ArticleBiomolecules2024
Scorpion Venom Antimicrobial Peptide Derivative BmKn2-T5 Inhibits Enterovirus 71 in the Early Stages of the Viral Life Cycle
Article in Biomolecules, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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The trial behind it
Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
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Who cites it
11 citing papers in PubMed.
- Scorpion Peptides in Antiviral Drug Discovery: An In-depth Review.Probiotics and antimicrobial proteins · 2026Review
- Antibacterial Activity of a New Modified Peptide Lep5 R8-18, Derived From Scorpion Hemiscorpius lepturus Venom.Probiotics and antimicrobial proteins · 2026Article
- The Venom Revolution in Biomedicine: Unlocking Nature's Toxin Toolkit for Therapeutic Innovation.Toxicology reports · 2026Review
- Scorpion venom as a molecular treasure: emerging bioactive compounds and translational therapeutic insights.Archives of toxicology · 2026Review
- Peptides derived from exocrine secretions of venomous animals used as traditional Chinese "worm" medicines.Zoological research · 2026Review
- Review
- Antiviral candidates for enterovirus 71: targeting viral proteome and stage-specific lifecycle interventions.Virology journal · 2025Review
- Pantinin-Derived Peptides against Veterinary Herpesviruses: Activity and Structural Characterization.ChemMedChem · 2025Article
- Expanding the Antiviral Spectrum of Scorpion-Derived Peptides Against Toscana Virus and Schmallenberg Virus.Pathogens (Basel, Switzerland) · 2025Article
- Antimicrobial Peptides: Mechanism, Expressions, and Optimization Strategies.Probiotics and antimicrobial proteins · 2025Review
- Promising therapeutics of enterovirus 71 infection: sunshine behind cloud.Frontiers in pharmacology · 2025Review
Corrections and comments
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Authors and funding
5 authors.
Funding
Abstract
Enterovirus 71 (EV71), a typical representative of unenveloped RNA viruses, is the main pathogenic factor responsible for hand, foot, and mouth disease (HFMD) in infants. This disease seriously threatens the health and lives of humans worldwide, especially in the Asia-Pacific region. Numerous animal antimicrobial peptides have been found with protective functions against viruses, bacteria, fungi, parasites, and other pathogens, but there are few studies on the use of scorpion-derived antimicrobial peptides against unenveloped viruses. Here, we investigated the antiviral activities of scorpion venom antimicrobial peptide BmKn2 and five derivatives, finding that BmKn2 and its derivative BmKn2-T5 exhibit a significant inhibitory effect on EV71. Although both peptides exhibit characteristics typical of amphiphilic α-helices in terms of their secondary structure, BmKn2-T5 displayed lower cellular cytotoxicity than BmKn2. BmKn2-T5 was further found to inhibit EV71 in a dose-dependent manner in vitro. Moreover, time-of-drug-addition experiments showed that BmKn2-T5 mainly restricts EV71, but not its virion or replication, at the early stages of the viral cycle. Interestingly, BmKn2-T5 was also found to suppress the replication of the enveloped viruses DENV, ZIKV, and HSV-1 in the early stages of the viral cycle, which suggests they may share a common early infection step with EV71. Together, the results of our study identified that the scorpion-derived antimicrobial peptide BmKn2-T5 showed valuable antiviral properties against EV71
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Registered trials
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