Literature DB >> 11030529

Thromboelastograph assay for measuring the mechanical strength of fibrin sealant clots.

P F Glidden1, C Malaska, S W Herring.   

Abstract

In order to provide sustained hemostasis or tissue sealing, fibrin sealants must generate adhesive clots with mechanical properties capable of resisting forces, such as shear, that might break or tear the clot. Commercial preparations of fibrin sealants should generate clots of adequate and consistent mechanical strength. The mechanical strength of fibrin sealants is often measured as bonding strength in in vivo or ex vivo animal wound models. These tests can be useful predictors of clinical efficacy. However, these, as well as many in vitro tensile strength tests for fibrin sealant, tend to be laboratory specific and require extensive reagent preparation time and analyst training. The thromboelastograph has historically been used to screen for plasma protein and platelet disorders that lead to defective clot formation. The authors have developed a simple in vitro test, using a standard thromboelastograph that can provide reliable, reproducible information on the rheology of clots generated by fibrin sealant preparations. Using this method, the shear strength of fibrin sealant clots was measured and shown to correlate with the fibrinogen, but not the thrombin, concentration in the sealant. Shear strength was also shown to correlate with the sealant concentration of the fibrin cross-linking proenzyme, factor XIII. Sealants containing lysine, which can act as an alternate substrate for factor XIII enzyme and prevent efficient fibrin chain cross-linking, were shown by this method to generate clots of substantially reduced shear strength. The method distinguished between thrombin-catalyzed clot formation and other fibrinogen clotting mechanisms as evidenced by the significantly lower shear strength associated with batroxobin-generated fibrin clots.

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Year:  2000        PMID: 11030529     DOI: 10.1177/107602960000600408

Source DB:  PubMed          Journal:  Clin Appl Thromb Hemost        ISSN: 1076-0296            Impact factor:   2.389


  7 in total

1.  Studies on the basis for the properties of fibrin produced from fibrinogen-containing gamma' chains.

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2.  Host-guest composites for induced hemostasis and therapeutic healing in traumatic injuries.

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3.  Development of in situ-forming hydrogels for hemorrhage control.

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4.  Coagulation-induced resistance to fluid flow in small-diameter vascular grafts and graft mimics measured by purging pressure.

Authors:  Michael D Nichols; Rewa Choudhary; Santhisri Kodali; William M Reichert
Journal:  J Biomed Mater Res B Appl Biomater       Date:  2013-11       Impact factor: 3.368

5.  Evaluation of hemostatic changes using n thromboelastography after crystalloid or colloid fluid administration during major orthopedic surgery.

Authors:  I Topçu; M Civi; T Oztürk; G T Keleş; S Coban; E A Yentür; G Okçu
Journal:  Braz J Med Biol Res       Date:  2012-06-06       Impact factor: 2.590

6.  The clot thickens: Autologous and allogeneic fibrin sealants are mechanically equivalent in an ex vivo model of cartilage repair.

Authors:  Rebecca M Irwin; Lawrence J Bonassar; Itai Cohen; Andrea M Matuska; Jacqueline Commins; Brian Cole; Lisa A Fortier
Journal:  PLoS One       Date:  2019-11-08       Impact factor: 3.240

7.  The Use of Thromboelastography to Measure the Influence Inclusion of a Local Anesthetic Agent has on the Mechanical and Kinetic Properties of Fibrin.

Authors:  Laura Kearney; Derek Whelan; Brian D O'Donnell; Anthony J P Clover
Journal:  J Nat Sci Biol Med       Date:  2018 Jan-Jun
  7 in total

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