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Crossing the blood–brain barrier (BBB) remains a central obstacle in central nervous system (CNS) therapeutics. Hirudin, a 65-amino acid, disulfide-stabilized, direct thrombin inhibitor with a long history in Traditional Chinese Medicine, has shown compelling efficacy in thrombotic disorders and mounting neuroprotective activity in preclinical stroke models, with supportive clinical signals. Although few studies have directly quantified its BBB permeability, available evidence indicates low but measurable brain exposure under pathological conditions, likely via paracellular leakage rather than receptor-mediated transport. To extend its therapeutic reach in cerebrovascular diseases and mitigate bleeding risk, researchers have engineered hirudin using nanocarrier encapsulation, hydrogel-based delivery systems, prodrug strategies, and other methods to enhance targeting, prolong half-life, and localize activation. These approaches also enable synergistic combinations with established CNS drugs and may facilitate delivery of co-therapeutics to the brain. This review synthesizes current evidence for hirudin in stroke, neurodegeneration, psychiatric disorders, and brain tumors; evaluates its context-dependent BBB access; and outlines a translational agenda centered on quantitative brain pharmacokinetics, pathology-guided targeting, stimulus-responsive formulations, controlled clinical evaluation, and rigorous management of bleeding risk and chemistry, manufacturing, and controls (CMC) readiness.
Sun et al. (Sat,) studied this question.