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1.
Toxicon ; 216: 50-56, 2022 Sep.
Article in English | MEDLINE | ID: mdl-35787893

ABSTRACT

Diagnostic tests for brown spider accidents are unavailable and impact treatment decisions, increasing costs and patient risks. In this work, we used for the first time a fast, simple, and visual method based on the loop-mediated isothermal amplification assay (LAMP) to detect Loxosceles envenomation. Using the DNA from L. similis legs, we observed a high sensitivity using this test since as low as 0.32 pg of DNA could be detected. This pH-dependent colorimetric assay was 64 times more sensitive than PCR to detect spider DNA. The test was specific for Loxosceles once no cross-reaction was observed when testing DNA from different agents that cause similar dermonecrotic injuries. The test allowed the detection of Loxosceles intermedia DNA from hair, serum, and exudate samples obtained from experimentally-envenomed rabbit within 72 h. The method sensitivity varied according to the sample and the collection time, reaching 100% sensitivity in serum and hair, respectively, 1 h and 24 h after the experimental envenomation. Due to its ease of execution, speed, sensitivity, and specificity, LAMP presents an excellent potential for identifying Loxosceles spp. Envenomation. This can reduce the burden on the Health System and the morbidity for the patient by implementing the appropriate therapy immediately.In addition, this work opens up the perspective to other venomous animal accident identification using LAMP.


Subject(s)
Spider Venoms , Spiders , Animals , Colorimetry , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Phosphoric Diester Hydrolases/genetics , Rabbits , Sensitivity and Specificity , Spider Venoms/genetics , Spider Venoms/toxicity , Spiders/genetics
2.
Mol Immunol ; 147: 199-208, 2022 07.
Article in English | MEDLINE | ID: mdl-35644072

ABSTRACT

Viral inactivation for antibody induction purposes, among other applications, should ensure biosafety, completely avoiding the risk of infectivity, and preserving viral immunogenicity. ß-propiolactone (BPL) is one of the most used reagents for viral inactivation, despite its high toxicity and recent difficulties related to importation, experienced in Brazil during the SARS-CoV-2 pandemic. In this context, the main objectives of this work were to test different inactivation procedures for SARS-CoV-2 and to evaluate the induction of neutralizing antibodies in mice immunized with antigenic preparations obtained after viral treatment with formaldehyde (FDE), glutaraldehyde (GDE), peroxide hydrogen (H2O2), as well as with viral proteins extract (VPE), in parallel with BPL. Verification of viral inactivation was performed by subsequent incubations of the inactivated virus in Vero cells, followed by cytopathic effect and lysis plaques observation, as well as by quantification of RNA load using reverse transcription-quantitative real time polymerase chain reaction. Once viral inactivation was confirmed, cell culture supernatants were concentrated and purified. In addition, an aliquot inactivated by BPL was also subjected to viral protein extraction (VPE). The different antigens were prepared using a previously developed microemulsion as adjuvant, and were administered in a four-dose immunization protocol. Antibody production was comparatively evaluated by ELISA and Plaque Reduction Neutralization Tests (PRNT). All immunogens evaluated showed some level of IgG anti-SARS-CoV-2 antibodies in the ELISA assay, with the highest levels presented by the group immunized with FDE-inactivated viral antigen. In the PRNT results, except for VPE-antigen, all other immunogens evaluated induced some level of neutralizing anti-SARS-CoV-2 antibodies, and the FDE-antigen stood out again with the most expressive values. Taken together, the present work shows that FDE can be an efficient and affordable alternative to BPL for the production of inactivated SARS-CoV-2 viral antigen.


Subject(s)
COVID-19 , SARS-CoV-2 , Animals , Antibodies, Viral , Antigens, Viral , Chlorocebus aethiops , Disease Models, Animal , Hydrogen Peroxide , Mice , Vero Cells
3.
Emerg Microbes Infect ; 9(1): 1824-1834, 2020 Dec.
Article in English | MEDLINE | ID: mdl-32726185

ABSTRACT

The recent emergence of a coronavirus (SARS-CoV-2), first identified in the Chinese city of Wuhan in December 2019, has had major public health and economic consequences. Although 61,888 confirmed cases were reported in Brazil by 28 April 2020, little is known about the SARS-CoV-2 epidemic in this country. To better understand the recent epidemic in the second most populous state in southeast Brazil - Minas Gerais (MG) - we sequenced 40 complete SARS-CoV-2 genomes from MG cases and examined epidemiological data from three Brazilian states. Both the genome analyses and the geographical distribution of reported cases indicate for multiple independent introductions into MG. Epidemiological estimates of the reproductive number (R) using different data sources and theoretical assumptions suggest the potential for sustained virus transmission despite a reduction in R from the first reported case to the end of April 2020. The estimated date of SARS-CoV-2 introduction into Brazil was consistent with epidemiological data from the first case of a returned traveller from Lombardy, Italy. These findings highlight the nature of the COVID-19 epidemic in MG and reinforce the need for real-time and continued genomic surveillance strategies to better understand and prepare for the epidemic spread of emerging viral pathogens..


Subject(s)
Betacoronavirus/genetics , Coronavirus Infections/epidemiology , Coronavirus Infections/transmission , Genome, Viral , Pneumonia, Viral/epidemiology , Pneumonia, Viral/transmission , Adult , Aged , Brazil/epidemiology , COVID-19 , Female , Geography , Humans , Male , Middle Aged , Pandemics , SARS-CoV-2 , Whole Genome Sequencing , Young Adult
5.
Sci Rep ; 8(1): 14904, 2018 10 08.
Article in English | MEDLINE | ID: mdl-30297733

ABSTRACT

Epitope identification is essential for developing effective antibodies that can detect and neutralize bioactive proteins. Computational prediction is a valuable and time-saving alternative for experimental identification. Current computational methods for epitope prediction are underused and undervalued due to their high false positive rate. In this work, we targeted common properties of linear B-cell epitopes identified in an individual protein class (metalloendopeptidases) and introduced an alternative method to reduce the false positive rate and increase accuracy, proposing to restrict predictive models to a single specific protein class. For this purpose, curated epitope sequences from metalloendopeptidases were transformed into frame-shifted Kmers (3 to 15 amino acid residues long). These Kmers were decomposed into a matrix of biochemical attributes and used to train a decision tree classifier. The resulting prediction model showed a lower false positive rate and greater area under the curve when compared to state-of-the-art methods. Our predictions were used for synthesizing peptides mimicking the predicted epitopes for immunization of mice. A predicted linear epitope that was previously undetected by an experimental immunoassay was able to induce neutralizing-antibody production in mice. Therefore, we present an improved prediction alternative and show that computationally identified epitopes can go undetected during experimental mapping.


Subject(s)
Antibodies, Neutralizing/biosynthesis , Computational Biology/methods , Epitopes, B-Lymphocyte/immunology , Snake Venoms/immunology , Algorithms , Amino Acid Sequence , Amino Acids/chemistry , Animals , Decision Trees , Epitope Mapping , Epitopes, B-Lymphocyte/chemistry , Female , Immunization , Metalloproteases/metabolism , Mice, Inbred BALB C , Models, Molecular , Peptides/chemistry , ROC Curve , Reproducibility of Results
6.
PLoS Negl Trop Dis ; 10(3): e0004484, 2016 Mar.
Article in English | MEDLINE | ID: mdl-26938217

ABSTRACT

BACKGROUND: Envenoming by coral snakes (Elapidae: Micrurus), although not abundant, represent a serious health threat in the Americas, especially because antivenoms are scarce. The development of adequate amounts of antielapidic serum for the treatment of accidents caused by snakes like Micrurus corallinus is a challenging task due to characteristics such as low venom yield, fossorial habit, relatively small sizes and ophiophagous diet. These features make it difficult to capture and keep these snakes in captivity for venom collection. Furthermore, there are reports of antivenom scarcity in USA, leading to an increase in morbidity and mortality, with patients needing to be intubated and ventilated while the toxin wears off. The development of an alternative method for the production of an antielapidic serum, with no need for snake collection and maintenance in captivity, would be a plausible solution for the antielapidic serum shortage. METHODS AND FINDINGS: In this work we describe the mapping, by the SPOT-synthesis technique, of potential B-cell epitopes from five putative toxins from M. corallinus, which were used to design two multiepitope DNA strings for the genetic immunisation of female BALB/c mice. Results demonstrate that sera obtained from animals that were genetically immunised with these multiepitope constructs, followed by booster doses of recombinant proteins lead to a 60% survival in a lethal dose neutralisation assay. CONCLUSION: Here we describe that the genetic immunisation with a synthetic multiepitope gene followed by booster doses with recombinant protein is a promising approach to develop an alternative antielapidic serum against M. corallinus venom without the need of collection and the very challenging maintenance of these snakes in captivity.


Subject(s)
Antivenins/immunology , Antivenins/pharmacology , Elapidae/immunology , Snake Venoms/immunology , Technology, Pharmaceutical/methods , Vaccines, DNA/immunology , Animals , Disease Models, Animal , Elapidae/genetics , Epitopes, B-Lymphocyte/genetics , Epitopes, B-Lymphocyte/immunology , Female , Mice, Inbred BALB C , Neutralization Tests , Snake Bites/therapy , Snake Venoms/genetics , Vaccination/methods , Vaccines, DNA/administration & dosage , Vaccines, Subunit/administration & dosage , Vaccines, Subunit/immunology , Vaccines, Synthetic/administration & dosage , Vaccines, Synthetic/immunology
7.
Curr Med Chem ; 23(6): 603-22, 2016.
Article in English | MEDLINE | ID: mdl-26812904

ABSTRACT

Animal venoms are a mixture of bioactive compounds produced as weapons and used primarily to immobilize and kill preys. As a result of the high potency and specificity for various physiological targets, many toxins from animal venoms have emerged as possible drugs for the medication of diverse disorders, including cardiovascular diseases. Captopril, which inhibits the angiotensin-converting enzyme (ACE), was the first successful venom-based drug and a notable example of rational drug design. Since captopril was developed, many studies have discovered novel bradykinin-potentiating peptides (BPPs) with actions on the cardiovascular system. Natriuretic peptides (NPs) have also been found in animal venoms and used as template to design new drugs with applications in cardiovascular diseases. Among the anti-arrhythmic peptides, GsMTx-4 was discovered to be a toxin that selectively inhibits the stretch-activated cation channels (SACs), which are involved in atrial fibrillation. The present review describes the main components isolated from animal venoms that act on the cardiovascular system and presents a brief summary of venomous animals and their venom apparatuses.


Subject(s)
Cardiovascular Agents/chemistry , Cardiovascular Agents/therapeutic use , Cardiovascular Diseases/drug therapy , Cardiovascular System/drug effects , Drug Discovery , Venoms/chemistry , Venoms/therapeutic use , Amino Acid Sequence , Animals , Bradykinin/metabolism , Cardiovascular Agents/pharmacology , Cardiovascular Diseases/physiopathology , Cardiovascular System/physiopathology , Drug Discovery/methods , Humans , Molecular Sequence Data , Peptides/chemistry , Peptides/pharmacology , Peptides/therapeutic use , Renin-Angiotensin System/drug effects , Venoms/pharmacology
8.
PLoS Negl Trop Dis ; 8(2): e2693, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24551256

ABSTRACT

BACKGROUND: Scorpionism is a public health problem in Brazil, and Tityus serrulatus (Ts) is primarily responsible for severe accidents. The main toxic components of Ts venom are low-molecular-weight neurotoxins; however, the venom also contains poorly characterized high-molecular-weight enzymes. Hyaluronidase is one such enzyme that has been poorly characterized. METHODS AND PRINCIPAL FINDINGS: We examined clones from a cDNA library of the Ts venom gland and described two novel isoforms of hyaluronidase, TsHyal-1 and TsHyal-2. The isoforms are 83% identical, and alignment of their predicted amino acid sequences with other hyaluronidases showed conserved residues between evolutionarily distant organisms. We performed gel filtration followed by reversed-phase chromatography to purify native hyaluronidase from Ts venom. Purified native Ts hyaluronidase was used to produce anti-hyaluronidase serum in rabbits. As little as 0.94 µl of anti-hyaluronidase serum neutralized 1 LD50 (13.2 µg) of Ts venom hyaluronidase activity in vitro. In vivo neutralization assays showed that 121.6 µl of anti-hyaluronidase serum inhibited mouse death 100%, whereas 60.8 µl and 15.2 µl of serum delayed mouse death. Inhibition of death was also achieved by using the hyaluronidase pharmacological inhibitor aristolochic acid. Addition of native Ts hyaluronidase (0.418 µg) to pre-neutralized Ts venom (13.2 µg venom+0.94 µl anti-hyaluronidase serum) reversed mouse survival. We used the SPOT method to map TsHyal-1 and TsHyal-2 epitopes. More peptides were recognized by anti-hyaluronidase serum in TsHyal-1 than in TsHyal-2. Epitopes common to both isoforms included active site residues. CONCLUSIONS: Hyaluronidase inhibition and immunoneutralization reduced the toxic effects of Ts venom. Our results have implications in scorpionism therapy and challenge the notion that only neurotoxins are important to the envenoming process.


Subject(s)
Hyaluronoglucosaminidase/immunology , Scorpion Venoms/immunology , Scorpions/genetics , Amino Acid Sequence , Animals , Antibodies/blood , Base Sequence , Hyaluronoglucosaminidase/chemistry , Hyaluronoglucosaminidase/genetics , Immunoassay , Models, Molecular , Molecular Sequence Data , Neutralization Tests , Scorpion Venoms/chemistry , Scorpion Venoms/enzymology , Scorpion Venoms/genetics , Scorpions/chemistry , Sequence Alignment
9.
Vaccine ; 28(5): 1168-76, 2010 Feb 03.
Article in English | MEDLINE | ID: mdl-19948263

ABSTRACT

Scorpion stings cause human fatalities in numerous countries. Serotherapy is the only specific means to try to circumvent the noxious effects of venom toxins. TsNTxP is a natural anatoxin from the venom of the scorpion Tityus serrulatus that may be useful to raise therapeutic anti-venom sera. Linear epitopes recognized by anti-TsNTxP antibodies have previously been mapped. Here, we attempted to identify discontinuous epitopes in TsNTxP since neutralizing epitopes are often associated with such complex entities. One hundred and fifty-three octadecapeptides with the general formula (P1)-(Gly-Gly)-(P2) were synthesized by the Spot method on cellulose membranes. P1 and P2 were octapeptides from the TsNTxP N-terminal and C-terminal sections, respectively. Each sequence of eight amino acids was frameshifted in turn by three residues, in order to cover TsNTxP entire sequence. Binding of neutralizing anti-TsNTxP rabbit antibodies to spotted peptides revealed GREGYPADGGGLPDSVKI as the more reactive peptide sequence. This epitope was made from the first eight residues of the protein (GREGYPAD) and from residues 47 to 54 (GLPDSVKI) of the C-terminal part of TsNTxP. BALB/c mice were immunized with synthetic GREGYPADGGGLPDSVKI peptide conjugated to ovalbumin. One week after the last immunization, in vivo protection assays showed that immunized mice could resist a challenge by an amount of T.serrulatus whole venom equivalent to 1.75 LD(100), a dose that killed all control non-immune mice. Based on molecular models of TsNTxP and related Tityus toxins, we found that the above peptide matches with a discontinuous epitope, well exposed at the toxin molecular surface which contains residues known to be important for the bioactivity of toxins.


Subject(s)
Antitoxins/immunology , Epitopes/immunology , Oligopeptides/immunology , Scorpion Venoms/antagonists & inhibitors , Scorpion Venoms/immunology , Scorpion Venoms/toxicity , Animals , Antitoxins/therapeutic use , Bites and Stings/immunology , Bites and Stings/prevention & control , Epitopes/pharmacology , Humans , Mice , Oligopeptides/chemical synthesis , Oligopeptides/pharmacology , Rabbits , Scorpions
10.
Braz. arch. biol. technol ; 49(4): 605-609, July 2006. graf
Article in English | LILACS | ID: lil-448927

ABSTRACT

In this work, polyclonal antibodies anti-human Factor IX were produced in New Zealand rabbits by immunization with commercial pure human FIX (hFIX) (Octanyne®, Octapharma, USA). The serum containing immunoglobulins anti-hFIX was useful to detect hFIX antigen in human plasma fractions submitted to anionic exchange chromatographic process and with a large yield. Immunoassays (ELISA) using bovine serum albumin, trypsin and peptides generated by cleavage assays with trypsin as digestion enzyme was performed and revealed adequate specificity of the polyclonal antibodies produced.


Neste trabalho foram produzidos anticorpos policlonais anti-fator IX humano em coelhos New Zealand imunizados com FIX humano (hFIX) comercial puro (Octanyne®, Octapharma, EUA). O soro contendo as imunoglobulinas anti-hFIX foi útil para a detecção do antígeno hFIX em frações do plasma humano submetido a cromatografia de troca iônica. Imunoensaios (ELISA) usando soro-albumina bovina, tripsina e peptídeos gerados por ensaios de clivagem com tripsina com enzima de digestão foram realizados e revelaram especificidade adequada dos anticorpos policlonais produzidos.

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