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Keywords = Naja ashei

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21 pages, 3236 KB  
Article
Establishing the Kenya National Antivenom Quality Control Laboratory: Preclinical Efficacy Results of Four Antivenoms Against Venoms from the “Big Five” Snake Species in Kenya
by Valentine Musabyimana, John M. Kagira, Jacob Lubuya, Caroline W. Ngugi, Brian M. Musau, Wathuto Ogopotse, Geoffrey Maranga, Dennis Kotti, Pamela M. Khasandi, Ezekiel Adino, Brent C. Thomas, Cassandra M. Modahl, Peter G. Mwethera, Robert A. Harrison, Nicholas R. Casewell and George O. Oluoch
Toxins 2026, 18(2), 106; https://doi.org/10.3390/toxins18020106 - 19 Feb 2026
Cited by 1 | Viewed by 2491
Abstract
Antivenom administration is currently the only therapy for snakebite envenoming. However, in sub-Saharan Africa, inadequate quality control systems have led to deficits in the availability, accessibility, efficacy and safety of regionally available antivenoms, which, in turn, hinder snakebite treatment and management in the [...] Read more.
Antivenom administration is currently the only therapy for snakebite envenoming. However, in sub-Saharan Africa, inadequate quality control systems have led to deficits in the availability, accessibility, efficacy and safety of regionally available antivenoms, which, in turn, hinder snakebite treatment and management in the region. To address this impediment to snakebite treatment in Kenya, this study aimed to assess the preclinical neutralising potencies of four different antivenoms previously or currently available in Kenya (SAIMR polyvalent, AFRIVEN, PANAF-PremiumTM and InoserpTM) against key snakes of medical importance in the region, towards establishing a national antivenom quality control laboratory. Venoms were extracted from the Kenyan “big five” medically important snake species: Naja ashei, Naja pallida, Naja nigricollis, Dendroaspis polylepis and Bitis arietans, and their lethal potencies were determined using a murine median lethal dose (LD50) assay. In vitro immunological assays (ELISAs and immunoblotting) and an established preclinical murine in vivo neutralisation assay (median effective dose [ED50]) were used to assess the immunoglobulin-binding and venom-neutralising efficacies of the test antivenoms. In vitro assays revealed high venom-binding titres of SAIMR polyvalent, AFRIVEN and PANAF-PremiumTM, and reactivity to a wide range of venom proteins across the different snake venoms. Contrastingly, InoserpTM antivenom had low binding titres and poor reactivity to the snake venom proteins. These findings were aligned with the in vivo results, where SAIMR polyvalent, AFRIVEN and PANAF-PremiumTM showed potent venom-neutralising efficacies against all the tested snake venoms, while InoserpTM had low potency and failed to neutralise the lethal effects of N. ashei, N. pallida and D. polylepis venoms at the manufacture-claimed doses. Based on these robust preclinical results, we conclude that SAIMR polyvalent, AFRIVEN and PANAF-PremiumTM antivenoms offer considerable potential for the treatment of envenoming by diverse medically important snakes in Kenya. The observed deficiencies with the InoserpTM product highlight the importance of (i) robust, independent preclinical antivenom efficacy testing and (ii) the value of establishing a quality control laboratory to inform local regulatory and procurement decision making. Full article
(This article belongs to the Special Issue Venoms and Drugs)
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24 pages, 16659 KB  
Article
AMPEC4: Naja ashei Venom-Derived Peptide as a Stimulator of Fibroblast Migration with Antibacterial Activity
by Ewa Ciszkowicz, Anna Miłoś, Andrzej Łyskowski, Justyna Buczkowicz, Anna Nieczaj, Katarzyna Lecka-Szlachta, Konrad K. Hus, Karol Sikora, Damian Neubauer, Marta Bauer, Wojciech Kamysz and Aleksandra Bocian
Molecules 2025, 30(10), 2167; https://doi.org/10.3390/molecules30102167 - 15 May 2025
Cited by 4 | Viewed by 1974
Abstract
The treatment of proctological conditions, including hemorrhoids, anal fissures, and perianal abscesses, is often complicated by bacterial infections, particularly those involving multidrug-resistant Escherichia coli. This study presents the synthesis, characterization, and biological evaluation of the newly designed synthetic peptide AMPEC4, inspired by [...] Read more.
The treatment of proctological conditions, including hemorrhoids, anal fissures, and perianal abscesses, is often complicated by bacterial infections, particularly those involving multidrug-resistant Escherichia coli. This study presents the synthesis, characterization, and biological evaluation of the newly designed synthetic peptide AMPEC4, inspired by cytotoxin 5 from Naja ashei snake venom. AMPEC4 demonstrated potent antimicrobial properties with MIC values of 100 and 200 µg/mL, effectively inhibiting biofilm formation (up to 84%) and eradicating the pre-formed biofilm by up to 35%. The antibacterial activity of AMPEC4 was further supported by a membrane permeabilization assay, demonstrating its capacity to disrupt bacterial membrane integrity in a dose-dependent manner. Furthermore, AMPEC4 significantly promoted fibroblast migration, a critical step in tissue regeneration, while exhibiting notable biocompatibility, as evidenced by the absence of hemolytic, cytotoxic, and genotoxic effects. By addressing both infection control and tissue regeneration, AMPEC4 represents a promising therapeutic strategy for managing chronic wounds, particularly in the challenging environment of the anorectal region. Its ability to target Escherichia coli reference and clinical strains while accelerating the wound-healing process underscores its potential for future clinical applications. Full article
(This article belongs to the Special Issue Research Progress of New Antimicrobial Drugs)
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12 pages, 3101 KB  
Article
Development and Characterization of Anti-Naja ashei Three-Finger Toxins (3FTxs)-Specific Monoclonal Antibodies and Evaluation of Their In Vitro Inhibition Activity
by Ernest Z. Manson, Mutinda C. Kyama, Josephine Kimani, Aleksandra Bocian, Konrad K. Hus, Vladimír Petrilla, Jaroslav Legáth and James H. Kimotho
Toxins 2022, 14(4), 285; https://doi.org/10.3390/toxins14040285 - 16 Apr 2022
Cited by 7 | Viewed by 4515
Abstract
Antivenom immunotherapy is the mainstay of treatment for snakebite envenoming. Most parts of the world affected by snakebite envenoming depend on broad-spectrum polyspecific antivenoms that are known to contain a low content of case-specific efficacious immunoglobulins. Thus, advances in toxin-specific antibodies production hold [...] Read more.
Antivenom immunotherapy is the mainstay of treatment for snakebite envenoming. Most parts of the world affected by snakebite envenoming depend on broad-spectrum polyspecific antivenoms that are known to contain a low content of case-specific efficacious immunoglobulins. Thus, advances in toxin-specific antibodies production hold much promise in future therapeutic strategies of snakebite envenoming. We report anti-3FTxs monoclonal antibodies developed against N. ashei venom in mice. All the three test mAbs (P4G6a, P6D9a, and P6D9b) were found to be IgG antibodies, isotyped as IgG1. SDS-PAGE analysis of the test mAbs showed two major bands at approximately 55 and 29 kDa, suggestive of immunoglobulin heavy and light chain composition, respectively. The immunoaffinity-purified test mAbs demonstrated higher binding efficacy to the target antigen compared to negative control. Similarly, a cocktail of the test mAbs was found to induce a significantly higher inhibition (p-value < 0.0001) compared to two leading commercial brands of antivenoms on the Kenyan market, implying a higher specificity for the target antigen. Both the test mAbs and 3FTxs polyclonal antibodies induced comparable inhibition (p-value = 0.9029). The inhibition induced by the 3FTxs polyclonal antibodies was significantly different from the two antivenoms (p-value < 0.0001). Our results demonstrate the prospects of developing toxin-specific monoclonal-based antivenoms for snakebite immunotherapy. Full article
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13 pages, 1260 KB  
Article
Development of an Inhibition Enzyme-Linked Immunosorbent Assay (ELISA) Prototype for Detecting Cytotoxic Three-Finger Toxins (3FTxs) in African Spitting Cobra Venoms
by Ernest Z. Manson, Kyama C. Mutinda, Joseph K. Gikunju, Aleksandra Bocian, Konrad K. Hus, Vladimír Petrílla, Jaroslav Legáth and James H. Kimotho
Molecules 2022, 27(3), 888; https://doi.org/10.3390/molecules27030888 - 28 Jan 2022
Cited by 8 | Viewed by 5310
Abstract
The administration of toxin-specific therapy in snake envenoming is predicated on improved diagnostic techniques capable of detecting specific venom toxins. Various serological tests have been used in detecting snakebite envenoming. Comparatively, enzyme-linked immunosorbent assay (ELISA) has been shown to offer a wider practical [...] Read more.
The administration of toxin-specific therapy in snake envenoming is predicated on improved diagnostic techniques capable of detecting specific venom toxins. Various serological tests have been used in detecting snakebite envenoming. Comparatively, enzyme-linked immunosorbent assay (ELISA) has been shown to offer a wider practical application. We report an inhibition ELISA for detecting three-finger toxin (3FTx) proteins in venoms of African spitting cobras. The optimized assay detected 3FTxs in N. ashei (including other Naja sp.) venoms, spiked samples, and venom-challenged mice samples. In venoms of Naja sp., the assay showed inhibition, implying the detection of 3FTxs, but showed little or no inhibition in non-Naja sp. In mice-spiked samples, one-way ANOVA results showed that the observed inhibition was not statistically significant between spiked samples and negative control (p-value = 0.164). Similarly, the observed differences in inhibition between venom-challenged and negative control samples were not statistically significant (p-value = 0.9109). At an LOD of 0.01 µg/mL, the assay was able to confirm the presence of 3FTxs in the samples. Our results show a proof of concept for the use of an inhibition ELISA model as a tool for detecting 3FTxs in the venoms of African spitting cobra snakes. Full article
(This article belongs to the Special Issue Toxins of Natural Origin: From Venom of Animals or Plants)
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22 pages, 2216 KB  
Article
Effects of 3FTx Protein Fraction from Naja ashei Venom on the Model and Native Membranes: Recognition and Implications for the Mechanisms of Toxicity
by Barbara Dyba, Elżbieta Rudolphi-Szydło, Anna Barbasz, Agnieszka Czyżowska, Konrad Kamil Hus, Vladimír Petrilla, Monika Petrillová, Jaroslav Legáth and Aleksandra Bocian
Molecules 2021, 26(8), 2164; https://doi.org/10.3390/molecules26082164 - 9 Apr 2021
Cited by 13 | Viewed by 4882
Abstract
Three-finger toxins are naturally occurring proteins in Elapidae snake venoms. Nowadays, they are gaining popularity because of their therapeutic potential. On the other hand, these proteins may cause undesirable reactions inside the body′s cells. A full assessment of the safety of Naja ashei [...] Read more.
Three-finger toxins are naturally occurring proteins in Elapidae snake venoms. Nowadays, they are gaining popularity because of their therapeutic potential. On the other hand, these proteins may cause undesirable reactions inside the body′s cells. A full assessment of the safety of Naja ashei venom components for human cell application is still unknown. The aim of the study was to determine the effect of the exogenous application of three-finger toxins on the cells of monocytes (U-937) and promyelocytes (HL-60), with particular emphasis on the modification of their membranes under the influence of various doses of 3FTx protein fraction (0–120 ng/mL). The fraction exhibiting the highest proportion of 3FTx proteins after size exclusion chromatography (SEC) separation was used in the experiments. The structural response of cell membranes was described on the basis of single-component and multi-component Langmuir monolayers that mimicked the native membranes. The results show that the mechanism of protein–lipid interactions depends on both the presence of lipid polar parts (especially zwitterionic type of lipids) and the degree of membrane saturation (the greatest-for unsaturated lipids). The biochemical indicators reflecting the tested cells (MDA, LDH, cell survival, induction of inflammation, LD50) proved the results that were obtained for the model. Full article
(This article belongs to the Section Chemical Biology)
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12 pages, 1388 KB  
Article
Different Research Approaches in Unraveling the Venom Proteome of Naja ashei
by Konrad Kamil Hus, Łukasz Marczak, Vladimír Petrilla, Monika Petrillová, Jaroslav Legáth and Aleksandra Bocian
Biomolecules 2020, 10(9), 1282; https://doi.org/10.3390/biom10091282 - 5 Sep 2020
Cited by 12 | Viewed by 4436
Abstract
The dynamic development of venomics in recent years has resulted in a significant increase in publicly available proteomic data. The information contained therein is often used for comparisons between different datasets and to draw biological conclusions therefrom. In this article, we aimed to [...] Read more.
The dynamic development of venomics in recent years has resulted in a significant increase in publicly available proteomic data. The information contained therein is often used for comparisons between different datasets and to draw biological conclusions therefrom. In this article, we aimed to show the possible differences that can arise, in the final results of the proteomic experiment, while using different research workflows. We applied two software solutions (PeptideShaker and MaxQuant) to process data from shotgun LC-MS/MS analysis of Naja ashei venom and collate it with the previous report concerning this species. We were able to provide new information regarding the protein composition of this venom but also present the qualitative and quantitative limitations of currently used proteomic methods. Moreover, we reported a rapid and straightforward technique for the separation of the fraction of proteins from the three-finger toxin family. Our results underline the necessary caution in the interpretation of data based on a comparative analysis of data derived from different studies. Full article
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9 pages, 381 KB  
Communication
Comparison of Methods for Measuring Protein Concentration in Venom Samples
by Aleksandra Bocian, Sonja Sławek, Marcin Jaromin, Konrad K. Hus, Justyna Buczkowicz, Dawid Łysiak, Vladimir Petrílla, Monika Petrillova and Jaroslav Legáth
Animals 2020, 10(3), 448; https://doi.org/10.3390/ani10030448 - 8 Mar 2020
Cited by 20 | Viewed by 18634
Abstract
Snake venom is an extremely interesting natural mixture of proteins and peptides, characterized by both high diversity and high pharmacological potential. Much attention has been paid to the study of venom composition of different species and also detailed analysis of the properties of [...] Read more.
Snake venom is an extremely interesting natural mixture of proteins and peptides, characterized by both high diversity and high pharmacological potential. Much attention has been paid to the study of venom composition of different species and also detailed analysis of the properties of individual components. Since proteins and peptides are the active ingredients in venom, rapidly developing proteomic techniques are used to analyze them. During such analyses, one of the routine operations is to measure the protein concentration in the sample. The aim of this study was to compare five methods used to measure protein content in venoms of two snake species: the Viperids representative, Agkistrodon contortrix, and the Elapids representative, Naja ashei. The study showed that for A. contortrix venom, the concentration of venom protein measured by four methods is very similar and only the NanoDrop method clearly stands out from the rest. However, in the case of N. ashei venom, each technique yields significantly different results. We hope that this report will help to draw attention to the problem of measuring protein concentration, especially in such a complex mixture as animal venoms. Full article
(This article belongs to the Special Issue Animal Proteomics)
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19 pages, 4725 KB  
Article
Antimicrobial Activity of Protein Fraction from Naja ashei Venom against Staphylococcus epidermidis
by Aleksandra Bocian, Ewa Ciszkowicz, Konrad K. Hus, Justyna Buczkowicz, Katarzyna Lecka-Szlachta, Monika Pietrowska, Vladimír Petrilla, Monika Petrillova, Ľubomír Legáth and Jaroslav Legáth
Molecules 2020, 25(2), 293; https://doi.org/10.3390/molecules25020293 - 10 Jan 2020
Cited by 30 | Viewed by 7303
Abstract
One of the key problems of modern infectious disease medicine is the growing number of drug-resistant and multi-drug-resistant bacterial strains. For this reason, many studies are devoted to the search for highly active antimicrobial substances that could be used in therapy against bacterial [...] Read more.
One of the key problems of modern infectious disease medicine is the growing number of drug-resistant and multi-drug-resistant bacterial strains. For this reason, many studies are devoted to the search for highly active antimicrobial substances that could be used in therapy against bacterial infections. As it turns out, snake venoms are a rich source of proteins that exert a strong antibacterial effect, and therefore they have become an interesting research material. We analyzed Naja ashei venom for such antibacterial properties, and we found that a specific composition of proteins can act to eliminate individual bacterial cells, as well as the entire biofilm of Staphylococcus epidermidis. In general, we used ion exchange chromatography (IEX) to obtain 10 protein fractions with different levels of complexity, which were then tested against certified and clinical strains of S. epidermidis. One of the fractions (F2) showed exceptional antimicrobial effects both alone and in combination with antibiotics. The protein composition of the obtained fractions was determined using mass spectrometry techniques, indicating a high proportion of phospholipases A2, three-finger toxins, and L-amino acids oxidases in F2 fraction, which are most likely responsible for the unique properties of this fraction. Moreover, we were able to identify a new group of low abundant proteins containing the Ig-like domain that have not been previously described in snake venoms. Full article
(This article belongs to the Special Issue Antimicrobial Properties of Natural Products)
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10 pages, 913 KB  
Communication
First Look at the Venom of Naja ashei
by Konrad Kamil Hus, Justyna Buczkowicz, Vladimír Petrilla, Monika Petrillová, Andrzej Łyskowski, Jaroslav Legáth and Aleksandra Bocian
Molecules 2018, 23(3), 609; https://doi.org/10.3390/molecules23030609 - 8 Mar 2018
Cited by 34 | Viewed by 7266
Abstract
Naja ashei is an African spitting cobra species closely related to N. mossambica and N. nigricollis. It is known that the venom of N. ashei, like that of other African spitting cobras, mainly has cytotoxic effects, however data about its specific [...] Read more.
Naja ashei is an African spitting cobra species closely related to N. mossambica and N. nigricollis. It is known that the venom of N. ashei, like that of other African spitting cobras, mainly has cytotoxic effects, however data about its specific protein composition are not yet available. Thus, an attempt was made to determine the venom proteome of N. ashei with the use of 2-D electrophoresis and MALDI ToF/ToF (Matrix-Assisted Laser Desorption/Ionization Time of Flight) mass spectrometry techniques. Our investigation revealed that the main components of analysed venom are 3FTxs (Three-Finger Toxins) and PLA2s (Phospholipases A2). Additionally the presence of cysteine-rich venom proteins, 5′-nucleotidase and metalloproteinases has also been confirmed. The most interesting fact derived from this study is that the venom of N. ashei includes proteins not described previously in other African spitting cobras—cobra venom factor and venom nerve growth factor. To our knowledge, there are currently no other reports concerning this venom composition and we believe that our results will significantly increase interest in research of this species. Full article
(This article belongs to the Special Issue Analysis of Peptides and Proteins by Electrophoretic Techniques)
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