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1.
Acta Trop ; 231: 106428, 2022 Jul.
Article in English | MEDLINE | ID: mdl-35339435

ABSTRACT

The saturniid genus Hylesia is well known for the cutaneous lepidopterism induced by airborne setae on contact with the skin. Although several cases of such dermatitis have been reported in Argentina, no information about their venoms and toxicological implications on human health is available yet. Thus, we conducted a morphological analysis of the setae/spines and a toxinological characterization (through biological assays and proteomic techniques) of the bristle extract from caterpillars and moths of Hylesia sp. from Misiones, Argentina. By scanning electron microscopy, we revealed the various and distinctive types of urticating structures: harpoon-shaped or spiny setae in caterpillars, and setae with barb-like structures in female moths. Their venom electrophoretic profiles were substantially different, presenting proteins related to toxicity, such as serpins and serine peptidases. The female moth venom exhibited higher caseinolytic activity than the caterpillar venom, and coincidentally only the former noticeably hydrolyzed fibrinogen and gelatin. In addition, the female venom displayed a dose-dependent procoagulant effect. The injection of this venom into mouse skin led to the rapid detection of an increased number of intact and degranulated mast cells in the dermis; a few areas of focal subcutaneous hemorrhage were also observed after 5 h of injection. Altogether, this study provides relevant information about the pathophysiological mechanisms whereby Hylesia sp. from northeastern Argentina can induce toxicity on human beings, and paves the way for treatment strategies of accidents caused by this saturniid lepidopteran.


Subject(s)
Moths , Venoms , Animals , Argentina , Female , Mice , Moths/metabolism , Proteomics , Public Health , Venoms/metabolism
2.
Article in English | MEDLINE | ID: mdl-32950744

ABSTRACT

With the aim to widen the current knowledge of toxinological implications of bites from rear-fanged snakes and biological roles of their venoms, this study focuses on the biochemical composition and toxic effects of the venom of Leptodeira annulata pulchriceps from Argentina. We analyzed the protein composition by electrophoresis and mass spectrometry, and enzymatic properties by quantitative assays on different substrates. Additionally, we evaluated local and systemic toxicity in mice, and tested its cross-reactivity with elapid and viperid antivenoms used in Argentina. This venom showed features reminiscent of venoms from snakes of Bothrops genus, containing components ranging from ~17 to 75 kDa, which are mainly tissue-damaging toxins such as proteinases. Although showing low lethality to mice (LD50 = 20 µg/g body weight), prominent hemorrhage developed locally in mice intramuscularly and intradermally injected with the venom, and the minimum hemorrhagic dose was found to be 12.7 µg/mouse. This study is the first comprehensive investigation of the venom of L. a. pulchriceps, and sheds new light on differences between this and those of the other two subspecies of L. annulata. Additionally, the study provides new insights into the venom components of "colubrid" snakes, advocating for considering bites from this rich diversity of snakes as a public health problem that needs to be addressed worldwide.


Subject(s)
Colubridae/metabolism , Snake Venoms , Animals , Argentina , Male , Mice , Peptide Hydrolases/analysis , Snake Venoms/chemistry , Snake Venoms/toxicity
3.
Toxicon ; 164: 71-81, 2019 Jun.
Article in English | MEDLINE | ID: mdl-30998944

ABSTRACT

Most colubrid snake venoms have been poorly studied, despite the fact that they represent a great resource for biological, ecological, toxinological and pharmacological research. Herein, we explore the venom delivery system of the Aesculapian False Coral Snake Erythrolamprus aesculapii as well as some biochemical and toxicological properties of its venom. Its Duvernoy's venom gland is composed of serous secretory cells arranged in densely packed secretory tubules, and the most striking feature of its fang is their double-curved shape, exhibiting a beveled bladelike appearance near the tips. Although E. aesculapii resembles elapid snakes of the genus Micrurus in color pattern, this species produces a venom reminiscent of viperid venoms, containing mainly tissue-damaging toxins such as proteinases. Prominent hemorrhage developed both locally and systemically in mice injected with the venom, and the minimum hemorrhagic dose was found to be 18.8 µg/mouse; the lethal dose, determined in mice, was 9.5 ±â€¯3.7 µg/g body weight. This work has toxicological implications that bites to humans by E. aesculapii could result in moderately severe local (and perhaps systemic) hemorrhage and gives insight into future directions for research on the venom of this species.


Subject(s)
Colubridae/anatomy & histology , Snake Venoms/chemistry , Snake Venoms/toxicity , Animals , Antivenins/immunology , Exocrine Glands/anatomy & histology , Female , Hemorrhage/chemically induced , Humans , Male , Maxilla/ultrastructure , Mice , Microscopy, Electron, Scanning , Proteolysis , Snake Bites , Snake Venoms/immunology , Tooth/ultrastructure
4.
Article in English | MEDLINE | ID: mdl-30448590

ABSTRACT

Megalopygids Megalopyge lanata and Podalia orsilochus are common causative agents of accidents in agricultural workers. These accidents are provoked by dermal contact at their larval stage and are characterized by cutaneous reactions, such as burning pain, edema and erythema, typically mild and self-limited. There is very little information about their venoms and their toxicological implications on human health. Thus, we employed proteomic techniques and biological assays to characterize venoms (bristle extracts) from caterpillars of both species collected from Misiones, Argentina. The electrophoretic profiles of both venoms were substantially different, and they presented proteins related to toxicity, such as serinepeptidases, serpins and lectins. P. orsilochus venom exhibited higher caseinolytic activity than M. lanata venom, agreeing with the fact that only P. orsilochus venom hydrolyzed human fibrin(ogen). In addition, the latter shortened the clotting time triggered by calcium. While the venom of M. lanata induced a mild inflammatory lesion in mouse skin, P. orsilochus venom caused prominent necrosis, inflammatory infiltration and hemorrhage at the site of venom injection. On the other hand, P. orsilochus venom was better recognized by Lonomia obliqua antivenom, although many of its proteins could not be cross-reacted, what may explain the difference in the clinical manifestations between accidents by Podalia and those by Lonomia. Altogether, this study provides relevant information about the pathophysiological mechanisms whereby both caterpillars can induce toxicity on human beings, and paves the way for novel discovery of naturally occurring bioactive compounds.


Subject(s)
Arthropod Venoms/toxicity , Insect Bites and Stings/etiology , Moths , Animals , Arthropod Venoms/isolation & purification , Electrophoresis, Polyacrylamide Gel , Humans , Larva/anatomy & histology , Male , Mass Spectrometry , Mice , Moths/anatomy & histology , Skin/drug effects
5.
Toxicon ; 148: 202-212, 2018 Jun 15.
Article in English | MEDLINE | ID: mdl-29705149

ABSTRACT

Snakes are the major group of venomous vertebrates, and the rear-fanged snakes represent the vast majority of species and occur worldwide; however, relatively few studies have characterized their venoms and evaluated their potential hazards for humans. Herein we explore the protein composition and properties of the venom of the rear-fanged Green Parrot Snake, Leptophis ahaetulla marginatus, the most common snake found in the Iguazu National Park (Argentina), as well as the main features of its venom delivery system. This species has venom reminiscent of elapid venoms, composed mainly of components such as 3FTxs, CRiSPs and AChE, but it shows low toxicity toward mammals (LD50 > 20 µg/g mouse). The histology of its Duvernoy's venom gland is similar to that of other colubrids, with serous secretory cells arranged in densely packed secretory tubules. The posterior end of its maxilla exhibits 1-3 blade-shaped and slightly recurved fangs but without grooves. This study provides an initial analysis of the biological role of venom in Leptophis, with implications for potential symptoms that might be anticipated from bites by this species.


Subject(s)
Colubridae/anatomy & histology , Exocrine Glands/anatomy & histology , Snake Venoms/chemistry , Snake Venoms/toxicity , Animals , Antivenins/immunology , Argentina , Lethal Dose 50 , Male , Maxilla/anatomy & histology , Mice
6.
Vet Parasitol ; 224: 60-64, 2016 Jul 15.
Article in English | MEDLINE | ID: mdl-27270391

ABSTRACT

The current study summarizes the postmortem examination of a specimen of Oxyrhopus guibei (Serpentes, Colubridae) collected in Iguazu National Park (Argentina), and found deceased a week following arrival to the serpentarium of the National Institute of Tropical Medicine (Argentina). Although the snake appeared to be in good health, a necropsy performed following its death identified the presence of a large number of roundworms in the coelomic cavity, with indications of peritonitis and serosal adherence. Additional observations from the necropsy revealed small calcifications in the mesothelium of the coelomic cavity; solid and expressive content in the gallbladder; massive gastrointestinal obstruction due to nematodes; and lung edema and congestion. Histopathological analyses of lung sections also showed proliferative heterophilic and histiocytic pneumonia. Parasites isolated from both the intestine and coelomic cavity were identified as Hexametra boddaertii by a combination of light and scanning electron microscopic examination. Results from this necropsy identify O. guibei as a new host for H. boddaertii, and is the first report of a natural infection by Hexametra in Argentina. Since Hexametra parasites may contribute to several pathological conditions in humans, and with the recent availability of O. guibei specimens through the illegal pet trade, it is necessary to consider the possibility of zoonotic helminth transmission of Hexametra from snake to human.


Subject(s)
Animals, Zoo/parasitology , Colubridae/parasitology , Nematoda/physiology , Nematode Infections/veterinary , Animals , Argentina , Fatal Outcome , Host Specificity , Nematoda/classification , Nematoda/ultrastructure , Nematode Infections/parasitology , Nematode Infections/pathology
7.
Medicina (B Aires) ; 75(5): 328-33, 2015.
Article in Spanish | MEDLINE | ID: mdl-26502471

ABSTRACT

Lonomia obliqua (Walker, 1855) is a moth from the family Saturniidae, widely distributed in tropical rainforests of South America. In its larval stage (caterpillar) it is characterized by bristles that cover the animal's body. These structures are hard and branched spiny evaginations of the cuticle, underneath which a complex mixture of toxic molecules is stored. When spicules are brought into contact with the skin of people, toxins enter passively through the injury, causing not only local but also systemic poisoning (primarily hemorrhagic manifestations). When the whole animal is accidentally crushed, the insect's chitinous bristles are broken and the venomous secretions penetrate the human skin, reaching the blood circulation. Due to the numerous registered cases of erucism in Southern Brazil, the Butantan Institute has produced an antivenom able to neutralize the deleterious effects produced by contact with L. obliqua caterpillar bristles. In Argentina, these kinds of accidents are rare and restricted to the province of Misiones. Taking into account that to date there is no report in this country about clinical cases submitted to a specific treatment (antivenom), our aim is to communicate here six cases of Lonomia caterpillar-induced bleeding syndrome that were treated in the Hospital SAMIC of Puerto Iguazú (Misiones, Argentina) during 2014 with the antilonomic serum produced in Brazil. It is worthy to note that all patients evolved favorably within the first few hours, and for this reason, the use of this antivenom is recommended to treat the cases of Lonomia erucism in Argentina.


Subject(s)
Antivenins/therapeutic use , Arthropod Venoms/blood , Bites and Stings/therapy , Immunization, Passive , Moths/chemistry , Moths/classification , Adolescent , Adult , Animals , Argentina , Brazil , Child , Child, Preschool , Female , Hematuria , Hemorrhage/chemically induced , Humans , Larva/chemistry , Larva/classification , Male , Middle Aged
8.
Medicina (B.Aires) ; 75(5): 328-333, Oct. 2015. ilus, mapas
Article in Spanish | LILACS | ID: biblio-841523

ABSTRACT

Lonomia obliqua (Walker, 1855) es una mariposa nocturna de la familia Saturniidae, ampliamente distribuida en selvas tropicales de Sudamérica. Su larva (oruga) se caracteriza por poseer espículas ramificadas puntiagudas a lo largo de su cuerpo, que contienen una mezcla compleja de moléculas tóxicas en su interior. Cuando las espículas contactan con la piel de las personas, las toxinas ingresan pasivamente a través de la lesión, generando un envenenamiento caracterizado por manifestaciones no solo locales sino también sistémicas (fundamentalmente manifestaciones hemorrágicas). Debido al elevado número de casos que se produjeron en Brasil en las últimas décadas, el Instituto Butantan ha producido un antiveneno capaz de neutralizar los efectos deletéreos de los accidentes por contacto con L. obliqua. En Argentina, los accidentes por Lonomia son poco frecuentes y se limitan a la provincia de Misiones. Teniendo en cuenta que a la fecha no hay en la literatura descripciones de casos clínicos ocurridos en el país con tratamiento específico (antiveneno), el propósito del presente trabajo es comunicar seis casos de accidentes por contacto con orugas Lonomia que fueron atendidos en el Hospital SAMIC de Puerto Iguazú (Misiones, Argentina) durante el año 2014, y que fueron tratados con el suero antilonómico producido en Brasil. Se destaca la evolución rápida y favorable de todos los pacientes, por lo que se recomienda el uso de este antiveneno para tratar los casos de erucismo por Lonomia en la Argentina.


Lonomia obliqua (Walker, 1855) is a moth from the family Saturniidae, widely distributed in tropical rainforests of South America. In its larval stage (caterpillar) it is characterized by bristles that cover the animal’s body. These structures are hard and branched spiny evaginations of the cuticle, underneath which a complex mixture of toxic molecules is stored. When spicules are brought into contact with the skin of people, toxins enter passively through the injury, causing not only local but also systemic poisoning (primarily hemorrhagic manifestations). When the whole animal is accidentally crushed, the insect’s chitinous bristles are broken and the venomous secretions penetrate the human skin, reaching the blood circulation. Due to the numerous registered cases of erucism in Southern Brazil, the Butantan Institute has produced an antivenom able to neutralize the deleterious effects produced by contact with L. obliqua caterpillar bristles. In Argentina, these kinds of accidents are rare and restricted to the province of Misiones. Taking into account that to date there is no report in this country about clinical cases submitted to a specific treatment (antivenom), our aim is to communicate here six cases of Lonomia caterpillar-induced bleeding syndrome that were treated in the Hospital SAMIC of Puerto Iguazú (Misiones, Argentina) during 2014 with the antilonomic serum produced in Brazil. It is worthy to note that all patients evolved favorably within the first few hours, and for this reason, the use of this antivenom is recommended to treat the cases of Lonomia erucism in Argentina.


Subject(s)
Humans , Animals , Male , Female , Child, Preschool , Child , Adolescent , Adult , Middle Aged , Arthropod Venoms/blood , Bites and Stings/therapy , Antivenins/therapeutic use , Immunization, Passive , Moths/classification , Moths/chemistry , Argentina , Brazil , Hematuria , Hemorrhage/chemically induced , Larva/classification , Larva/chemistry
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