Funnel web spider venom antiserum 125unit powder for solution for injection vials
Requires a prescription from a doctor or prescriber
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Funnel web spider antivenom 125unit powder for solution for injection vials
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Active and completed clinical studies from ClinicalTrials.gov
Source: ClinicalTrials.gov, a database of the U.S. National Library of Medicine (NLM), National Institutes of Health (NIH). Data accessed via ClinicalTrials.gov API v2. Trial information is provided for research purposes and does not constitute medical advice.
Academic studies and reviews for this medicine's active substance
Showing the 50 most relevant studies.
Reviews & meta-analyses: 7 · 1972–2026
Showing the 50 most relevant studies, sorted by most relevant.
H. Tedford, B. Sollod, F. Maggio, et al.
Toxicon : official journal of the International Society on Toxinology, 2004
M. Adams
Toxicon : official journal of the International Society on Toxinology, 2004
J. Fletcher, Ross Smith, S. O’Donoghue, et al.
Nature Structural Biology, 1997
P. Escoubas, B. Sollod, G. King
Toxicon : official journal of the International Society on Toxinology, 2006
W. S. Skinner, M. Adams, G. B. Quistad, et al.
The Journal of biological chemistry, 1989
G. King, H. Tedford, F. Maggio
Journal of Toxicology: Toxin Reviews, 2002
S. Pineda, Y. Chin, Eivind A. B. Undheim, et al.
Proceedings of the National Academy of Sciences, 2020
M. Adams, V. Bindokas, L. Hasegawa, et al.
The Journal of biological chemistry, 1990
M. Hedin, S. Derkarabetian, M. Ramírez, et al.
Scientific Reports, 2018
Bermúdez-Méndez E, Fuglsang-Madsen A, Føns S, et al.
2018
- Snake Bites
- Spider Venoms
- Snake Venoms
Snakes, scorpions, and spiders are venomous animals that pose a threat to human health, and severe envenomings from the bites or stings of these animals must be treated with antivenom. Current antivenoms are based on plasma-derived immunoglobulins or immunoglobulin fragments from hyper-immunized animals. Although these medicines have been life-saving for more than 120 years, opportunities to improve envenoming therapy exist. In the later decades, new biotechnological tools have been applied with the aim of improving the efficacy, safety, and affordability of antivenoms. Within the avenues explored, novel immunization strategies using synthetic peptide epitopes, recombinant toxins (or toxoids), or DNA strings as immunogens have demonstrated potential for generating antivenoms with high therapeutic antibody titers and broad neutralizing capacity. Furthermore, these approaches circumvent the need for venom in the production process of antivenoms, thereby limiting some of the complications associated with animal captivity and venom collection. Finally, an important benefit of innovative immunization approaches is that they are often compatible with existing antivenom manufacturing setups. In this review, we compile all reported studies examining venom-independent innovative immunization strategies for antivenom development. In addition, a brief description of toxin families of medical relevance found in snake, scorpion, and spider venoms is presented, as well as how biochemical, bioinformatic, and omics tools could aid the development of next-generation antivenoms.
Abstract licence: CC BY
Sources: aggregated from Europe PMC (EMBL-EBI), OpenAlex, Crossref, PubMed and other open scholarly databases. Retracted articles are excluded. Study information is provided for research purposes and does not constitute medical advice.
Scientific data (pharmacology, interactions, ADME) is not yet available for this medicine. Clinical sections are sourced from the NHS dm+d database.