Product Name
Hirudin, recombinant, expressed in unspecified host, ≥7,000 ATU/mg protein (ATU = antithrombin units)
recombinant
expressed in unspecified host
form
powder
specific activity
≥7,000 ATU/mg protein (ATU = antithrombin units)
mol wt
~7 kDa
solubility
pyridine: soluble, water: soluble
shipped in
dry ice
storage temp.
−20°C
Quality Level
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General description
The anticoagulant hirudin is a ~7 kDa acidic protein containing 65 amino acid residues. It occurs naturally in leeches (Hirudo medicinalis). It is the most potent natural inhibitor of both soluble and clot-bound thrombin. Hirudin binds thrombin with high affinity and covers more than 20% of the surface area of thrombin, occluding both the active site and exosite I (fibrinogen and PAR recognition site). This coverage blocks thrombus growth and platelet activation. Hirudin is not metabolized in the bloodstream of humans and is eliminated unchanged via kidney filtration. Native hirudin contains a sulfated tyrosyl residue (Tyr63), three disulfide bridges, and a high proportion of dicarboxylic acids. Hirudin is not glycosylated, and lacks tryptophan, arginine, and methionine residues. At least 20 isoforms have been identified and sequenced.
This recombinant hirudin product corresponds to the HV-1 variant sequence, with the exception that the Tyr63 residue is not sulfated.
Application
Antithrombotic efficacy by parenteral route is substantially prolonged by incorporation into cationic liposomes, which act as a sort of sustained-release device.
Preparation Note
Hirudin is soluble in water. The literature cites the use of "Dilution Fluid II" (35.7 mM acetic acid, 35.7 mM sodium diethyl barbiturate, 0.85% NaCl, 1% bovine serum albumin, and 0.5% PEG, pH 7.4) to dissolve hirudin (500 ATU/mL) and thrombin. Hirudin is reported to be soluble in pyridine, but practically insoluble in alcohol, ether, acetone, or benzene.
Analysis Note
Protein determined by Lowry.
Other Notes
One antithrombin unit (ATU) will neutralize one NIH unit of thrombin at 37 °C, based on direct comparison to an NIH thrombin reference standard.
Storage Class
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
dust mask type N95 (US), Eyeshields, Gloves
Regulatory Information
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[The reaction between hirudin and thrombin].
F MARKWARDT et al.
Hoppe-Seyler's Zeitschrift fur physiologische Chemie, 312(1-3), 85-98 (1958-01-01)
Serdar Duzgun et al.
Indian journal of plastic surgery : official publication of the Association of Plastic Surgeons of India, 47(1), 102-108 (2014-07-06)
The effect of recombinant hirudin, which is the most powerful antithrombotic agent, on flaps with venous insufficiency was investigated. Oedema and congestion are frequent on flaps, causing necrosis unpredictably. Venous insufficiency and thrombosis are experimentally and clinically more frequent than
R Bischoff et al.
Biochemistry, 32(2), 725-734 (1993-01-19)
Natural hirudin variant 2 with a lysine residue in position 47 (rHV2-Lys47) was produced in a genetically engineered strain of Saccharomyces cerevisiae as a secreted protein of 65 amino acids and purified to greater than 99% homogeneity. Only reversed-phase high-performance
R C Chambers et al.
The Biochemical journal, 333 ( Pt 1), 121-127 (1998-06-26)
Thrombin is a multifunctional serine protease that has a crucial role in blood coagulation. It is also a potent mesenchymal cell mitogen and chemoattractant and might therefore have an important role in the recruitment and local proliferation of mesenchymal cells
Michael Hultström et al.
Biomedicines, 10(6) (2022-06-25)
Hypercoagulation and endothelial dysfunction play central roles in severe forms of COVID-19 infections, but the molecular mechanisms involved are unclear. Increased plasma levels of the inflammatory cytokine and TIE2 receptor antagonist Angiopoietin-2 were reported in severely ill COVID-19 patients. In
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