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Updated: Sep 27, 2026

Aptamer-Based Target Detection Facilitated by a 3-Stage G-Quadruplex Isothermal Exponential Amplification Reaction
Published on: October 6, 2022
Selective Thrombin Modulation by AYA1809002: Stability and On-Demand Reversal of an Exosite I-Targeting Aptamer
Mohamad Ammar Ayass1, Natalya Griko1, Victor Pashkov1
1Ayass Bioscience LLC, 8501 Wade Blvd, Bldg 9, Frisco, TX 75034, USA.
Abstract:
Background: Thrombin is a central mediator of coagulation and platelet activation and a key anticoagulant target. Direct thrombin inhibitors broadly suppress thrombin proteolytic activity, potentially disrupting procoagulant and anticoagulant signaling. Exosite-targeting aptamers may enable selective modulation and programmable reversal. Methods: We characterize AYA1809002, a 40-nt DNA aptamer targeting thrombin Exosite I. Results: AYA1809002 bound thrombin with nanomolar affinity and inhibited fibrin formation with an IC50 of 25.7 nM and Ki of 10.6 nM. Reduced γ-thrombin binding supported an Exosite I-dependent mechanism. AYA1809002 preserved thrombin activity toward small peptide substrates and thrombomodulin-dependent protein C activation. It showed no measurable activity against tested coagulation, anticoagulant, fibrinolytic, and control enzymes and inhibited thrombin-mediated platelet activation while preserving responses to non-thrombin agonists. AYA1809002 showed greater functional stability than thrombin-binding aptamer NU172 following serum exposure and remained active under thermal, pH, oxidative, and photostability stress. Anticoagulant activity was rapidly and sequence-specifically reversed by a reverse-complement oligonucleotide, while lipid conjugation preserved function. AYA1809002 also retained high-affinity binding to rat thrombin and anticoagulant activity in rat plasma. Conclusions: These findings identify AYA1809002 as a selective, stable, reversible Exosite I-targeting thrombin aptamer that suppresses key procoagulant functions while preserving thrombomodulin-dependent protein C activation.
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