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Identification and characterization of toxic components of Carybdea brevipedalia venom: implications for understanding box jellyfish (Cnidaria: Cubozoa) envenomation

Authors
Hwang, Du HyeonPrakash, Ramachandran Loganathan MohanAsirvatham, Ravi DevaKang, ChangkeunKim, Euikyung
Issue Date
Oct-2025
Publisher
Springer Verlag
Keywords
Carybdea brevipedalia; Venom; Toxins; Toxicity; Zebrafish; Proteomic analysis
Citation
Archives of Toxicology, v.99, no.10, pp 4263 - 4279
Pages
17
Indexed
SCIE
SCOPUS
Journal Title
Archives of Toxicology
Volume
99
Number
10
Start Page
4263
End Page
4279
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/79443
DOI
10.1007/s00204-025-04117-w
ISSN
0340-5761
1432-0738
Abstract
Jellyfish stings, particularly from cubozoans, pose a significant threat to human health worldwide. However, the major toxins responsible for the clinical symptoms following envenomation by box jellyfish (class Cubozoa) are not well understood. In this study, we investigated the major toxic components of Carybdea brevipedalia venom (CbV) as a representative model of box jellyfish venoms. We identified the key lethal toxin components (CbVLT) from crude CbV. For this, we isolated the toxic components using anion exchange chromatography and fast protein liquid chromatography (FPLC) methods, accompanied by toxicity evaluations. In vitro toxicity assays confirmed the strong cytotoxicity and hemolytic activity of CbVLT. Furthermore, CbVLT exhibited strong lethality in zebrafish, inducing notable hemorrhage and swelling, significant lactate dehydrogenase (LDH) activity, and fatal histopathological changes in vital organs (brain, gills, and heart). These results indicated that CbVLT contains the key lethal toxins in the venom. Subsequently, LC-MS/MS analysis identified 8 toxin homologs in CbVLT, including potassium channel toxins, cytolysins, hemolysins, proteases, and hydrolases. These toxins are responsible for the severe local and systemic reactions and even death caused by C. brevipedalia stings. These findings uncover and characterize the key lethal toxins in CbV, which will help reveal the molecular mechanisms of the venom's lethality and significantly aid in developing therapeutic strategies to treat stings from the cubozoa jellyfish in the future.
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학과간협동과정 > 수의생명공학과 > Journal Articles
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