83 resultados para JARARACA
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The venom of Bothrops insidaris snake, known in Brazil as jararaca ilhoa, contains a variety of proteolytic enzymes such as a thrombin-like substance that is responsible for various pharmacological effects. B. insularis venom chromatography profile showed an elution of seven main fractions. The thrombin-like activity was detected in fractions I and 111, the latter being subjected to two other chromatographic procedures, so to say DEAE and Hi Trap Benzamidine. The purity degree of this fraction was confirmed by analytical reverse phase HPLC, which displayed only one main fraction confirmed by SDS-PAGE constituting fraction III. About 5 mu g of fraction III protein potentiated the secretion of insulin induced by 2.8mM of glucose in rats isolated pancreatic beta-cells treated; the increase being around 3-fold higher than its respective control. B. insidaris lectin (BiLec; 10 mu g/mL) was also studied as to its effect on the renal function of isolated perfused rat kidneys with the use of six Wistar rats. BiLec increased perfusion pressure (PP), renal vascular resistence (RVR), urinary flow (UF) and glomerular filtration rate (GFR). Sodium (%TNa+) and chloride tubular reabsorption (%TCl-) decreased at 120 min, without alteration in potassium transport. In conclusion, the thrombin-like substance isolated from B. insularis venom induced an increase in insulin secretion, in vitro, and transiently altered vascular, glomerular and tubular parameters in the isolated rat kidney. (c) 2006 Elsevier Ltd. All rights reserved.
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The search for biological antitumor agents has been pursued for over half a century. Snake venom has been shown to possess a wide spectrum of biological activities. The objectives of the present review are to evaluate the existing controversies on this subject published in a number of papers and to propose probable explanations for the phenomena observed. We reported our results obtained in a study, in which we evaluated the action of the venoms of Crotalus durissus terrificus and Bothrops jararaca on Ehrlich ascites tumor cells. We noticed an important antitumor effect, mainly with Bothrops jararaca venom, as well as an increase in the functional activity of macrophages. We also observed an increase in the number of mononuclear and polymorphonuclear cells with Bothrops jararaca venom. Considering these findings, we postulate that both Borhrops jararaca and Crotalus durissus terrificus venoms can act directly on tumor cells. In addition, we propose an indirect mechanism, based on the stimulation of the inflammatory response, to inhibit tumor growth and to promote its rejection.
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We studied ontogenetic changes in venom toxicity of the pitvipers Bothrops jararaca and B. alternatus in order to evaluate the relationship between venom action and diet. Toxicity tests (LD50) were performed for the venoms of adult and juvenile snakes on mice and bullfrog froglets, which represented endothermic and ectothermic prey respectively. The venom of juveniles of B. jararaca, but not of B. alternatus, had a higher toxicity on anurans than that of adults. This finding is consistent with the feeding habits of these two species, because juveniles of B. jararaca feed mainly on small anurans and lizards, shifting to endothermic prey at maturity, whereas B. alternatus preys mainly on endotherms throughout its life. Venom toxicity in endotherms was higher for adults of B. jararaca compared to juveniles, a feature not observed for B. alternatus. It is proposed that prey death/immobilization is the main function of the venom of juvenile snakes. As the snake grows, the digestive role of venom may become increasingly important, because adults prey upon large and bulky prey. The importance of adult venoms in prey digestion is reflected in their higher proteolytic activity.
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Venoms from snakes of the Bothrops genus are proteolytic, coagulant, hemorrhagic and nephrotoxic, causing edema, necrosis, hemorrhage and intense pain at the bite site, besides systemic alterations. Many adjuvants have been added to the venom used in the sensitization of antiserum-producer animals to increase antigenic induction and reduce the envenomation pathological effects. Gamma radiation from 60Co has been used as an attenuating agent of the venoms toxic properties. The main objective was to study, comparatively, clinical and laboratory aspects of goats inoculated with bothropic (Bothrops jararaca) venom, natural and irradiated from a 60Co source. Twelve goats were divided into two groups of six animals: GINV, inoculated with 0.5mg/kg of natural venom; and GIIV, inoculated with 0.5mg/kg of irradiated venom. Blood samples were collected immediately before and one, two, seven, and thirty days after venom injection. Local lesions were daily evaluated. The following exams were carried out: blood tests; biochemical tests of urea, creatinine, creatine kinase (CK), aspartate amino-transferase (AST) and alanine amino-transferase (ALT); clotting time; platelets count; and total serum immunoglobulin measurement. In the conditions of the present experiment, irradiated venom was less aggressive and more immunogenic than natural venom.
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Snake venom metalloproteinases (SVMPs) participate in a number of important biological, physiological and pathophysiological processes and are primarily responsible for the local tissue damage characteristic of viperid snake envenomations. The use of medicinal plant extracts as antidotes against animal venoms is an old practice, especially against snake envenomations. Such plants are sources of many pharmacologically active compounds and have been shown to antagonize the effects of some venoms and toxins. The present study explores the activity of triacontyl p-coumarate (PCT), an active compound isolated from root bark of Bombacopsis glabra vegetal extract (Bg), against harmful effects of Bothropoides pauloensis snake venom and isolated toxins (SVMPs or phospholipase A2). Before inhibition assays, Bg or PCT was incubated with venom or toxins at ratios of 1:1 and 1:5 (w/w; venom or isolated toxins/PCT) for 30 min at 37 °C. Treatment conditions were also assayed to simulate snakebite with PCT inoculated at either the same venom or toxin site. PCT neutralized fibrinogenolytic activity and plasmatic fibrinogen depletion induced by B. pauloensis venom or isolated toxin. PCT also efficiently inhibited the hemorrhagic (3MDH-minimum hemorrhagic dose injected i.d into mice) and myotoxic activities induced by Jararhagin, a metalloproteinase from B. jararaca at 1:5 ratio (toxin: inhibitor, w/w) when it was previously incubated with PCT and injected into mice or when PCT was administered after toxin injection. Docking simulations using data on a metalloproteinase (Neuwiedase) structure suggest that the binding between the protein and the inhibitor occurs mainly in the active site region causing blockade of the enzymatic reaction by displacement of catalytic water. Steric hindrance may also play a role in the mechanism since the PCT hydrophobic tail was found to interact with the loop associated with substrate anchorage. Thus, PCT may provide a alternative to complement ophidian envenomation treatments. © 2012 Elsevier Ltd. All rights reserved.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Estudou-se as alterações clínico-patológicas e laboratoriais em equinos, inoculados experimentalmente com a peçonha de Bothropoides jararaca, Bothrops jararacussu, Bothrops moojeni e Bothropoides neuwiedi, com a finalidade de fornecer subsídios para o diagnóstico do envenenamento pela picada dessas. Os venenos liofilizados foram diluídos em 1ml de solução fisiológica e administrados a seis equinos, por via subcutânea, nas doses de 0,5 e 1mg/kg (B. jararaca), 0,8 e 1,6mg/kg (B. jararacussu), 0,205mg/kg (B. moojeni) e 1mg/kg (B. neuwiedi). Todos os equinos, menos os que receberam o veneno de B. jararacussu, morreram. Os sinais clínicos iniciaram-se entre 8min e 2h10min após a inoculação. O período de evolução variou, nos quatro casos de êxito letal, de 24h41min a 70h41min, e nos dois equinos que se recuperaram foi de 16 dias. O quadro clínico, independente do tipo de veneno e das doses, caracterizou-se por aumento de volume no local da inoculação, arrastar da pinça do membro inoculado no solo, inquietação, apatia, diminuição da resposta aos estímulos externos, mucosas pálidas e hemorragias. Os exames laboratoriais revelaram anemia normocítica normocrômica com progressiva diminuição no número de hemácias, da hemoglobina e do hematócrito, e leucocitose por neutrofilia. Houve aumento de alamina aminotransferase, creatinaquinase, dehidrogenase láctica, ureia e glicose, bem como aumento do tempo de ativação da protrombina e do tempo de tromboplastina parcial ativada. Os achados de necropsia foram extensas hemorragias no tecido subcutâneo, com presença de sangue não coagulado e em boa parte associadas a edema (edema hemorrágico), que se estendia desde o local da inoculação até as regiões cervical, torácica, escapular e membro. Na periferia das áreas hemorrágicas havia predominantemente edema gelatinoso. Havia ainda presença de grande quantidade de líquido sanguinolento nas cavidades torácica, pericárdica e abdominal. Não foram encontradas alterações histológicas significativas.
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Estudou-se as alterações clínico-patológicas e laboratoriais em equinos, inoculados experimentalmente com a peçonha de Bothropoides jararaca, Bothrops jararacussu, Bothrops moojeni e Bothropoides neuwiedi, com a finalidade de fornecer subsídios para o diagnóstico do envenenamento pela picada dessas. Os venenos liofilizados foram diluídos em 1ml de solução fisiológica e administrados a seis equinos, por via subcutânea, nas doses de 0,5 e 1mg/kg (B. jararaca), 0,8 e 1,6mg/kg (B. jararacussu), 0,205mg/kg (B. moojeni) e 1mg/kg (B. neuwiedi). Todos os equinos, menos os que receberam o veneno de B. jararacussu, morreram Os sinais clínicos iniciaram-se entre 8min e 2h10min após a inoculação. O período de evolução variou, nos quatro casos de êxito letal, de 24h41min a 70h41min, e nos dois equinos que se recuperaram foi de 16 dias. O quadro clínico, independente do tipo de veneno e das doses, caracterizou-se por aumento de volume no local da inoculação, arrastar da pinça do membro inoculado no solo, inquietação, apatia, diminuição da resposta aos estímulos externos, mucosas pálidas e hemorragias. Os exames laboratoriais revelaram anemia normocítica normocrômica com progressiva diminuição no número de hemácias, da hemoglobina e do hematócrito, e leucocitose por neutrofilia. Houve aumento de alamina aminotransferase, creatinaquinase, dehidrogenase láctica, ureia e glicose, bem como aumento do tempo de ativação da protrombina e do tempo de tromboplastina parcial ativada. Os achados de necropsia foram extensas hemorragias no tecido subcutâneo, com presença de sangue não coagulado e em boa parte associadas a edema (edema hemorrágico), que se estendia desde o local da inoculação até as regiões cervical, torácica, escapular e membro. Na periferia das áreas hemorrágicas havia predominantemente edema gelatinoso. Havia ainda presença de grande quantidade de líquido sanguinolento nas cavidades torácica, pericárdica e abdominal. Não foram encontradas alterações histológicas significativas.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Throughout the analysis of the collections JJ, CEVAP, IBSP, ZUEC and UEL, a study on the ophiofauna of Botucatu was made. We present a preliminary list of the species of snakes here found, with small comments on their natural history. The number of specimens studied was 943. We registered, for Botucatu, 51 species of snakes, distributed in 31 genera and 6 families. The families here found were Anomalepididae (1 spp.), Boidae (1 spp.), Colubridae (7 spp.), Dipsadidae (32 spp.), Elapidae (3 spp.) and Viperidae (7 spp.). The analysis of the relative abundance shows that Dipsadidae was the most abundant family, with n=425 (44,83%), followed by Viperidae, with n=388 (40,93%), Boidae, n=62 (6,54%), Colubridae, n=57 (6,01%), Elapidae, n=15 (1,6%) and, at last, Anomalepididae, with n=1 (0,1%). The five more representative species were Crotalus durissus (n=135, 14,31%), Oxyrhopus guibei (n=123, 12,8%) Bothropoides jararaca (N=121, 12,6%), Bothropoides neuwiedi (N=95, 9,88%) and Sibynomorphus mikani (N=65, 6,76%). A higher number of individuals collected was registered for the months of january to april that, together, sum up to almost 50% of the total. The months of june to september registered a lower number of individuals. The spacial distribution analysis shows that a higher number of snakes was found on the country areas of Botucatu (n=270, 41,54%), specially on pastures. Due to the lack of studies of Botucatu’s ophiofauna, this list is probably underestimated. It is mandatory that future studies approaching this group and its ecological components on this region are made, using appropriate sampling methodologies, in order to form an accurate list of the species of snakes of Botucatu