A Synthetic, Small Molecule, Allosteric Inhibitor of Human Factor XIa for Thrombosis

Only a handful of anticoagulants have reached the clinic to treat and prevent thrombotic episodes in the millions of patients suffering from cardiovascular, cancer, viral (COVID-19) and metabolic diseases. In this work, we report the discovery, chemical synthesis, mechanistic biochemistry, pharmacology, and toxicology of SB-01, a novel, allosteric, human factor XIa (FXIa) inhibitor that displays potent antithrombotic activity in preclinical models. SB-01 is a synthetic, highly sulfated, aromatic agent that binds in both anion-binding exosites of hFXIa to induce inhibition of factor IX activation. SB-01 inhibited rodent arterial and venous thrombosis at doses of 6 and 3 mg/kg, respectively. Additionally, a twice-a-day regimen of 6 mg/kg SB-01 was significantly more effective (p<0.001) in preventing deep vein thrombosis in animals with lung cancer. Michaelis-Menten kinetics and competition with unfractionated heparin and polyphosphate revealed SB-01 to be an allosteric inhibitor. Critically, at the effective dose of 6 mg/kg, SB-01 did not significantly increase mouse tail bleeding time or blood loss. Further, SB-01's anticoagulation could be readily reversed with protamine sulfate, the FDA-approved antidote for heparin. Finally, SB-01 showed no major adverse effects across multiple toxicological assays including gross, cardiac, metabolic, hematological, and clinical chemistry. Overall, this work presents a structurally and functionally unique, allosteric small molecule as a highly promising candidate for safer anticoagulation.

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Publication Details

Journal
Blood Advances
Published
2026-09-18
DOI
https://doi.org/10.1182/bloodadvances.2026019983
Primary Topic
Coagulation, Bradykinin, Polyphosphates, and Angioedema
Type
article
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article

A Synthetic, Small Molecule, Allosteric Inhibitor of Human Factor XIa for Thrombosis

Rawan Fayyad, Bhaumik B. Patel, Bharath Kumar Villuri, Umesh R. Desai et al.
Blood Advances
Coagulation, Bradykinin, Polyphosphates, and Angioedema
article

A Synthetic, Small Molecule, Allosteric Inhibitor of Human Factor XIa for Thrombosis

Rawan Fayyad, Bhaumik B. Patel, Bharath Kumar Villuri, Umesh R. Desai, Chiranjeev Sharma, Daniel K. Afosah, Masahiro Sakagami, Rama Gunta, Nirav Dhanesha, Priyanka Mishra, Nehru Viji Sankaranarayanan, Sridhar Iyer, Nilesh Pandey, Erika Martin, Elsamani Abdelfadiel, Andrew K Hadsdy
article en

Abstract

Only a handful of anticoagulants have reached the clinic to treat and prevent thrombotic episodes in the millions of patients suffering from cardiovascular, cancer, viral (COVID-19) and metabolic diseases. In this work, we report the discovery, chemical synthesis, mechanistic biochemistry, pharmacology, and toxicology of SB-01, a novel, allosteric, human factor XIa (FXIa) inhibitor that displays potent antithrombotic activity in preclinical models. SB-01 is a synthetic, highly sulfated, aromatic agent that binds in both anion-binding exosites of hFXIa to induce inhibition of factor IX activation. SB-01 inhibited rodent arterial and venous thrombosis at doses of 6 and 3 mg/kg, respectively. Additionally, a twice-a-day regimen of 6 mg/kg SB-01 was significantly more effective (p<0.001) in preventing deep vein thrombosis in animals with lung cancer. Michaelis-Menten kinetics and competition with unfractionated heparin and polyphosphate revealed SB-01 to be an allosteric inhibitor. Critically, at the effective dose of 6 mg/kg, SB-01 did not significantly increase mouse tail bleeding time or blood loss. Further, SB-01's anticoagulation could be readily reversed with protamine sulfate, the FDA-approved antidote for heparin. Finally, SB-01 showed no major adverse effects across multiple toxicological assays including gross, cardiac, metabolic, hematological, and clinical chemistry. Overall, this work presents a structurally and functionally unique, allosteric small molecule as a highly promising candidate for safer anticoagulation.

Blood Advances
Virginia Commonwealth University (US), Hunter Holmes McGuire VA Medical Center (US), Atotech (United States) (US), Virginia Commonwealth University Medical Center (US), Louisiana State University Health Sciences Center Shreveport (US)
Good health and well-being
Openalex Percentile: Top 11%
Coagulation, Bradykinin, Polyphosphates, and Angioedema
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