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Botulinum neurotoxins (BoNTs), produced by , are the most toxic substances known. However, the number of currently approved medical countermeasures for these toxins is very limited. Therefore, studies on therapeutic antitoxins are essential to prepare for toxin-related emergencies. Currently, more than 10,000 Halla horses, a crossbreed between the native Jeju and Thoroughbred horses, are being raised in Jeju Island of Korea. They can be used for equine antitoxin experiments and production of hyperimmune serum against BoNT/A1. Instead of the inactivated BoNT/A1 toxoid, Halla horse was immunized with the receptor-binding domain present in the C-terminus of heavy chain of BoNT/A1 (BoNT/A1-HCR) expressed in . The anti-BoNT/A1-HCR antibody titer increased rapidly by week 4, and this level was maintained for several weeks after boosting immunization. Notably, 20 μL of the week 24 BoNT/A1-HCR(-immunized) equine serum showed an in vitro neutralizing activity of over 8 international unit (IU) of a reference equine antitoxin. Furthermore, 20 μL of equine serum and 100 μg of purified equine F(ab') showed 100% neutralization of 10,000 LD in vivo. The results of this study shall contribute towards optimizing antitoxin production for BoNT/A1, which is essential for emergency preparedness and response.
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http://dx.doi.org/10.4014/jmb.1904.04027 | DOI Listing |
Toxicon
October 2025
Laboratório de Proteômica e Aracnídeos-Fundação Ezequiel Dias, Brazil. Electronic address:
The antivenom plays a crucial role in the targeted treatment of snakebite envenomation and it is produced from pools of venoms, whose composition can be influenced by factors such as diet, sexual dimorphism, ontogeny, mutations, and geographical distribution. This study aimed to compare the compositions of venom pools used in antivenom production. Three distinct pools of venoms from Crotalus durissus snakes, employed in horse immunization, were analyzed using a multifaceted approach, including liquid chromatography, enzymology, immunology, and proteomic analysis.
View Article and Find Full Text PDFNat Med
August 2025
Department of Emergency Surgery, Peking University People's Hospital, Beijing, China.
Tetanus remains an important global public health concern. Currently, the only recommended passive immunization therapy for tetanus prophylaxis is plasma-derived human tetanus immunoglobulin (HTIG), which faces a global supply shortage and can transmit infectious pathogens. Despite not being endorsed by WHO due to safety concerns, equine tetanus antitoxin remains widely used in some countries.
View Article and Find Full Text PDFToxicon
August 2025
Graduate Program in Animal Science, University of Brasília, Brasilia, Brazil; Veterinary Pathology and Forensic Laboratory, University of Brasília, Brasília, Brazil. Electronic address:
This report describes the first documented case of intracerebral hemorrhage (ICH) in a horse following Bothrops snakebite envenomation. A 3-year-old mare developed acute kidney injury, systemic hemorrhage, and neurological signs before euthanasia. Postmortem findings confirmed massive ICH with intralesional venom identified by immunohistochemistry.
View Article and Find Full Text PDFJ Med Toxicol
July 2025
Banner-University Medical Center Phoenix, 1111 E. McDowell Rd, Phoenix, AZ, 85003, USA.
Background: Evidence regarding acute hypersensitivity reactions (AHRs) to the snakebite antivenoms Crotalidae Polyvalent Immune Fab (ovine) (Fab) and Crotalidae Immune F(ab') (equine) (Fab2) supports no differences. However, larger studies may not account for geographic differences. Recent data suggest a correlation with alpha-gal syndrome (AGS).
View Article and Find Full Text PDFJ Chromatogr B Analyt Technol Biomed Life Sci
June 2025
Jiangxi Institute of Biological Products Co. Ltd., Jiangxi, China; Jiangxi Institute of Biological Products Shenzhen R&D Center Co. Ltd., Shenzhen, China.
Typically, the antigen-specific antibodies constitute a small fraction-often estimated to be around 2-10 %-of the total IgG in the serum after immunization. This low percentage necessitates the use of purification techniques to enrich the antigen-specific antibodies for therapeutic or research purposes. This study introduces an affinity chromatography column using NHS-activated Sepharose as a matrix and the tetanus toxin subunit C, TeNT-Hc-C869A, as a ligand, enabling the purification of polyclonal antibodies with high specificity.
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