Nanoengineered therapeutics for snakebite envenoming: Integrating recombinant antivenoms, targeted nanocarriers, nanobodies, toxin inhibitors, and translational challenges
Abubakar Sadiq Abdullahi, Shu’aibu Iliyasu, Auwal Zakariya, Masud Lawal
Usmanu Danfodiyo University
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摘要与影响
Snakebite envenoming remains one of the most devastating neglected tropical diseases, causing an estimated 81,000–138,000 deaths and over 400,000 permanent disabilities annually, predominantly among rural populations in low- and middle-income countries. Despite the life-saving efficacy of conventional plasma-derived antivenoms, their therapeutic effect is often compromised by limited tissue penetration, delayed neutralization kinetics, immunogenicity, batch-to-batch variability, cold-chain dependence, and narrow species specificity. Recent advances in recombinant biologics, nanobody engineering, small-molecule toxin inhibitors, and nanomedicine formulation science are transforming the therapeutic landscape. However, the evidence base remains fragmented, and the field lacks a unified conceptual framework for integrating these modalities into clinically translatable multifunctional platforms. This review evaluates emerging nanoengineered therapeutic strategies for snakebite envenoming within a translational roadmap. The review examines the molecular basis of venom pathophysiology as a foundation for targeted intervention, evaluate the evolution from conventional to recombinant antivenoms, and analyze how nanocarrier technologies can overcome pharmacokinetic and biodistribution limitations of next-generation biologics. The review also analyzed nanobodies, small-molecule inhibitors, and their potential for nanoformulation-enhanced delivery, before proposing an integrated therapeutic paradigm that combines rapid toxin suppression, specific antibody neutralization, and targeted transport within stimuli-responsive nanoplatforms. The review also addresses the biological evaluation methodologies, manufacturing scale-up, regulatory harmonization, and future research priorities necessary to advance these innovations from bench to bedside.
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生物医学Venomous Animal Envenomation and Studies
Healthcare and Venom Research · Ion channel regulation and function
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