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1.
Rev. Soc. Bras. Med. Trop ; 52: e20180526, 2019. tab, graf
Article in English | LILACS | ID: biblio-1020439

ABSTRACT

Abstract INTRODUCTION: Crotalus envenomations cause serious complications and can be fatal without appropriate treatment. Venom isoforms present and inter/intraspecific variations in the venom composition can result in different symptoms presented by bites by snakes from the same species but from different geographical regions. We comparatively evaluated the local and systemic effects caused by Crotalus durissus terrificus (Cdt), C.d. collilineatus (Cdcolli), and C.d. cascavella (Cdcasc) envenomation. METHODS: Venom chromatography was performed. Proteolytic, phospholipase, and LAAO activities were analyzed. Edema, myotoxicity, hepatotoxicity, nephrotoxicity, and coagulation alterations were evaluated. RESULTS: The venom SDS-PAGE analyses found the presence of convulxin, gyroxin, crotoxin, and crotamine in Cdt and Cdcolli venoms. Crotamine was not present in the Cdcasc venom. Cdt, Cdcollli, and Cdcasc venoms had no proteolytic activity. Only Cdcasc and Cdt venoms had phospholipase activity. LAAO activity was observed in Cdcolli and Cdcasc venoms. Cdcolli and Cdcasc venoms caused 36.7% and 13.3% edema increases, respectively. Cdt venom caused a 10% edema induction compared to those by other venoms. All venoms increased TOTAL-CK, MB-CK, and LDH levels (indicating muscle injury) and ALT, AST, GGT, and ALP levels (markers of liver damage) and were able to induce a neuromuscular blockade. Urea and creatinine levels were also altered in both plasma and urine, indicating kidney damage. Only Cdcolli and Cdcasc venoms increased TAPP and TAP. CONCLUSIONS: Together, these results allow us to draw a distinction between local and systemic effects caused by Crotalus subspecies, highlighting the clinical and biochemical effects produced by their respective venoms.


Subject(s)
Animals , Crotalus/classification , Crotalid Venoms/toxicity , Edema/chemically induced , Kidney/drug effects , Liver/drug effects , Urea/blood , Creatine Kinase/drug effects , Creatine Kinase/blood , Creatinine/blood , Models, Animal , Edema/pathology , Electrophoresis, Polyacrylamide Gel , Alkaline Phosphatase/drug effects , Alkaline Phosphatase/blood , Transaminases/drug effects , Transaminases/blood , Kidney/pathology , L-Lactate Dehydrogenase/drug effects , L-Lactate Dehydrogenase/blood , Liver/pathology , Mice
2.
J. venom. anim. toxins incl. trop. dis ; 24: 22, 2018. ilus, graf
Article in English | LILACS | ID: biblio-954854

ABSTRACT

Cnidarians produce toxins, which are composed of different polypeptides that induce pharmacological effects of biotechnological interest, such as antitumor, antiophidic and anti-clotting activities. This study aimed to evaluate toxicological activities and potential as antitumor and antiophidic agents contained in total extracts from five cnidarians: Millepora alcicornis, Stichodactyla helianthus, Plexaura homomalla, Bartholomea annulata and Condylactis gigantea (total and body wall). Methods: The cnidarian extracts were evaluated by electrophoresis and for their phospholipase, proteolytic, hemorrhagic, coagulant, fibrinogenolytic, neuromuscular blocking, muscle-damaging, edema-inducing and cytotoxic activities. Results: All cnidarian extracts showed indirect hemolytic activity, but only S. helianthus induced direct hemolysis and neurotoxic effect. However, the hydrolysis of NBD-PC, a PLA2 substrate, was presented only by the C gigantea (body wall) and S. helianthus. The extracts from P. homomalla and S. helianthus induced edema, while only C gigantea and S. helianthus showed intensified myotoxic activity. The proteolytic activity upon casein and fibrinogen was presented mainly by B. annulata extract and all were unable to induce hemorrhage or fibrinogen coagulation. Cnidarian extracts were able to neutralize clotting induced by Bothrops jararacussu snake venom, except M. alcicornis. All cnidarian extracts were able to inhibit hemorrhagic activity induced by Bothrops moojeni venom. Only the C. gigantea (body wall) inhibited thrombin-induced coagulation. All cnidarian extracts showed antitumor effect against Jurkat cells, of which C. gigantea (body wall) and S. helianthus were the most active; however, only C. gigantea (body wall) and M. alcicornis were active against B16F10 cells. Conclusion: The cnidarian extracts analyzed showed relevant in vitro inhibitory potential over the activities induced by Bothrops venoms; these results may contribute to elucidate the possible mechanisms of interaction between cnidarian extracts and snake venoms.(AU)


Subject(s)
Animals , Male , Rats , Antivenins/toxicity , Cnidarian Venoms/pharmacology , Crotalid Venoms/immunology , Bothrops , Neoplasms/immunology
3.
J. venom. anim. toxins incl. trop. dis ; 24: 1-11, 2018. ilus, tab, graf
Article in English | LILACS, VETINDEX | ID: biblio-1484757

ABSTRACT

Background: Cnidarians produce toxins, which are composed of different polypeptides that induce pharmacological effects of biotechnological interest, such as antitumor, antiophidic and anti-clotting activities. This study aimed to evaluate toxicological activities and potential as antitumor and antiophidic agents contained in total extracts from five cnidarians: Millepora alcicornis, Stichodactyla helianthus, Plexaura homomalla, Bartholomea annulata and Condylactis gigantea (total and body wall). Methods: The cnidarian extracts were evaluated by electrophoresis and for their phospholipase, proteolytic, hemorrhagic, coagulant, fibrinogenolytic, neuromuscular blocking, muscle-damaging, edema-inducing and cytotoxic activities. Results: All cnidarian extracts showed indirect hemolytic activity, but only S. helianthus induced direct hemolysis and neurotoxic effect. However, the hydrolysis of NBD-PC, a PLA2 substrate, was presented only by the C gigantea (body wall) and S. helianthus. The extracts from P. homomalla and S. helianthus induced edema, while only C gigantea and S. helianthus showed intensified myotoxic activity. The proteolytic activity upon casein and fibrinogen was presented mainly by B. annulata extract and all were unable to induce hemorrhage or fibrinogen coagulation. Cnidarian extracts were able to neutralize clotting induced by Bothrops jararacussu snake venom, except M. alcicornis. All cnidarian extracts were able to inhibit hemorrhagic activity induced by Bothrops moojeni venom. Only the C. gigantea (body wall) inhibited thrombin-induced coagulation. All cnidarian extracts showed antitumor effect against Jurkat cells, of which C. gigantea (body wall) and S. helianthus were the most active; however, only C. gigantea (body wall) and M. alcicornis were active against B16F10 cells...


Subject(s)
Animals , Bioprospecting , Drug Screening Assays, Antitumor , Cnidarian Venoms/pharmacology , Cnidaria , Caribbean Region
4.
HU rev ; 34(1): 53-56, jan.-mar. 2008. ilus, graf
Article in Portuguese | LILACS | ID: lil-530677

ABSTRACT

As moléculas de adesão celular vem sendo utilizadas na coaptação de nervos lesados como alternativa a consagrada neurorrafia, entretanto, faltam estudos experimentais definitivos em relação às duas técnicas. O objetivo deste estudo foi avaliar a recuperação funcional do nervo ciático reparado pela cola de fibrina, por meio de contrações indiretas isoladas aplicadas ao complexo mioneural, nervo ciático - músculo extensor longo dos dedos (EDL). Foram utilizados 16 ratos Wistar divididos em dois grupos: grupo controle (GC), que não sofreu nenhuma lesão e grupo cola (GCL) que teve o nervo ciático lesado e reparado pela cola. Após 10 semanas o complexo mioneural foi coletado para estímulo. O músculo EDL nos animais do GCL respondeu com contrações frente ao estímulo de seu nervo motor. Mesmo com amplitude maior do que o GC, não houve diferença estatisticamente significante. Nervos reparados pela cola são capazes de conduzir impulsos nervosos até o músculo esquelético.


The molecules of cellular adhesion are been used for the coaptation of injured nerves as an alternative of the well know neurorrhaphy, however, there are still missing experimental studies of these two techniques. The aim of this study was to evaluate the functional recovery of the sciatic nerve repaired by the fibrin glue, by the means of isolated indirect contractions applied to the myoneural complex, sciatic nerve - extensor muscle of the long fingers (EMLF). Sixteen Wistar rats were divided into two groups: control group (CG), that didn't have any lesion and the glue group (GG) that had their sciatic nerve injured and repaired with the glue. After 10 weeks, the myoneural complex was collected for the stimulus. The EMLF of the animals of the GG responded with contractions after the stimulus of the motor nerve. Even with greater amplitude than the CG, there wasn't any significant statistical result. Nerves repaired with glue are capable to conduct nerve impulses to the skeletal muscle.


Subject(s)
Humans , Sciatic Nerve , Fibrin Tissue Adhesive/therapeutic use , Recovery of Function/physiology , Nerve Regeneration/physiology
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