V.F.; Pereira, P.S.; França, S.C.; Giuliatti, S.; Soares, A.M.; Lourenço, M.V. Inhibition of snake venoms and phospholipases A(2) by extracts from native and genetically modified Eclipta alba: isolation of active coumestans. Basic Clin. Pharmacol. Toxicol., 2009, 104(4), 293-299.
[http://dx.doi.org/10.1111/j.1742-7843.2008.00350.x] [PMID: 19320636]
[45]
Melo, P.A.; Pinheiro, D.A.; Ricardo, H.D.; Fernandes, F.F.; Tomaz, M.A.; El-Kik, C.Z.; Strauch, M.A.; da Fonseca, T.F.; Sifuentes, D.N.; Calil-Elias, S.; Buarque, C.D.; Brito, F.V.; Costa, P.R.; Da Silva, A.J. Ability of a synthetic coumestan to antagonize Bothrops snake venom activities. Toxicon, 2010, 55(2-3), 488-496.
[http://dx.doi.org/10.1016/j.toxicon.2009.09.021] [PMID: 19883675]
[46]
Patrão-Neto, F.C.; Tomaz, M.A.; Strauch, M.A.; Monteiro-Machado, M.; Rocha, J.R., Jr; Borges, P.A.; Calil-Elias, S.; Melo, P.A. Dexamethasone antagonizes the in vivo myotoxic and inflammatory effects of Bothrops venoms. Toxicon, 2013, 69, 55-64.
[http://dx.doi.org/10.1016/j.toxicon.2013.01.023] [PMID: 23416798]
[47]
Maiorano, V.A.; Marcussi, S.; Daher, M.A.; Oliveira, C.Z.; Couto, L.B.; Gomes, O.A.; França, S.C.; Soares, A.M.; Pereira, P.S. Antiophidian properties of the aqueous extract of Mikania glomerata. J. Ethnopharmacol., 2005, 102(3), 364-370.
[http://dx.doi.org/10.1016/j.jep.2005.06.039] [PMID: 16084045]
[48]
Oliveira, D.P.C.; Borrás, M.R.L.; Ferreira, L.C.L.F.; López-Lozano, J.L. Anti-inflammaroey activity of the aqueous extract of Arrabidaea chica (Humb. & Bonpl.) B. Verl. On the self induced inflammatory process from venoms amazonians snakes. Rev. Bras. Farmacogn., 2009, 19(2b), 643-649.
[http://dx.doi.org/10.1590/S0102-695X2009000400024]
[49]
Reis, F.P.; Senna Bonfa, I.M.; Cavalcante, R.B.; Okoba, D.; de Souza Vasconcelos, S.B.; Candeloro, L.; de Oliveira Filiu, W.F.; Duenhas Monreal, A.C.; da Silva, V.J.; Santa Rita, P.H.; Carollo, C.A.; Toffoli-Kadri, M.C. Tabebuia aurea decreases inflammatory, myotoxic and hemorrhagic activities induced by the venom of Bothrops neuwiedi. J. Ethnopharmacol, 2014. 158(Pt A), 352-357.
[http://dx.doi.org/10.1016/j.jep.2014.10.045] [PMID: 25446588]
[50]
Malange, K.F.; Dos Santos, G.G.; Parada, C.A.; Kato, N.N.; Toffoli-Kadri, M.C.; Carollo, C.A; Silva, D.B.; Portugal, L.C.; Alves, F.M.; Rita, P.H.S.; Rondon, E.S. Tabebuia aurea decreases hyperalgesia and neuronal injury induced by snake venom. J. Ethnopharm.,2018, S0378-8741(18), 33136-2.
[51]
Ticli, F.K.; Hage, L.I.; Cambraia, R.S.; Pereira, P.S.; Magro, A.J.; Fontes, M.R.; Stábeli, R.G.; Giglio, J.R.; França, S.C.; Soares, A.M.; Sampaio, S.V. Rosmarinic acid, a new snake venom phospholipase A2 inhibitor from Cordia verbenacea (Boraginaceae): Antiserum action potentiation and molecular interaction. Toxicon, 2005, 46(3), 318-327.
[http://dx.doi.org/10.1016/j.toxicon.2005.04.023] [PMID: 15992846]
[52]
de Oliveira, E.C.; Anholeti, M.C.; Domingos, T.F.; Faioli, C.N.; Sanchez, E.F.; de Paiva, S.R.; Fuly, A.L. Inhibitory effect of the plant Clusia fluminensis against biological activities of Bothrops jararaca snake venom. Nat. Prod. Commun., 2014, 9(1), 21-25.
[http://dx.doi.org/10.1177/1934578X1400900108] [PMID: 24660453]
[53]
Fernandes, F.F.; Tomaz, M.A.; El-Kik, C.Z.; Monteiro-Machado, M.; Strauch, M.A.; Cons, B.L.; Tavares-Henriques, M.S.; Cintra, A.C.; Facundo, V.A.; Melo, P.A. Counteraction of Bothrops snake venoms by Combretum leprosum root extract and arjunolic acid. J. Ethnopharmacol., 2014, 155(1), 552-562.
[http://dx.doi.org/10.1016/j.jep.2014.05.056] [PMID: 24952279]
[54]
Tribuiani, N.; Tavares, M.O.; Santana, M.N.; Fontana Oliveira, I.C.; Amaral Filho, J.D.; Silva, M.G.; Dos Santos, M.G.; Cogo, J.C.; Floriano, R.S.; Cogo-Müller, K.; Oshima-Franco, Y. Neutralising ability of Terminalia fagifolia extract (Combretaceae) against the in vitro neuromuscular effects of Bothrops jararacussu venom. Nat. Prod. Res., 2017, 31(23), 2783-2787.
[http://dx.doi.org/10.1080/14786419.2017.1292506] [PMID: 28278626]
[55]
Picanço, L.C.; Bittencourt, J.A.; Henriques, S.V.; da Silva, J.S.; Oliveira, J.M.; Ribeiro, J.R.; Sanjay, A.B.; Carvalho, J.C.; Stien, D.; Silva, J.O. Pharmacological activity of Costus spicatus in experimental Bothrops atrox envenomation. Pharm. Biol., 2016, 54(10), 2103-2110.
[http://dx.doi.org/10.3109/13880209.2016.1145703] [PMID: 27306958]
[56]
Fernandes, J.M.; Félix-Silva, J.; da Cunha, L.M.; Gomes, J.A.S.; Siqueira, E.M.S.; Gimenes, L.P.; Lopes, N.P.; Lira Soares, L.A.; Fernandes-Pedrosa, M.F.; Zucolotto, S.M. Correction: Inhibitory effects of hydroethanolic leaf extracts of kalanchoe brasiliensis and kalanchoe pinnata (crassulaceae) against local effects induced by bothrops jararaca snake venom. PLoS One, 2017, 12(2)e0172598
[http://dx.doi.org/10.1371/journal.pone.0172598] [PMID: 28207897]
[57]
Nishijima, C.M.; Rodrigues, C.M.; Silva, M.A.; Lopes-Ferreira, M.; Vilegas, W.; Hiruma-Lima, C.A. Anti-hemorrhagic activity of four Brazilian vegetable species against Bothrops jararaca venom. Molecules, 2009, 14(3), 1072-1080.
[http://dx.doi.org/10.3390/molecules14031072] [PMID: 19305361]
[58]
Esmeraldino, L.E.; Souza, A.M.; Sampaio, S.V. Evaluation of the effect of aqueous extract of Croton urucurana Baillon (Euphorbiaceae) on the hemorrhagic activity induced by the venom of Bothrops jararaca, using new techniques to quantify hemorrhagic activity in rat skin. Phytomedicine, 2005, 12(8), 570-576.
[http://dx.doi.org/10.1016/j.phymed.2004.01.012] [PMID: 16121517]
[59]
Tartarine, N.; Pereira, J.M.; Nomelini, Q.S.S.; Ávila, V.M.R.; Izidoro, L.F.M. Adjust of linear and nonlinear models in the study of neutralization of snake venom Bothrops pauloensis by aqueous extracts Jathropha curcas and Hedychium coronarium. Revista Espacios, 2017, 38(4), 24.
[60]
Ferreira-Rodrigues, S.C.; Rodrigues, C.M.; Dos Santos, M.G.; Gautuz, J.A.; Silva, M.G.; Cogo, J.C.; Batista-Silva, C.; Dos Santos, C.P.; Groppo, F.C.; Cogo-Müller, K.; Oshima-Franco, Y. Anti-Inflammatory and antibothropic properties of Jatropha Elliptica, a plant from brazilian cerrado biome. Adv. Pharm. Bull., 2016, 6(4), 573-579.
[http://dx.doi.org/10.15171/apb.2016.071] [PMID: 28101464]
[61]
Félix-Silva, J.; Souza, T.; Menezes, Y.A.; Cabral, B.; Câmara, R.B.; Silva-Junior, A.A.; Rocha, H.A.; Rebecchi, I.M.; Zucolotto, S.M.; Fernandes-Pedrosa, M.F. Aqueous leaf extract of Jatropha gossypiifolia L. (Euphorbiaceae) inhibits enzymatic and biological actions of Bothrops jararaca snake venom. PLoS One, 2014, 9(8)e104952
[http://dx.doi.org/10.1371/journal.pone.0104952] [PMID: 25126759]
[62]
Félix-Silva, J.; Gomes, J.A.S.; Fernandes, J.M.; Moura, A.K.C.; Menezes, Y.A.S.; Santos, E.C.G.; Tambourgi, D.V.; Silva-Junior, A.A.; Zucolotto, S.M.; Fernandes-Pedrosa, M.F. Comparison of two Jatropha species (Euphorbiaceae) used popularly to treat snakebites in Northeastern Brazil: Chemical profile, inhibitory activity against Bothrops erythromelas venom and antibacterial activity. J. Ethnopharmacol., 2018, 213, 12-20.
[http://dx.doi.org/10.1016/j.jep.2017.11.002] [PMID: 29113958]
[63]
Gomes, S.A.J.; Felix-Silva, J.; Fernandes, M.J.; Amaral, G.J.; Lopes, P.N.; Do Egito, T.S.E.; Silva-Júnior, A.A.; Fernandes-Pedrosa, F.M. Aqueous leaf extract of Jatropha mollissima (Pohl) Bail Decreases local effects induced by Bothropic Venom. BioMed Res. Int., 2016, 2016(6101742), 13.
[64]
Saturnino-Oliveira, J. Santos, Ddo.C.; Guimarães, A.G.; Santos Dias, A.; Tomaz, M.A.; Monteiro-Machado, M.; Estevam, C.S.; De Lucca Júnior, W.; Maria, D.A.; Melo, P.A.; Araújo, A.A.; Santos, M.R.; Almeida, J.R.; Oliveira, Rde.C.; Pereira de Oliveira, A.; Quintans Júnior, L.J. Abarema cochliacarpos extract decreases the inflammatory process and skeletal muscle injury induced by Bothrops leucurus venom. BioMed Res. Int., 2014, 2014820761
[http://dx.doi.org/10.1155/2014/820761] [PMID: 25136627]
[65]
Oliveira, C.Z.; Maiorano, V.A.; Marcussi, S.; Sant’ana, C.D.; Januário, A.H.; Lourenço, M.V.; Sampaio, S.V.; França, S.C.; Pereira, P.S.; Soares, A.M. Anticoagulant and antifibrinogenolytic properties of the aqueous extract from Bauhinia forficata against snake venoms. J. Ethnopharmacol., 2005, 98(1-2), 213-216.
[http://dx.doi.org/10.1016/j.jep.2004.12.028] [PMID: 15763387]
[66]
Mack-Wen, G.; Viviana, L.; Rico, G.; Leidy, B.; Alarcon, P.; Juan, C.; Pereanez, J.J.A. Inhibición in vitro del veneno de Bothrops asper con extractos etanólicos de Brownea ariza B. (CAESALPINIACEAE). Vitae, 2011, 18(1), 43-48.
[67]
Puebla, P.; Oshima-Franco, Y.; Franco, L.M.; Santos, M.G.; Silva, R.V.; Rubem-Mauro, L.; Feliciano, A.S. Chemical constituents of the bark of Dipteryx alata vogel, an active species against Bothrops jararacussu venom. Molecules, 2010, 15(11), 8193-8204.
[http://dx.doi.org/10.3390/molecules15118193] [PMID: 21076386]
[68]
Ferraz, M.C.; Yoshida, E.H.; Tavares, R.V.; Cogo, J.C.; Cintra, A.C.; Dal Belo, C.A.; Franco, L.M.; dos Santos, M.G.; Resende, F.A.; Varanda, E.A.; Hyslop, S.; Puebla, P.; San Feliciano, A.; Oshima-Franco, Y. An isoflavone from Dipteryx alata Vogel is active against the in vitro neuromuscular paralysis of Bothrops jararacussu snake venom and bothropstoxin I, and prevents venom-induced myonecrosis. Molecules, 2014, 19(5), 5790-5805.
[http://dx.doi.org/10.3390/molecules19055790] [PMID: 24806579]
[69]
Nazato, V.S.; Rubem-Mauro, L.; Vieira, N.A. Rocha-Junior, Ddos.S.; Silva, M.G.; Lopes, P.S.; Dal-Belo, C.A.; Cogo, J.C.; dos Santos, M.G.; da Cruz-Höfling, M.A.; Oshima-Franco, Y. In vitro antiophidian properties of Dipteryx alata Vogel bark extracts. Molecules, 2010, 15(9), 5956-5970.
[http://dx.doi.org/10.3390/molecules15095956] [PMID: 20877202]
[70]
Colares, A.V.; Santos, M.G.; Corrado, A.P.; Sampaio, S.V.; Cintra, A.C.O.; Rodrigues-Simionid, S.H.L.; Belo, C.A.D. The anti-ophidic activities of the hydroalcoholic extract from the leaves of Galactia Glaucescens (Kunth) (Leguminosae). Ann. Nutrit. Metab. J., 2010, 180, 16-25.
[71]
Ximenes, R.M.; Alves, R.S.; Pereira, T.P.; Araújo, R.M.; Silveira, E.R.; Rabello, M.M.; Hernandes, M.Z.; Soares, V.C.G.; Bristot, D.; Pires, C.L.; Toyama, D.O.; Gaeta, H.H.; Monteiro, H.S.; Toyama, M.H. Harpalycin 2 inhibits the enzymatic and platelet aggregation activities of PrTX-III, a D49 phospholipase A2 from Bothrops pirajai venom. BMC Complement. Altern. Med., 2012, 12, 139.
[http://dx.doi.org/10.1186/1472-6882-12-139] [PMID: 22925825]
[72]
Ximenes, R.M.; Rabello, M.M.; Araújo, R.M.; Silveira, E.R.; Fagundes, F.R.; Diz-Filho, E.B.S.; Buzzo, S.C.; Soares, V.C.G.; Toyama, D.O.; Gaeta, H.H.; Hernandes, M.Z.; Monteiro, H.S.A.; Toyama, M.H. Inhibition of neurotoxic secretory phospholipases A2 enzumatic, edematogenic, and myotoxic activities by harpalycin 2, an isoflavone isolated from Harpalyce brasiliana Benth. Evidence- Based Complementary and Alternative Medicine, 2012, 2012(987517), 9.
[73]
da Silva, J.O.; Coppede, J.S.; Fernandes, V.C.; Sant’ana, C.D.; Ticli, F.K.; Mazzi, M.V.; Giglio, J.R.; Pereira, P.S.; Soares, A.M.; Sampaio, S.V. Antihemorrhagic, antinucleolytic and other antiophidian properties of the aqueous extract from Pentaclethra macroloba. J. Ethnopharmacol., 2005, 100(1-2), 145-152.
[http://dx.doi.org/10.1016/j.jep.2005.01.063] [PMID: 16054531]
[74]
de Moura, V.M.; da Silva, W.C.R.; Raposo, J.D.A.; Freitas-de-Sousa, L.A.; Dos-Santos, M.C.; de Oliveira, R.B.; Veras Mourão, R.H. The inhibitory potential of the condensed-tannin-rich fraction of Plathymenia reticulata Benth. (Fabaceae) against Bothrops atrox envenomation. J. Ethnopharmacol., 2016, 183, 136-142.
[http://dx.doi.org/10.1016/j.jep.2016.02.047] [PMID: 26940901]
[75]
Mendes, M.M.; Oliveira, C.F.; Lopes, D.S.; Vale, L.H.; Alcântara, T.M.; Izidoro, L.F.; Hamaguchi, A.; Homsi-Brandeburgo, M.I.; Soares, A.M.; Rodrigues, V.M. Anti-snake venom properties of Schizolobium parahyba (Caesalpinoideae) aqueous leaves extract. Phytother. Res., 2008, 22(7), 859-866.
[http://dx.doi.org/10.1002/ptr.2371] [PMID: 18567056]
[76]
Vale, L.H.; Mendes, M.M.; Hamaguchi, A.; Soares, A.M.; Rodrigues, V.M.; Homsi-Brandeburgo, M.I. Neutralization of pharmacological and toxic activities of bothrops snake venoms by Schizolobium parahyba (Fabaceae) aqueous extract and its fractions. Basic Clin. Pharmacol. Toxicol., 2008, 103(1), 104-107.
[http://dx.doi.org/10.1111/j.1742-7843.2008.00248.x] [PMID: 18598303]
[77]
F., Vale L.H.; Mendes, M.M.; Fernandes, R.S.; Costa, T.R.; S Hage-Melim, L.I.; A Sousa, M.; Hamaguchi, A.; Homsi-Brandeburgo, M.I.; Franca, S.C.; Silva, C.H.; Pereira, P.S.; Soares, A.M.; Rodrigues, V.M. Protective effect of schizolobium parahyba flavonoids against snake venoms and isolated toxins. Curr. Top. Med. Chem., 2011, 11(20), 2566-2577.
[http://dx.doi.org/10.2174/156802611797633438] [PMID: 21682680]
[78]
Pereañez, J.A.J.; Jiménez, S.L.; Quintana, J.C.; Núnez, V.; Fernandez, M.; Restrepo, Y. Inhibition of proteolytic, coagulant and indirect hemolytic activities induced by Bothrops asper venom, by ethanolic extacts from three heliconias species. Vitae, 2008, 15(1), 157-164.
[79]
Estrada, G.S.; Jiménez, S.L.; Alarcon, P.J.; Vargas, L.J. Application of ultrasound in the dissolution of potential antiophidian compounds from two ethanolics extracts of two species of Heliconias. Ultrason. Sonochem., 2010, 17(5), 756-759.
[http://dx.doi.org/10.1016/j.ultsonch.2010.01.014] [PMID: 20189865]
[80]
Assafim, M.; de Coriolano, E.C.; Benedito, S.E.; Fernandes, C.P.; Lobo, J.F.; Sanchez, E.F.; Rocha, L.M.; Fuly, A.L. Hypericum brasiliense plant extract neutralizes some biological effects of Bothrops jararaca snake venom. J. Venom Res., 2011, 2, 11-16.
[PMID: 21654896]
[81]
Strauch, M.A.; Tomaz, M.A.; Monteiro-Machado, M.; Ricardo, H.D.; Cons, B.L.; Fernandes, F.F.; El-Kik, C.Z.; Azevedo, M.S.; Melo, P.A. Antiophidic activity of the extract of the Amazon plant Humirianthera ampla and constituents. J. Ethnopharmacol., 2013, 145(1), 50-58.
[http://dx.doi.org/10.1016/j.jep.2012.10.033] [PMID: 23123799]
[82]
Costa, H.N.R.; Dos-Santos, M.C.; Alcântara, A.F.C.; Silva, M.C.; França, R.C.; Piló-Veloso, D. Constituintes químicos e atividade antiedematogênica de Peltodon radicans (Lamiaceae). Quim. Nova, 2008, 31(4), 744-750.
[http://dx.doi.org/10.1590/S0100-40422008000400006]
[83]
Ruppelt, B.M.; Gonçalves, L.C.; Pereira, N.A. Abordagem farmacológica de plantas recomendadas pela medicina folclórica como antiofídicas. II—bloqueio na atividade da permeabilidade capilar e na letalidade do veneno de Bothrops jararaca. Rev. Bras. Farmacogn., 1990, 71, 57-58.
[84]
Pereira, B.M.R.; Gonçalves, L.C.; Pereira, N.A. Pharmacological screening of plants recommended by folk medicine as anti-snake venom--I. Analgesic and anti-inflammatory activities. Rev. Bras. Farmacogn., 1992, 73, 85-86.
[85]
Castro, K.N.; Carvalho, A.L.; Almeida, A.P.; Oliveira, D.B.; Borba, H.R.; Costa, S.S.; Zingali, R.B. Preliminary in vitro studies on the Marsypianthes chamaedrys (boia-caá) extracts at fibrinoclotting induced by snake venoms. Toxicon, 2003, 41(7), 929-932.
[http://dx.doi.org/10.1016/S0041-0101(03)00087-4] [PMID: 12782094]
[86]
Rezende, D.A.C.S.; Cardoso, M.G.; Souza, R.V.; Teixeira, M.L.; Brandão, R.M.; Ferreira, V.R.F.; Nogueira, J.O.; Magalhães, M.L.; Marcussi, S.; Nelson, D.L. Essential oil from Mentha piperita, Cymbopogon citratus, Rosmarinus officinalis, Peumus boldus and Foeniculum vulgare: Inhibition of Phospholipase A2 and Cytotoxicity to human erythrocytes. Am. J. Plant Sci., 2017, 8(9), 2019-2207.
[87]
de Moura, V.M.; da Costa Guimarães, N.; Batista, L.T.; Freitas-de-Sousa, L.A.; de Sousa Martins, J.; de Souza, M.C.S.; Oliveira de Almeida, P.D.; Monteiro, W.M.; de Oliveira, R.B.; Dos-Santos, M.C.; Mourão, R.H.V. Assessment of the anti-snakebite properties of extracts of Aniba fragrans Ducke (Lauraceae) used in folk medicine as complementary treatment in cases of envenomation by Bothrops atrox. J. Ethnopharmacol., 2018, 213, 350-358.
[http://dx.doi.org/10.1016/j.jep.2017.11.027] [PMID: 29183746]
[88]
Torres, A.M.; Camargo, F.J.; Ricciardi, G.A.; Ricciardi, A.I.; Dellacassa, E. Neutralizing effects of Nectandra angustifolia extracts against Bothrops neuwiedi snake venom. Nat. Prod. Commun., 2011, 6(9), 1393-1396.
[http://dx.doi.org/10.1177/1934578X1100600942] [PMID: 21941922]
[89]
Mendes, M.M.; Vieira, S.A.P.B.; Gomes, M.S.R.; Paula, V.F.; Alcântara, T.M.; Homsi-Brandeburgo, M.I.; dos Santos, J.I.; Magro, A.J.; Fontes, M.R.M.; Rodrigues, V.M. Triacontyl p-coumarate: an inhibitor of snake venom metalloproteinases. Phytochemistry, 2013, 86, 72-82.
[http://dx.doi.org/10.1016/j.phytochem.2012.10.007] [PMID: 23141056]
[90]
Mourão de Moura, V.; Serra Bezerra, A.N.; Veras Mourão, R.H.; Varjão Lameiras, J.L.; Almeida Raposo, J.D.; Luckwu de Sousa, R.; Boechat, A.L.; Bezerra de Oliveira, R.; de Menezes Chalkidis, H.; Dos-Santos, M.C. A comparison of the ability of Bellucia dichotoma Cogn. (Melastomataceae) extract to inhibit the local effects of Bothrops atrox venom when pre-incubated and when used according to traditional methods. Toxicon, 2014, 85, 59-68.
[http://dx.doi.org/10.1016/j.toxicon.2014.04.009] [PMID: 24814014]
[91]
de Moura, V.M.; de Souza, L.Y.; da Costa Guimarães, N.; Dos Santos, I.G.; de Almeida, P.D.; de Oliveira, R.B.; Mourão, R.H.; Dos-Santos, M.C. The potential of aqueous extracts of Bellucia dichotoma Cogn. (Melastomataceae) to inhibit the biological activities of Bothrops atrox venom: A comparison of specimens collected in the states of Pará and Amazonas, Brazil. J. Ethnopharmacol., 2017, 196, 168-177.
[http://dx.doi.org/10.1016/j.jep.2016.12.031] [PMID: 27993635]
[92]
Badilla, B.; Chaves, F.; Jiménez, S.; Rodríguez, G.; Poveda, L.J. Effects of an extract of Cissampelos pareira on the hemorrhagic and proteolytic activities from Bothrops asper venom. Pharmacogn. Mag., 2008, 4(13), 27-31.
[93]
Ricciardi Verrastro, B.; Maria Torres, A.; Ricciardi, G.; Teibler, P.; Maruñak, S.; Barnaba, C.; Larcher, R.; Nicolini, G.; Dellacassa, E. The effects of Cissampelos pareira extract on envenomation induced by Bothropsdiporus snake venom. J. Ethnopharmacol., 2018, 212, 36-42.
[http://dx.doi.org/10.1016/j.jep.2017.09.015] [PMID: 28943445]
[94]
Bittencourt, J.A.H.M.; Oliveira, N.K.S.; Cabral, M.S.; Ribeiro, J.R.; Henriques, S.V.C.; Picanço, L.C.S.; Santos, C.B.; Stien, D.; Carvalho, J.C.T.; Silva, J.O. Antiophidian activity of Brosimum guianense (AUBL) Huber. Am. J. Pharmacol. Toxicol., 2014, 9(2), 148-156.
[http://dx.doi.org/10.3844/ajptsp.2014.148.156]
[95]
Borges, M.H.; Alves, D.L.; Raslan, D.S.; Piló-Veloso, D.; Rodrigues, V.M.; Homsi-Brandeburgo, M.I.; de Lima, M.E. Neutralizing properties of Musa paradisiaca L. (Musaceae) juice on phospholipase A2, myotoxic, hemorrhagic and lethal activities of crotalidae venoms. J. Ethnopharmacol., 2005, 98(1-2), 21-29.
[http://dx.doi.org/10.1016/j.jep.2004.12.014] [PMID: 15763360]
[96]
Sousa, L.A.F.; Moura, V.M.; Raposo, J.D.A.; Sousa, L.F.; Oliveira, R.B.; Santos, L.S.; Araújo, R.N.M.; Silva, A.M.M.; Aranha, E.P.; Suemitsu, C.; Guerra, C.E.; Chalkidis, H.M.; Pacheco, S.; Mourão, R.H.V. The effect of the aqueous extract of Myrcia guianensis (AubL) DC and its fractions against the hemorrhagic activity of Bothrops jararaca venom. J. Med. Plants Res., 2013, 7(42), 3139-3146.
[97]
Núñez, V.; Castro, V.; Murillo, R.; Ponce-Soto, L.A.; Merfort, I.; Lomonte, B. Inhibitory effects of Piper umbellatum and Piper peltatum extracts towards myotoxic phospholipases A2 from Bothrops snake venoms: isolation of 4-nerolidylcatechol as active principle. Phytochemistry, 2005, 66(9), 1017-1025.
[http://dx.doi.org/10.1016/j.phytochem.2005.03.026] [PMID: 15896371]
[98]
Alves, N.T.Q.; Ximenes, R.M.; Jorge, R.J.B.; Silveira, J.A.M.; Santos, J.V.A.; Rodrigues, F.A.P.; Costa, P.H.S.; Xavier, F.A.F., Jr; Evangelista, J.S.A.M.; Havt, A.; Soares, V.C.G.; Toyama, M.H.; Oliveira, A.N.A.; Araújo, R.M.; Alves, R.S.; Monteiro, H.S.A. Anti-ophidian activity of Bredemeyera floribunda Willd. (Polygalaceae) root extract on the local effects induced by Bothrops jararacussu venom. Braz. J. Med. Biol. Res., 2018, 52(1)e7581
[http://dx.doi.org/10.1590/1414-431x20187581] [PMID: 30517287]
[99]
Gallardo-Casas, C.A.; Guevara-Balcázar, G.; Morales-Ramos, E.; Tadeo-Jiménez, Y.; Gutiérrez-Flores, O.; Jiménez-Sánchez, N.; Valadez-Omaña, M.T.; Valenzuela-Vargas, M.T.; Castillo-Hernández, M.C. Ethnobotanic study of Randia aculeate (Rubiaceae) in Jamapa, Veracruz, México and its anti-snake venom effects on mouse tissue. J. Venom. Anim. Toxins Incl. Trop. Dis., 2012, 18(3), 287-294.
[http://dx.doi.org/10.1590/S1678-91992012000300006]
[100]
Freitas, F.G.; Silva, T.A.; Oliveira, F.; Santos, B.R.; Homsi-Brandesburgo, M.I.; Hamaguchi, A. Acute toxicity and antiophidic properties of Casearia grandiflora (Flacourtiaceae) aqueous extract: phospholipase A2, Myotoxic and Lethal activities of B. moojeni and B. neuwiedi Venom. Biosci. J., 2005, 21(2), 95-103.
[101]
Izidoro, L.F.; Rodrigues, V.M.; Rodrigues, R.S.; Ferro, E.V.; Hamaguchi, A.; Giglio, J.R.; Homsi-Brandeburgo, M.I. Neutralization of some hematological and hemostatic alterations induced by neuwiedase, a metalloproteinase isolated from Bothrops neuwiedi pauloensis snake venom, by the aqueous extract from Casearia mariquitensis (Flacourtiaceae). Biochimie, 2003, 85(7), 669-675.
[http://dx.doi.org/10.1016/S0300-9084(03)00126-3] [PMID: 14505822]
[102]
Borges, M.H.; Soares, A.M.; Rodrigues, V.M.; Andrião-Escarso, S.H.; Diniz, H.; Hamaguchi, A.; Quintero, A.; Lizano, S.; Gutiérrez, J.M.; Giglio, J.R.; Homsi-Brandeburgo, M.I. Effects of aqueous extract of Casearia sylvestris (Flacourtiaceae) on actions of snake and bee venoms and on activity of phospholipases A2. Comp. Biochem. Physiol. B Biochem. Mol. Biol., 2000, 127(1), 21-30.
[http://dx.doi.org/10.1016/S0305-0491(00)00237-6] [PMID: 11126749]
[103]
Cavalcante, W.L.; Campos, T.O.; Dal Pai-Silva, M.; Pereira, P.S.; Oliveira, C.Z.; Soares, A.M.; Gallacci, M. Neutralization of snake venom phospholipase A2 toxins by aqueous extract of Casearia sylvestris (Flacourtiaceae) in mouse neuromuscular preparation. J. Ethnopharmacol., 2007, 112(3), 490-497.
[http://dx.doi.org/10.1016/j.jep.2007.04.002] [PMID: 17540522]
[104]
Oshima-Franco, Y.; Alves, C.M.V.; Andréo Filho, N.; Gerenutti, M.; Cintra, A.C.O.; Leite, G.B.; Rodrigues-Simioni, L.; Silva, M.G. Neutralization of the neuromuscular activity of bothropstoxin-i, a myotoxin from Bothrops jararacussu snake venom, by a hydroalcoholic extract of Casearia sylvestris Sw. (guaçatonga). J. Venom. Anim. Toxins Incl. Trop. Dis., 2005, 11, 465-478.
[http://dx.doi.org/10.1590/S1678-91992005000400007]
[105]
Cintra-Francischinelli, M.; Silva, M.G.; Andréo-Filho, N.; Gerenutti, M.; Cintra, A.C.; Giglio, J.R.; Leite, G.B.; Cruz-Höfling, M.A.; Rodrigues-Simioni, L.; Oshima-Franco, Y. Antibothropic action of Casearia sylvestris Sw. (Flacourtiaceae) extracts. Phytother. Res., 2008, 22(6), 784-790.
[http://dx.doi.org/10.1002/ptr.2365] [PMID: 18389489]
[106]
Da Silva, S.L.; Calgarotto, A.K.; Chaar, J.S.; Marangoni, S. Isolation and characterization of ellagic acid derivatives isolated from Casearia sylvestris SW aqueous extract with anti-PLA(2) activity. Toxicon, 2008, 52(6), 655-666.
[http://dx.doi.org/10.1016/j.toxicon.2008.07.011] [PMID: 18718481]
[107]
da Silva, M.L.; Marcussi, S.; Fernandes, R.S.; Pereira, P.S.; Januário, A.H.; França, S.C.; Da Silva, S.L.; Soares, A.M.; Lourenço, M.V. Anti-snake venom activities of extracts and fractions from callus cultures of Sapindus saponaria. Pharm. Biol., 2012, 50(3), 366-375.
[http://dx.doi.org/10.3109/13880209.2011.608072] [PMID: 22133075]
[108]
Fernandes, R.R.; Costa, T.R.; Marcussi, S.; Bernardes, C.P.; Menaldo, D.L.; Gonzaléz, R.; Pereira, P.S.; Soares, A.M. Neutralization of pharmacological and activities of Bothrops jararacussu snake venom and isolated myotoxins by Serjania erecta methanolic extract and its fractions. J. Venom. Anim. Toxins Incl. Trop. Dis., 2011, 17(1), 85-93.
[http://dx.doi.org/10.1590/S1678-91992011000100011]
[109]
Torres, M.C.M. das Chagas L Pinto, F.; Braz-Filho, R.; Silveira, E.R.; Pessoa, O.D.; Jorge, R.J.; Ximenes, R.M.; Monteiro, H.S.; Monteiro Evangelista, J.S.; Diz-Filho, E.B.; Toyama, M.H. Antiophidic solanidane steroidal alkaloids from Solanum campaniforme. J. Nat. Prod., 2011, 74(10), 2168-2173.
[http://dx.doi.org/10.1021/np200479a] [PMID: 21962208]
[110]
Torres, M.C.M.; Jorge, R.J.B.; Ximenes, R.M.; Alves, N.T.; Santos, J.V.; Marinho, A.D.; Monteiro, H.S.; Toyama, M.H.; Braz-Filho, R.; Silveira, E.R.; Pessoa, O.D. Solanidane and iminosolanidane alkaloids from Solanum campaniforme. Phytochemistry, 2013, 96, 457-464.
[http://dx.doi.org/10.1016/j.phytochem.2013.09.007] [PMID: 24075572]
[111]
Tribuiani, N.; da Silva, A.M.; Ferraz, M.C.; Silva, M.G.; Bentes, A.P.G.; Graziano, T.S.; dos Santos, M.G.; Cogo, J.C.; Varanda, E.A.; Groppo, F.C.; Cogo, K.; Oshima-Franco, Y. Vellozia flavicans Mart. ex Schult. hydroalcoholic extract inhibits the neuromuscular blockade induced by Bothrops jararacussu venom. BMC Complement. Altern. Med., 2014, 14, 48.
[http://dx.doi.org/10.1186/1472-6882-14-48] [PMID: 24507387]
[112]
Cáceres, M.I.; Ricciardi, G.A.; Torres, A.M.; Ricciardi, B.V.; Ferrero, S.; Dellacassa, E. In vitro Anti-snake venom activites of Aloysia citriodora Palau: New possibility for a know aromatic plant. J. Essential Oil Bear. Plants, 2017, 20(1), 132-140.
[http://dx.doi.org/10.1080/0972060X.2016.1239551]
[113]
Da Silva, F.D.; Tribuiani, N.; Oliveira, I.C.F.; Miura, R.Y.H.; Floriano, R.S.; Santos, M.G.; Ferreira, S.R.; Oshima-Franco, Y. Effects of Vochysia haenkeana extract on the neuromuscular blockade induced by Bothrops jararaca venom on chick biventer cervicis preparation in vitro. J. Plant Sci. Phytopathol., 2017, 1, 052-058.
[114]
Santos, M.M.B.; Melo, M.M.; Jacome, D.O.; Ferreira, K.M.; Habermehl, G.G. Evaluation of local lesions in dogs experimentally envenomed by Bothrops alternatus after different treatments. Arq. Bras. Med. Vet. Zootec., 2003, 55, 639-644.
[http://dx.doi.org/10.1590/S0102-09352003000500020]
[115]
Fonseca, F.V.; Melo, M.M.; Silva, J.; Pereira, G.P.; Dantas-Barros, A.M. Curcuma longa L. and Kalanchoe brasiliensis extracts Camb. in local treatment of Bothrops alternatus poisoning. Rev. Bras. Pharmacogn., 2004, 14, 26-29.
[http://dx.doi.org/10.1590/S0102-695X2004000300011]
[116]
Melo, M.M.; Habermehl, G.G.; Oliveira, N.J.F.; Nascimento, E.F.; Santos, M.M.B.; Lúcia, M. Treatment of Bothrops alternatus envenomation by Curcuma longa and Calendula officinalis extracts and ar-turmerone. Arq. Bras. Med. Vet. Zootec., 2005, 57, 7-17.
[http://dx.doi.org/10.1590/S0102-09352005000100002]
[117]
Patiño, A.C.; López, J.; Aristizábal, M.; Quintana, J.C.; Benjumea, D. Evaluation of the inhibitory effect of extracts from leaves of Renealmia alpinia Rottb. Maas (Zingiberaceae) on the venom of Bothrops asper (mapaná). Biomedica, 2012, 32(3), 365-374.
[http://dx.doi.org/10.7705/biomedica.v32i3.591] [PMID: 23715185]
[118]
Patiño, A.C.; Benjumea, D.M.; Pereañez, J.A. Inhibition of venom serine proteinase and metalloproteinase activities by Renealmia alpinia (Zingiberaceae) extracts: comparison of wild and in vitro propagated plants. J. Ethnopharmacol., 2013, 149(2), 590-596.
[http://dx.doi.org/10.1016/j.jep.2013.07.033] [PMID: 23916793]
[119]
Gómez-Betancur, I.; Benjumea, D.; Patiño, A.; Jiménez, N.; Osorio, E. Inhibition of the toxic effects of Bothrops asper venom by pinostrobin, a flavanone isolated from Renealmia alpinia (Rottb.) MAAS. J. Ethnopharmacol., 2014, 155(3), 1609-1615.
[http://dx.doi.org/10.1016/j.jep.2014.08.002] [PMID: 25138354]
[120]
Patiño, A.C.; Quintana, J.C.; Gutiérrez, J.M.; Rucavado, A.; Benjumea, D.M.; Pereañez, J.A. Extracts of renealmia alpinia (Rottb.) maas protect against lethality and systemic hemorrhage induced by bothrops asper venom: insights from a model with extract administration before venom injection. Toxins (Basel), 2015, 7(5), 1532-1543.
[http://dx.doi.org/10.3390/toxins7051532] [PMID: 25941768]
[121]
Borges, M.H.; Soares, A.M.; Rodrigues, V.M.; Oliveira, F.; Fransheschi, A.M.; Rucavado, A.; Giglio, J.R.; Homsi-Brandeburgo, M.I. Neutralization of proteases from Bothrops snake venoms by the aqueous extract from Casearia sylvestris (Flacourtiaceae). Toxicon, 2001, 39(12), 1863-1869.
[http://dx.doi.org/10.1016/S0041-0101(01)00169-6] [PMID: 11600149]
[122]
da Silva, J.O.; Fernandes, R.S.; Ticli, F.K.; Oliveira, C.Z.; Mazzi, M.V.; Franco, J.J.; Giuliatti, S.; Pereira, P.S.; Soares, A.M.; Sampaio, S.V. Triterpenoid saponins, new metalloprotease snake venom inhibitors isolated from Pentaclethra macroloba. Toxicon, 2007, 50(2), 283-291.
[http://dx.doi.org/10.1016/j.toxicon.2007.03.024] [PMID: 17517426]
[123]
Dharmappa, K.K.; Kumar, R.V.; Nataraju, A.; Mohamed, R.; Shivaprasad, H.V.; Vishwanath, B.S. Anti-inflammatory activity of oleanolic acid by inhibition of secretory phospholipase A2. Planta Med., 2009, 75(3), 211-215.
[http://dx.doi.org/10.1055/s-0028-1088374] [PMID: 19085684]
[124]
Horinouchi, C.D.; Mendes, D.A. Soley, Bda.S.; Pietrovski, E.F.; Facundo, V.A.; Santos, A.R.; Cabrini, D.A.; Otuki, M.F. Combretum leprosum Mart. (Combretaceae): potential as an antiproliferative and anti-inflammatory agent. J. Ethnopharmacol., 2013, 145(1), 311-319.
[http://dx.doi.org/10.1016/j.jep.2012.10.064] [PMID: 23159472]
[125]
Félix-Silva, J.; Gomes, J.A.; Xavier-Santos, J.B.; Passos, J.G.; Silva-Júnior, A.A.; Tambourgi, D.V.; Fernandes-Pedrosa, M.F. Inhibition of local effects induced by Bothrops erythromelas snake venom: Assessment of the effectiveness of Brazilian polyvalent bothropic antivenom and aqueous leaf extract of Jatropha gossypiifolia. Toxicon, 2017, 125, 74-83.
[http://dx.doi.org/10.1016/j.toxicon.2016.11.260] [PMID: 27890774]
[126]
Afzal, M.; Gupta, G.; Kazmi, I.; Rahman, M.; Afzal, O.; Alam, J.; Hakeem, K.R.; Pravez, M.; Gupta, R.; Anwar, F. Anti-inflammatory and analgesic potential of a novel steroidal derivative from Bryophyllum pinnatum. Fitoterapia, 2012, 83(5), 853-858.
[http://dx.doi.org/10.1016/j.fitote.2012.03.013] [PMID: 22465504]
[127]
Chibli, L.A.; Rodrigues, K.C.M.; Gasparetto, C.M.; Pinto, N.C.C.; Fabri, R.L.; Scio, E.; Alves, M.S.; Del-Vechio-Vieira, G.; Sousa, O.V. Anti-inflammatory effects of Bryophyllum pinnatum (Lam.) Oken ethanol extract in acute and chronic cutaneous inflammation. J. Ethnopharmacol., 2014, 154(2), 330-338.
[http://dx.doi.org/10.1016/j.jep.2014.03.035] [PMID: 24727190]
[128]
da Silva, A.J.; Coelho, A.L.; Simas, A.B.; Moraes, R.A.; Pinheiro, D.A.; Fernandes, F.F.; Arruda, E.Z.; Costa, P.R.; Melo, P.A. Synthesis and pharmacological evaluation of prenylated and benzylated pterocarpans against snake venom. Bioorg. Med. Chem. Lett., 2004, 14(2), 431-435.
[http://dx.doi.org/10.1016/j.bmcl.2003.10.044] [PMID: 14698175]
[129]
Da Silva, G.L.; Machado, M.I.L.; Matos, F.J.A.; Braz-Filho, R.A. New Isoflavone Isolated from Harpalyce brasiliana. J. Braz. Chem. Soc., 1999, 10, 438-442.
[http://dx.doi.org/10.1590/S0103-50531999000600003]
[130]
Melo, M.M.; Lucia, M.; Habermehl, G.G. Plants extracts for topic therapy of Bothrops alternatus envenomation. Rev. Bras. Farmacogn., 2007, 17(1), 29-34.
[http://dx.doi.org/10.1590/S0102-695X2007000100007]
[131]
Reyes-Chilpa, R.; Gómez-Garibay, F.; Quijano, L.; Magos-Guerrero, G.A.; Ríos, T. Preliminary results on the protective effect of (-)-edunol, a pterocarpan from Brongniartia podalyrioides (Leguminosae), against Bothrops atrox venom in mice. J. Ethnopharmacol., 1994, 42(3), 199-203.
[http://dx.doi.org/10.1016/0378-8741(94)90086-8] [PMID: 7934090]
[132]
Daros, Mdo. D.; Matos, F.J.; Parente, J.P. A new triterpenoid saponin, bredemeyeroside B. from the roots of Bredemeyera floribunda. Planta Med., 1996, 62(6), 523-527.
[http://dx.doi.org/10.1055/s-2006-957962] [PMID: 9000884]
[133]
Pereira, B.M.R.; Daros, M.R.; Parente, J.P. Bredemeyeroside D, a novel triterpenoid saponin from Bredemeyera floribunda: a potent snake venom antidote activity on mice. Phytother. Res., 1996, 10(8), 666-669.
[http://dx.doi.org/10.1002/(SICI)1099-1573(199612)10:8<666:AID-PTR937>3.0.CO;2-H]
[134]
Salazar, M.; Chérigo, L.; Acosta, H.; Otero, R.; Martínez-Luis, S. Evaluation of anti-Bothrops asper venom activity of ethanolic extract of Brownea rosademonte leaves. Acta Pharm., 2014, 64(4), 475-483.
[http://dx.doi.org/10.2478/acph-2014-0033] [PMID: 25531787]

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