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Keywords = Lachesis

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11 pages, 4941 KiB  
Article
Consistent Killers: Conservation of Thrombin-Like Action on Fibrinogen by Bushmaster (Lachesis Species) Venoms Underpins Broad Antivenom Cross-Reactivities
by Lee Jones and Bryan G. Fry
Toxins 2025, 17(5), 224; https://doi.org/10.3390/toxins17050224 - 2 May 2025
Viewed by 1997
Abstract
Snakebite represents a significant public health challenge in Central and South America, with Lachesis (Bushmaster) species posing unique clinical challenges due to their severe envenomation effects arising from a combination of potent venom and copious venom yields. Using in vitro coagulation assays, we [...] Read more.
Snakebite represents a significant public health challenge in Central and South America, with Lachesis (Bushmaster) species posing unique clinical challenges due to their severe envenomation effects arising from a combination of potent venom and copious venom yields. Using in vitro coagulation assays, we analyzed the coagulotoxic venom effects from four distinct localities: L. muta from Surinam and French Guiana and L. stenophrys from Costa Rica and Panama. This study examined the venom’s impact on human plasma and fibrinogen and evaluated the efficacy of two regionally available antivenoms (PoliVal-ICP and Antivipmyn-Tri) in neutralizing the pathophysiological effects. Our results demonstrated a remarkable consistency in the pseudo-procoagulant venom activity (also known as: thrombin-like) across different species and localities. Antivenom efficacy testing revealed that both the PoliVal-ICP and Antivipmyn-Tri antivenoms effectively neutralized the venom effects across localities for both species, with the ICP antivenom showing the highest neutralization capacity. These toxicology findings highlight the biochemical conservation of venom composition across Lachesis species which underpins effective cross-neutralization in antivenom treatment. Full article
(This article belongs to the Section Animal Venoms)
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14 pages, 6441 KiB  
Article
Cardiotoxic Effects of Lachesis acrochorda Snake Venom in Anesthetized Wistar Rats
by Karen Leonor Ángel-Camilo, Mary Luz Bueno-Ospina, Ivonne Carolina Bolaños Burgos, Santiago Ayerbe-González, José Beltrán-Vidal, Ana Acosta, Jaime Álvarez-Soler and Jimmy Alexander Guerrero-Vargas
Toxins 2024, 16(9), 377; https://doi.org/10.3390/toxins16090377 - 28 Aug 2024
Cited by 1 | Viewed by 1883
Abstract
Ophidism is a public health problem in tropical countries, occurring predominantly in rural areas. In Colombia, among the species responsible for snakebite envenomation, inflicting high mortality, is the Chocoan bushmaster, Lachesis acrochorda, better known locally by the names “verrugosa (warty)” and [...] Read more.
Ophidism is a public health problem in tropical countries, occurring predominantly in rural areas. In Colombia, among the species responsible for snakebite envenomation, inflicting high mortality, is the Chocoan bushmaster, Lachesis acrochorda, better known locally by the names “verrugosa (warty)” and “pudridora (rot-causing)”. In this research, the cardiotoxic effect of the venom of L. acrochorda in male Wistar rats weighing 230 ± 20 g was evaluated. A statistical design of randomized blocks was implemented with three treated groups, injected with lyophilized venom (doses of 3.22 μg/g, 6.43 μg/g, 12.86 μg/g), and a control group injected with 0.9% saline solution. Electrocardiographic (ECG) recordings were taken from the anesthetized animals, revealing an increase in the amplitude of the P and T waves and an increase in the duration of the QT intervals in the electrocardiographic recordings. These increases were not observed in the control biomodels. In the analysis of the CK and CK-MB enzyme levels, increases were also observed in the levels of cardiac isoenzymes in the injected animals, but none in the control animals. The histopathological analyses carried out reveal that the injected animals showed effects such as interfibrillar and perivascular edema, cellular shortening of the cardiomyocytes, foci with tissue destructuring, and necrosis with contraction bands. In conclusion, the venom of the Lachesis acrochorda snake increases the P and T waves and the QT interval and increases the CK and CK-MB enzymes in the blood. Additionally, it causes interfibrillar and perivascular edema in the cardiac tissue, cardiocytolysis, and contraction bands. Full article
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11 pages, 4542 KiB  
Case Report
Severe Bushmaster Snakebite Envenoming: Case Report and Overview
by Allan Quadros Garcês-Filho, Humberto H. M. Santos, Thays K. P. P. Aguiar, Dafnin L. S. Ramos, Luis E. B. Galan, Domingos S. M. Dantas, Felipe A. Cerni, Roberto C. Carbonell and Manuela B. Pucca
Reports 2024, 7(3), 68; https://doi.org/10.3390/reports7030068 - 7 Aug 2024
Cited by 1 | Viewed by 3540
Abstract
Unlike the well-documented bothropic and crotalid snakebites in Brazil, lachetic envenomings (i.e., triggered by the bushmaster snake) are rare and present significant diagnostic challenges. This case describes a severe envenoming induced by a Lachesis muta snake in a 26-year-old Brazilian man who was [...] Read more.
Unlike the well-documented bothropic and crotalid snakebites in Brazil, lachetic envenomings (i.e., triggered by the bushmaster snake) are rare and present significant diagnostic challenges. This case describes a severe envenoming induced by a Lachesis muta snake in a 26-year-old Brazilian man who was bitten near a forest in November 2022. Characteristic symptoms such as sweating and bradycardia pointed towards lachetic envenoming, but initial misdiagnosis as a bothropic bite resulted in a delay in appropriate antivenom therapy. Despite later receiving the correct treatment, the severity of the envenoming necessitated the amputation of a finger and triggered a severe infection. This report highlights the challenges of diagnosing and treating Lachesis spp. bites due to their rarity. Moreover, an overview of lachetic-induced signs and symptoms was explored. This study emphasizes that further reports are warranted to improve understanding of Lachesis muta envenoming and to optimize treatment strategies. Full article
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7 pages, 566 KiB  
Brief Report
Comparison of Hi-C-Based Scaffolding Tools on Plant Genomes
by Yuze Hou, Li Wang and Weihua Pan
Genes 2023, 14(12), 2147; https://doi.org/10.3390/genes14122147 - 27 Nov 2023
Cited by 2 | Viewed by 2129
Abstract
De novo genome assembly holds paramount significance in the field of genomics. Scaffolding, as a pivotal component within the genome assembly process, is instrumental in determining the orientation and arrangement of contigs, ultimately facilitating the generation of a chromosome-level assembly. Scaffolding is contingent [...] Read more.
De novo genome assembly holds paramount significance in the field of genomics. Scaffolding, as a pivotal component within the genome assembly process, is instrumental in determining the orientation and arrangement of contigs, ultimately facilitating the generation of a chromosome-level assembly. Scaffolding is contingent on supplementary linkage information, including paired-end reads, bionano, physical mapping, genetic mapping, and Hi-C (an abbreviation for High-throughput Chromosome Conformation Capture). In recent years, Hi-C has emerged as the predominant source of linkage information in scaffolding, attributed to its capacity to offer long-range signals, leading to the development of numerous Hi-C-based scaffolding tools. However, to the best of our knowledge, there has been a paucity of comprehensive studies assessing and comparing the efficacy of these tools. In order to address this gap, we meticulously selected six tools, namely LACHESIS, pin_hic, YaHS, SALSA2, 3d-DNA, and ALLHiC, and conducted a comparative analysis of their performance across haploid, diploid, and polyploid genomes. This endeavor has yielded valuable insights in advancing the field of genome scaffolding research. Full article
(This article belongs to the Section Plant Genetics and Genomics)
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7 pages, 529 KiB  
Communication
Preliminary Insights of Brazilian Snake Venom Metalloproteomics
by Bruna Cavecci-Mendonça, Karen Monique Luciano, Tauane Vaccas, Laudicéia Alves de Oliveira, Eloisa Fornaro Clemente, Bruno Cesar Rossini, José Cavalcante Souza Vieira, Luciana Curtolo de Barros, Ilka Biondi, Pedro de Magalhães Padilha and Lucilene Delazari dos Santos
Toxins 2023, 15(11), 648; https://doi.org/10.3390/toxins15110648 - 10 Nov 2023
Cited by 9 | Viewed by 2105
Abstract
Snakebite envenoming is one of the most significantly neglected tropical diseases in the world. The lack of diagnosis/prognosis methods for snakebite is one of our motivations to develop innovative technological solutions for Brazilian health. The objective of this work was to evaluate the [...] Read more.
Snakebite envenoming is one of the most significantly neglected tropical diseases in the world. The lack of diagnosis/prognosis methods for snakebite is one of our motivations to develop innovative technological solutions for Brazilian health. The objective of this work was to evaluate the protein and metallic ion composition of Crotalus durissus terrificus, Bothrops jararaca, B. alternatus, B. jararacussu, B. moojeni, B. pauloensis, and Lachesis muta muta snake venoms. Brazilian snake venoms were subjected to the shotgun proteomic approach using mass spectrometry, and metal ion analysis was performed by atomic spectrometry. Shotgun proteomics has shown three abundant toxin classes (PLA2, serine proteases, and metalloproteinases) in all snake venoms, and metallic ions analysis has evidenced that the Cu2+ ion is present exclusively in the L. m. muta venom; Ca2+ and Mg2+ ions have shown a statistical difference between the species of Bothrops and Crotalus genus, whereas the Zn2+ ion presented a statistical difference among all species studied in this work. In addition, Mg2+ ions have shown 42 times more in the C. d. terrificus venom when compared to the average concentration in the other genera. Though metal ions are a minor fraction of snake venoms, several venom toxins depend on them. We believe that these non-protein fractions are capable of assisting in the development of unprecedented diagnostic devices for Brazilian snakebites. Full article
(This article belongs to the Special Issue Proteomic Analysis and Functional Characterization of Venom)
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12 pages, 695 KiB  
Article
Body Temperature Drop as a Humane Endpoint in Snake Venom-Lethality Neutralization Tests
by Rosa De Jesus, Adam E. Tratner, Alanna Madrid, Andrés Rivera-Mondragón, Goy E. Navas, Ricardo Lleonart, Gabrielle B. Britton and Patricia L. Fernández
Toxins 2023, 15(9), 525; https://doi.org/10.3390/toxins15090525 - 26 Aug 2023
Cited by 5 | Viewed by 2037 | Correction
Abstract
Snake venom neutralization potency tests are required for quality control assessment by manufacturers and regulatory authorities. These assays require the use of large numbers of mice that manifest severe signs associated with pain and distress and long periods of suffering. Despite this, many [...] Read more.
Snake venom neutralization potency tests are required for quality control assessment by manufacturers and regulatory authorities. These assays require the use of large numbers of mice that manifest severe signs associated with pain and distress and long periods of suffering. Despite this, many animals make a full recovery; therefore, the observation of clinical signs as a predictor of animal death is highly subjective and could affect the accuracy of the results. The use of a more objective parameter such as body temperature measurement could help establish a humane endpoint that would contribute to significantly reducing the suffering of large numbers of animals. We determined the temperature drop in BALB/c mice exposed to the mixtures of Bothrops asper or Lachesis stenophrys venom and a polyvalent antivenom by using an infrared thermometer. Our data show that, based on the temperature change from baseline, it is possible to predict which animals will survive during the first 3 h after inoculation. The data provided in this study may contribute to future reductions in animal suffering, in concordance with general trends in the use of laboratory animals for the quality control of biologicals. Full article
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12 pages, 19152 KiB  
Article
Small Angle X-ray Scattering, Molecular Modeling, and Chemometric Studies from a Thrombin-Like (Lmr-47) Enzyme of Lachesis m. rhombeata Venom
by Salvatore Giovanni De-Simone, Guilherme Curty Lechuga, Paloma Napoleão-Pêgo, Larissa Rodrigues Gomes, David William Provance, Vinícius Dias Nirello, Ana Carolina Rennó Sodero and Herbert Leonel de Mattos Guedes
Molecules 2021, 26(13), 3930; https://doi.org/10.3390/molecules26133930 - 28 Jun 2021
Cited by 1 | Viewed by 2486
Abstract
Introduction: Snakebite envenomation is considered a neglected tropical disease, and SVTLEs critical elements are involved in serious coagulopathies that occur on envenoming. Although some enzymes of this group have been structurally investigated, it is essential to characterize other proteins to better understand their [...] Read more.
Introduction: Snakebite envenomation is considered a neglected tropical disease, and SVTLEs critical elements are involved in serious coagulopathies that occur on envenoming. Although some enzymes of this group have been structurally investigated, it is essential to characterize other proteins to better understand their unique properties such as the Lachesis muta rhombeata 47 kDa (Lmr-47) venom serine protease. Methods: The structure of Lmr-47 was studied in solution, using SAXS, DLS, CD, and in silico by homology modeling. Molecular docking experiments simulated 21 competitive inhibitors. Results: At pH 8.0, Lmr-47 has an Rg of 34.5 ± 0.6 Å, Dmax of 130 Å, and SR of 50 Å, according to DLS data. Kratky plot analysis indicates a rigid shape at pH 8.0. Conversely, the pH variation does not change the center of mass’s intrinsic fluorescence, possibly indicating the absence of fluorescent amino acids in the regions affected by pH variation. CD experiments show a substantially random coiled secondary structure not affected by pH. The low-resolution model of Lmr-47 presented a prolate elongated shape at pH 8.0. Using the 3D structure obtained by molecular modeling, docking experiments identified five good and three suitable competitive inhibitors. Conclusion: Together, our work provided insights into the structure of the Lmr-47 and identified inhibitors that may enhance our understanding of thrombin-like family proteins. Full article
(This article belongs to the Section Medicinal Chemistry)
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14 pages, 1474 KiB  
Article
Potential Utilization of a Polysaccharide from the Marine Algae Gayralia oxysperma, as an Antivenom for Viperidae Snakebites
by Ana Cláudia Rodrigues Da Silva, Maria Eugenia Rabello Duarte, Miguel Daniel Noseda, Luciana Garcia Ferreira, Juliana Emanuela Fogari Cassolato, Eladio Flores Sanchez and Andre Lopes Fuly
Mar. Drugs 2018, 16(11), 412; https://doi.org/10.3390/md16110412 - 27 Oct 2018
Cited by 8 | Viewed by 3449
Abstract
Worldwide, snakebites have serious implications for human health. The administration of antivenom is the official treatment used to reverse the toxic activities of envenomation. However, this therapy is not efficient to treat the local effects, leading to the amputation or deformity of affected [...] Read more.
Worldwide, snakebites have serious implications for human health. The administration of antivenom is the official treatment used to reverse the toxic activities of envenomation. However, this therapy is not efficient to treat the local effects, leading to the amputation or deformity of affected limbs. As such, alternative treatments are needed. Here, we analyze the ability of a polysaccharide from the green marine alga Gayralia oxysperma (Go3) to inhibit the effects of venom from Bothrops jararaca and Lachesis muta. B. jararaca or L. muta venoms were incubated together with sulfated heterorhamnans from Go3, and the in vitro (coagulation, proteolytic, and hemolytic) and in vivo (hemorrhagic, myotoxic, edematogenic, and lethal) activities of venoms were assessed. Additionally, Go3 was injected before and after the injection of venoms, and the toxic activities were further tested. When incubated with the venoms, Go3 inhibited all activities, though results varied with different potencies. Moreover, Go3 neutralized hemorrhagic, myotoxic, and edematogenic activities when injected before or after injection with B. jararaca and L. muta venom. Go3 also blocked the coagulation of plasma in mice caused by the venoms in an ex vivo test. Therefore, Go3 has the potential to be used as antivenom for B. jararaca and L. muta bites, notably exhibiting higher efficacy on L. muta venom. Full article
(This article belongs to the Special Issue Marine Origin Agents for Therapy of Neglected Diseases)
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14 pages, 1728 KiB  
Article
Protective Effect of the Plant Extracts of Erythroxylum sp. against Toxic Effects Induced by the Venom of Lachesis muta Snake
by Eduardo Coriolano de Oliveira, Rodrigo Alves Soares Cruz, Nayanna De Mello Amorim, Marcelo Guerra Santos, Luiz Carlos Simas Pereira Junior, Eladio Oswaldo Flores Sanchez, Caio Pinho Fernandes, Rafael Garrett, Leandro Machado Rocha and André Lopes Fuly
Molecules 2016, 21(10), 1350; https://doi.org/10.3390/molecules21101350 - 11 Oct 2016
Cited by 15 | Viewed by 5976
Abstract
Snake venoms are composed of a complex mixture of active proteins that induce toxic effects, such as edema, hemorrhage, and death. Lachesis muta has the highest lethality indices in Brazil. In most cases, antivenom fails to neutralize local effects, leading to disabilities in [...] Read more.
Snake venoms are composed of a complex mixture of active proteins that induce toxic effects, such as edema, hemorrhage, and death. Lachesis muta has the highest lethality indices in Brazil. In most cases, antivenom fails to neutralize local effects, leading to disabilities in victims. Thus, alternative treatments are under investigation, and plant extracts are promising candidates. The objective of this work was to investigate the ability of crude extracts, fractions, or isolated products of Erythroxylum ovalifolium and Erythroxylum subsessile to neutralize some toxic effects of L. muta venom. All samples were mixed with L. muta venom, then in vivo (hemorrhage and edema) and in vitro (proteolysis, coagulation, and hemolysis) assays were performed. Overall, crude extracts or fractions of Erythroxylum spp. inhibited (20%–100%) toxic effects of the venom, but products achieved an inhibition of 4%–30%. However, when venom was injected into mice before the plant extracts, hemorrhage and edema were not inhibited by the samples. On the other hand, an inhibition of 5%–40% was obtained when extracts or products were given before venom injection. These results indicate that the extracts or products of Erythroxylum spp. could be a promising source of molecules able to treat local toxic effects of envenomation by L. muta venom, aiding in the development of new strategies for antivenom treatment. Full article
(This article belongs to the Section Natural Products Chemistry)
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15 pages, 639 KiB  
Article
Sulfated Galactan from Palisada flagellifera Inhibits Toxic Effects of Lachesis muta Snake Venom
by Ana Cláudia Rodrigues Da Silva, Luciana Garcia Ferreira, Maria Eugênia Rabello Duarte, Miguel Daniel Noseda, Eladio Flores Sanchez and André Lopes Fuly
Mar. Drugs 2015, 13(6), 3761-3775; https://doi.org/10.3390/md13063761 - 11 Jun 2015
Cited by 9 | Viewed by 6606
Abstract
In Brazil, snakebites are a public health problem and accidents caused by Lachesis muta have the highest mortality index. Envenomation by L. muta is characterized by systemic (hypotension, bleeding and renal failure) and local effects (necrosis, pain and edema). The treatment to reverse [...] Read more.
In Brazil, snakebites are a public health problem and accidents caused by Lachesis muta have the highest mortality index. Envenomation by L. muta is characterized by systemic (hypotension, bleeding and renal failure) and local effects (necrosis, pain and edema). The treatment to reverse the evolution of all the toxic effects is performed by injection of antivenom. However, such therapy does not effectively neutralize tissue damage or any other local effect, since in most cases victims delay seeking appropriate medical care. In this way, alternative therapies are in demand, and molecules from natural sources have been exhaustively tested. In this paper, we analyzed the inhibitory effect of a sulfated galactan obtained from the red seaweed Palisada flagellifera against some toxic activities of L. muta venom. Incubation of sulfated galactan with venom resulted in inhibition of hemolysis, coagulation, proteolysis, edema and hemorrhage. Neutralization of hemorrhage was also observed when the galactan was administered after or before the venom injection; thus mimicking a real in vivo situation. Moreover, the galactan blocked the edema caused by a phospholipase A2 isolated from the same venom. Therefore, the galactan from P. flagellifera may represent a promising tool to treat envenomation by L. muta as a coadjuvant for the conventional antivenom. Full article
(This article belongs to the Special Issue Marine Secondary Metabolites)
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15 pages, 254 KiB  
Article
Appraisal of Antiophidic Potential of Marine Sponges against Bothrops jararaca and Lachesis muta Venom
by Camila Nunes Faioli, Thaisa Francielle Souza Domingos, Eduardo Coriolano De Oliveira, Eládio Flores Sanchez, Suzi Ribeiro, Guilherme Muricy and Andre Lopes Fuly
Toxins 2013, 5(10), 1799-1813; https://doi.org/10.3390/toxins5101799 - 17 Oct 2013
Cited by 9 | Viewed by 6971
Abstract
Snakebites are a health problem in many countries due to the high incidence of such accidents. Antivenom treatment has regularly been used for more than a century, however, this does not neutralize tissue damage and may even increase the severity and morbidity of [...] Read more.
Snakebites are a health problem in many countries due to the high incidence of such accidents. Antivenom treatment has regularly been used for more than a century, however, this does not neutralize tissue damage and may even increase the severity and morbidity of accidents. Thus, it has been relevant to search for new strategies to improve antiserum therapy, and a variety of molecules from natural sources with antiophidian properties have been reported. In this paper, we analyzed the ability of ten extracts from marine sponges (Amphimedon viridis, Aplysina fulva, Chondrosia collectrix, Desmapsamma anchorata, Dysidea etheria, Hymeniacidon heliophila, Mycale angulosa, Petromica citrina, Polymastia janeirensis, and Tedania ignis) to inhibit the effects caused by Bothrops jararaca and Lachesis muta venom. All sponge extracts inhibited proteolysis and hemolysis induced by both snake venoms, except H. heliophila, which failed to inhibit any biological activity. P. citrina inhibited lethality, hemorrhage, plasma clotting, and hemolysis induced by B. jararaca or L. muta. Moreover, other sponges inhibited hemorrhage induced only by B. jararaca. We conclude that Brazilian sponges may be a useful aid in the treatment of snakebites caused by L. muta and B. jararaca and therefore have potential for the discovery of molecules with antiophidian properties. Full article
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