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Isolation of basic myotoxins from Bothrops moojeni and Bothrops atrox snake venoms.

Three myotoxins, one from the venom of Bothrops atrox and two from the venom of B. moojeni, were isolated by ion-exchange chromatography on CM-Sephadex C-25. The three toxins are basic proteins with an estimated mol. wt of about 13,500, and similar amino acid compositions. When injected into the gastrocnemius muscle of mice, the three toxins induce drastic myonecrosis of rapid onset, as judged by histological observation and quantitation of plasma creatine kinase levels. B. atrox myotoxin also has phosphlipase A2 and anticoagulant activities, whereas B. moojeni myotoxins I and II lack these effects. The three toxins are antigenically similar to each other, and to previously isolated myotoxins I and II from the venom of B. asper, when tested by gel immunodiffusion against rabbit antiserum to B. asper myotoxin I. Two monoclonal antibodies against B. asper myotoxins were tested against the newly purified proteins. MAb-3 recognizes all of them, whereas MAb-4 recognizes only B. atrox myotoxin, by enzyme-immunoassay. B. atrox and B. moojeni myotoxins can be tentatively classified within a group of myotoxins having phospholipase A2 structure present in Bothrops venoms.

Amino Acids↗

Effect of a proteinase inhibitor from the plasma of Bothrops jararaca on coagulant and myotoxic activities of Bothrops venoms.

A proteinase inhibitor purified from the plasma of Bothrops jararaca was tested for the neutralization of total blood clotting activity, prothrombin activating factor and thrombin-like activity of B. jararaca venom and also myotoxic activity of B. jararacussu venom. This inhibitor was also tested for neutralization of the lethality induced by the venom of B. jararaca and B. jararacussu. The inhibitor markedly reduced the total blood clotting activity (95%) and the prothrombin activating factor (98%), and partially decreased the thrombin-like activity of B. jararaca venom. The proteinase inhibitor failed to neutralize the myotoxic activity of B. jararacussu. Lethality induced by the venom of B. jararaca in mice was inhibited by the proteinase inhibitor, whereas the protection on B. jararacussu venom was only partial. These results show that the proteinase inhibitor purified from the plasma of B. jararaca inhibits different proteinases but not myotoxins of Bothrops venoms, and consequently neutralizes the toxic effect due to these proteins.

Animals↗

Neutralizing capacity of commercial bothropic antivenom against Bothrops jararacussu venom and bothropstoxin-I.

Bothrops jararacussu venom and its major toxin, bothropstoxin-I (BthTX-I), possess myotoxic and neurotoxic activities. The ability of commercial equine antivenom to neutralize these activities was studied in mouse isolated phrenic nerve-diaphragm (PND) and extensor digitorum longus (EDL) preparations by indirect stimulation (0.1 HZ, 0.2 ms). The time required to produce 50% neuromuscular blockade in the PND and EDL preparations was, respectively, 70 +/- 11.5 min and 58 +/- 8 min for B. jararacussu venom (50 microg/mL), and 31 +/- 6 min and 30 +/- 3 min for BthTX-I (20 microg/mL). After a 120-min incubation, the creatine kinase (CK) concentrations in the EDL preparations were 3464 +/- 346 U/L and 3422 +/- 135 U/L following exposure to venom (50 microg/mL) and BthTX-I (20 microg/mL), respectively. Antivenom neutralized the neuromuscular blockade induced by the venom and toxin in PND preparations in a dose-dependent fashion, but only partially neutralized this effect in EDL. Antivenom also effectively prevented the venom- and toxin-induced release of CK from EDL. In contrast, histological analysis showed that the morphological damage caused by B. jararacussu venom and BthTX-I in the EDL was only partially prevented by the anti- venom. These results indicate that commercial equine antiserum fully protects against the neurotoxic action of B. jararacussu and BthTX-I in PND preparations, but only partially protects against the neurotoxic and myotoxic actions of the venom and its toxin in EDL preparations. Care must therefore be exercized in extrapolating results from different preparations even when similar pharmacological or physiological responses are involved.

Animals↗

Assessment of efficacy of bothropic antivenom therapy on microcirculatory effects induced by Bothrops jararaca snake venom.

Intravenous administration of antibothropic antivenom (BAv) neutralises the systemic effects, but does not efficiently reverse the local symptoms elicited by the Bothrops jararaca venom (BjV). The mechanisms involved in this poor protection have not been clarified. In this work, intravital microscopy studies were carried out to determine the efficacy of different schedules of BAv treatment on local effects evoked by topical application of BjV in the microcirculatory network of the internal spermatic fascia of Wistar rats. Results demonstrated that BAv administration 15 min before, simultaneously with, or 15 min after BjV application did not totally reverse the local symptoms, represented by disturbances of coagulation, development of haemorrhage lesions, vascular permeability increase and increment on leukocyte-endothelium interactions. This lack of effectiveness neither reflects an inadequate amount of specific antibodies in the antivenom against toxins responsible for local effects nor an insufficient dose of circulating BAv during the assays. Administration of fluorescein isothiocyanate (FITC) labelled-BAv showed the dynamics of distribution of the antivenom in the microcirculatory network. Images obtained from prior and simultaneously treated animals showed that the antivenom remains at luminal side of vessels before venom application, and the latency time to antivenom leakage is coincidental to that for local effects evoked by the venom. In addition, images from posterior treatment demonstrated that the intense alterations in the microcirculatory network impair antivenom distribution at the site of injection. Together, our data show that the lack of effectiveness of antivenom therapy is due to impaired and delayed venom and antivenom interaction at the site of injury.

Administration, Topical↗

Myotoxic phospholipases A(2) in bothrops snake venoms: effect of chemical modifications on the enzymatic and pharmacological properties of bothropstoxins from Bothrops jararacussu.

Venoms from eight Bothrops spp. were fractionated by ion-exchange chromatography on CM-Sepharose at pH 8.0 for the purification of myotoxins. Chromatographic profiles showed differences regarding myotoxic components among these venoms. B. alternatus, B. atrox and B. jararaca venoms did not show the major basic myotoxic fractions identified in the other venoms. Polyacrylamide gel electrophoresis for basic proteins also showed distinct patterns for these toxins. In vivo, all the isolated myotoxins induced release of creatine kinase due to necrosis of muscle fibers, accompanied by polymorphonuclear cell infiltration, and edema in the mouse paw. In addition, the toxins showed cytotoxic and liposome-disrupting activities in vitro. B. jararacussu bothropstoxins-I (BthTX-I) and II (BthTX-II) were submitted to chemical modifications of: His, by 4-bromophenacyl bromide (BPB) or photooxidation by Rose Bengal (RB); Tyr, by 2-nitrobenzenesulphonyl fluoride (NBSF); and Trp, by o-nitrophenylsulphenyl chloride (NPSC). The myotoxic and cytotoxic activities of BthTX-I, a Lys49 PLA(2) homologue, after modification by BPB, RB, NBSF and NPSC, were reduced to 50%, 20%, 75%, 65% and 13%, 0.5%, 76%, 58%, respectively. However, the edema-inducing and liposome-disrupting activities were not significantly reduced by the above modifications. BPB-treated BthTX-II, an Asp49 PLA(2) homologue, lost most of its catalytic, indirect hemolytic, anticoagulant, myotoxic and cytotoxic activities. The edema-inducing and liposome-disrupting activities were reduced to 50% and 80%, respectively. Lethality caused by BthTX-I and -II was strongly reduced after treatment with BPB or RB, but only partially with NBSF or NPSC. BthTX-I and -II, both native or modified, migrated similarly in a charge-shift electrophoresis. Antibodies raised against BthTX-I or -II, B. asper Basp-II and the C-terminal 115-129 peptide from Basp-II did not show significant differences in their cross-reactivity with the modified toxins, except with RB photooxidized toxins.

Animals↗

Preparación toxoide a partir de la fracción hemorrágica del veneno de Bothrops asper (serpiente de América Central y del Sur) (Toxoid preparation from hemorrhagic fraction of the venom from Bothrops asper (snake from Central and South America).

A technique is described for preparing a toxoid from the hemorrhagic fraction of the Bothrops asper venom. This method conserves a high degree of immunogenicity although it eliminates lethal effects. None of the animals vaccinated with the toxoid from this fraction had hemorrhagic lesions after they were injected the venom from the hemorrhagic fraction.

Animals↗

Crystallization and preliminary diffraction data of two myotoxins isolated from the venoms of Bothrops asper (Terciopelo) and Bothrops nummifer (jumping viper).

Two myotoxins isolated from B. asper (myotoxin II) and B. nummifer (myotoxin I) snake venoms have been crystallized and their diffraction properties are described. These myotoxins are phospholipase A2 variants which lack enzymatic activity; B. asper myotoxin II is a lysine-49 phospholipase. Crystals were obtained at room temperature by standard hanging-drop vapour diffusion methods. Crystals diffracted to a resolution of 2.8 and 2.3 A, respectively.

Animals↗

Inhibition of proteases, myotoxins and phospholipases A2 from Bothrops venoms by the heteromeric protein complex of Didelphis albiventris opossum serum.

The antibothropic complex (ABC) from opossum (species Didelphis albiventris) serum was purified by chromatography on DEAE-Sephacel. It showed an acidic character and two polypeptide chains of ca. 45 kDa and 48 kDa, respectively. Lyophilized opossum serum or the ABC (100 micrograms), as well as ethylenediamine tetraacetate (0.25 mumoles) were able to completely neutralise the hemorrhagic effect of 50 micrograms of the desiccated venoms of Bothrops moojeni, Bothrops pirajai and Bothrops jararacussu. The myotoxic (100 micrograms venom in mice) and edematogenic (90 micrograms venom in rats) activities of Bothrops moojeni and Bothrops jararacussu venoms, as well as of the major myonecrotic protein (myotoxin-I) isolated from Bothrops moojeni venom, were also totally inhibited by the ABC (200 micrograms and 270 micrograms, respectively). The lyophilized opossum serum (30 micrograms) and the ABC (30 micrograms) reduced to 50% the phospholipase A2 activity of Bothrops moojeni venom (10 micrograms). The clotting activity of Bothrops alternatus and Bothrops moojeni (20 micrograms) on bovine plasma was also significantly inhibited by the ABC (60 micrograms).

Animals↗

[Inefficacy of bothropic antivenin in the neutralization of the coagulation activity of Lachesis muta muta venom. Report of a case and experimental confirmation].

In the State of Amazonas and in areas nearby Manaus, the snakes responsible for the majority of accidents are Bothrops atrox and Lachesis muta muta, with a percentage of confirmed species of 76% and 17%, respectively. Frequently, in the absence of the laquetic and bothropic-laquetic antivenoms, the Instituto de Medicina Tropical de Manaus (IMTM) has been using bothropic antivenom in the treatment of laquetic accident. In this paper is related a case of accident caused by L. muta muta; the patient was treated with bothropic antivenom, and after received twenty ampoules of this antivenom, maintained blood incoagulability until the 13th day after the accident. Experiments to obtain the potency of the bothropic antivenom for the coagulant and hemorrhagic activities has been done, using Bothrops atrox venom as control. The results showed that the potency of the antivenom for the hemorrhagic activity was similar, and the potency for the coagulant activity for the L. m. muta venom was 9.2 times minor than that for B. atrox. The antibodies titles from three different lots of bothropic antivenom varied for the L. m. muta venom, and were constant for the B. atrox venom. Due to the inefficiency of the bothropic antivenom on the neutralization of the coagulant activity for the L. m. muta venom, the use of bothropic antivenom is not recommended in the treatment of Lachesis muta muta accidents.

Adult↗

Neutralization of proteases from Bothrops snake venoms by the aqueous extract from Casearia sylvestris (Flacourtiaceae).

Aqueous extract from Casearia sylvestris leaves, a typical plant from Brazilian open pastures, was able to neutralize the hemorrhagic activity caused by Bothrops asper, Bothrops jararacussu, Bothrops moojeni, Bothrops neuwiedi and Bothrops pirajai venoms. It also neutralized two hemorrhagic metalloproteinases from Bothrops asper venom. Proteolytic activity on casein induced by bothropic venoms and by isolated proteases, including Bn2 metalloproteinase from B. neuwiedi venom, was also inhibited by the C. sylvestris extract in different levels. The alpha-fibrinogen chain was partially protected against degradation caused by B. jararacussu venom, when this venom was incubated with C. sylvestris extract. We also observed that this extract partially increased the time of plasma coagulation caused by B. jararacussu, B. moojeni and B. neuwiedi venoms. C. sylvestris extract did not induce proteolysis in any substrate assayed.

Animals↗

[Toxicity and neutralization of venoms from Peruvian snakes of the genera Bothrops and Lachesis (Serpentes: Viperidae)].

The lethal potencies (Median Lethal Dose) of the venoms of Peruvian snakes (Bothrops atrox, Bothrops barnetti, Bothrops pictus and Lachesis muta muta) were determined in mice by using intravenous and intraperitoneal routes of injection. In addition, the neutralizing ability of three antivenoms (bothropic polyvalent, bothropic bivalent and lachetic) was studied by preincubation-type experiments. B. pictus venom had the highest lethality by the intraperitoneal route whereas B. atrox venom had the highest lethality when tested by the intravenous route. The three antivenoms were effective in neutralizing lethality of the homologous venoms. Bivalent antivenom was more effective than polyvalent antivenom in the neutralization of B. pictus venom. On the basis of these findings, the use of bivalent bothropic antivenom is recommended in the Pacific coastal regions of Perú, whereas polyvalent bothropic antivenom is recommended in the oriental jungle regions of the country.

Animals↗

Treatment of snake bites by Bothrops species and Lachesis muta in Ecuador: laboratory screening of candidate antivenoms.

Bothrops xanthogrammus/asper, B. atrox and Lachesis muta are probably responsible for most cases of severe envenoming in Ecuador. In recent years, the most widely used antivenom ('Myn' Ronti, imported from Mexico) has proved clinically ineffective. There is an urgent need to identify an effective alternative for clinical testing. Five antivenoms with activity against Bothrops venoms were compared using standard World Health Organization rodent and in vitro assays: (i) 'Myn', Ronti Mexico SA ('B. atrox', 'Crotalus terrificus'), (ii) Instituto Butantan (Bothrops polyvalent, Brazil), (iii) Instituto Nacional de Hygiene y Medicina Tropical (Bothrops polyvalent, Ecuador), (iv) Instituto Nacional de Salud (B. asper, C. durissus and Lachesis muta, Colombia), and (v) Laboratorios Probiol (Bothrops, Lachesis and Crotalus, Colombia). The venoms against which these antivenoms were tested were Ecuadorian B. atrox, B. asper and B. xanthogrammus. Brazilian antivenom proved to be the most effective, followed by the Ecudorian and Colombian antivenoms. Mexican antivenom was completely ineffective in neutralizing the lethal effects of Ecuadorian Bothrops venoms. Monospecific Brazilian L. muta antivenom (Instituto Butantan) proved effective against Ecuadorian L. muta venom, but the Colombian polyspecific antivenoms did not. Clinical trials of Brazilian and Ecuadorian antivenoms are planned in the Amazon region of Ecuador in the near future.

Animals↗

Comparison of the neurotoxic and myotoxic effects of Brazilian Bothrops venoms and their neutralization by commercial antivenom.

The venoms of some Bothrops species produce neuromuscular blockade in avian and mammalian nerve-muscle preparations in vitro. In this study, we compared the neuromuscular activities (myotoxicity and neurotoxicity) of venoms from several Brazilian species of Bothrops (B. jararaca, B. jararacussu, B. moojeni, B. erythromelas and B. neuwiedi) in chick isolated biventer cervicis muscle preparations and examined their neutralization by commercial antivenom. All of the venoms (50-200 microg/ml, n = 3 - 7 each) induced long-lasting, concentration-dependent muscle contracture and twitch-tension blockade, and also inhibited the muscle responses to acetylcholine and KCl. Preincubation of the venoms (200 microg/ml) with bothropic antivenom (0.2 ml) for 30 min at 37 degrees C prevented the twitch-tension blockade to different extents, with the protection varying from 0.5% (B. neuwiedi) to 88% (B. moojeni). Complete protection against the neuromuscular action of B. neuwiedi venom was observed only with a mixture of bothropic and crotalic antivenoms. The venoms caused either high (B. jararacussu, B. neuwiedi and B. moojeni) or low (B. jararaca and B. erythromelas) creatine kinase release. Morphologically, myonecrosis was greatest with B. jararacussu venom (98-100% of fibers damaged) and least with B. jararaca venom (74% damage). The extent of neutralization by bothropic antivenom was B. jararaca (93%)>B. erythromelas (65.8%)>B. moojeni (30.7%)>B. neuwiedi (20%)>B. jararacussu (no neutralization). Despite this variation in neutralization, enzyme-linked immunosorbent assays indicated similar immunoreactivities for the venoms, although immunoblots revealed quantitative variations in the bands detected. These results show that Bothrops venoms produce varying degrees of neuromuscular blockade in chick nerve-muscle preparations. The variable protection by antivenom against neuromuscular activity indicates that the components responsible for the neuromuscular action may differ among the venoms.

Acetylcholine↗

Pharmacological characterization and neutralization of the venoms used in the production of Bothropic antivenom in Brazil.

Some pharmacological effects of the venoms of five different Brazilian Bothrops species and a pool of these venoms (AgB) were quantified. The ability of polyspecific Bothropic antivenom produced at Fundação Ezequiel Dias (FUNED, Brazil) to neutralize the principal toxic and enzymatic activities was studied using in vivo and in vitro assays. The lethality, hemorrhagic, necrotizing, proteolytic, phospholipase, coagulant and fibrinolytic activities were measured for each of these venoms. Comparison of protein electrophoretic patterns showed significant differences such as the presence of common and also unique components. Furthermore, experimental studies revealed differences in their biological properties among individual samples. It was found that the Bothrops antivenom was highly effective in the neutralization of the toxic activities of all venoms tested. In addition, indirect ELISA was used to compare the antigenic cross-reactivity for each of the five Bothrops venoms as well as the venoms of B. atrox, B. leucurus and B. erythromelas which were not included in the antigenic pool (AgB). Therefore, the characterization of several toxic activities of snake venoms is necessary, if toxicity is to be properly evaluated. Results indicate that the Brazilian antivenom prepared at FUNED against Bothrops snakes is effective in neutralizing the main toxic effects of Bothrops venoms.

Animals↗

Purification, sequencing and structural analysis of two acidic phospholipases A2 from the venom of Bothrops insularis (jararaca ilhoa).

Bothrops snake venoms contain a variety of phospholipases (PLA(2)), some of which are myotoxic. In this work, we used reverse-phase HPLC and mass spectrometry to purify and sequence two PLA(2) from the venom of Bothrops insularis. The two enzymes, designated here as BinTX-I and BinTx-II, were acidic (pI 5.05 and 4.49) Asp49 PLA(2), with molecular masses of 13,975 and 13,788, respectively. The amino acid sequence and molecular mass of BinTX-I were identical to those of a PLA(2) previously isolated from this venom (PA2_BOTIN, SwissProt accession number ) while those of BinTX-II indicated that this was a new enzyme. Multiple sequence alignments with other Bothrops PLA(2) showed that the amino acids His48, Asp49, Tyr52 and Asp99, which are important for enzymatic activity, were fully conserved, as were the 14 cysteine residues involved in disulfide bond formation, in addition to various other residues. A phylogenetic analysis showed that BinTX-I and BinTX-II grouped with other acidic Asp49 PLA(2) from Bothrops venoms, and computer modeling indicated that these enzymes had the characteristic structure of bothropic PLA(2) that consisted of three alpha-helices, a beta-wing, a short helix and a calcium-binding loop. BinTX-I (30 microg/paw) produced mouse hind paw edema that was maximal after 1h compared to after 3h with venom (10 and 100 microg/paw); in both cases, the edema decreased after 6h. BinTX-1 and venom (40 microg/ml each) produced time-dependent neuromuscular blockade in chick biventer cervicis preparations that reached 40% and 95%, respectively, after 120 min. BinTX-I also produced muscle fiber damage and an elevation in CK, as also seen with venom. These results indicate that BinTX-I contributes to the neuromuscular activity and tissue damage caused by B. insularis venom in vitro and in vivo.

Amino Acid Sequence↗