Literature DB >> 11159525

Aberrant fibrin formation and cross-linking of fibrinogen Nieuwegein, a variant with a shortened Aalpha-chain, alters endothelial capillary tube formation.

A Collen1, A Maas, T Kooistra, F Lupu, J Grimbergen, F J Haas, D H Biesma, P Koolwijk, J Koopman, V W van Hinsbergh.   

Abstract

A congenital dysfibrinogenemia, fibrinogen(Nieuwegein), was discovered in a young man without any thromboembolic complications or bleeding. A homozygous insertion of a single nucleotide (C) in codon Aalpha 453 (Pro) introduced a stop codon at position 454, which resulted in the deletion of the carboxyl-terminal segment Aalpha 454-610. The ensuing unpaired cysteine at Aalpha 442 generated fibrinogen-albumin complexes of different molecular weights. The molecular abnormalities of fibrinogen(Nieuwegein) led to a delayed clotting and a fibrin network with a low turbidity. Electron microscopy confirmed that thin fibrin bundles were organized in a fine network. The use of fibrinogen(Nieuwegein)-derived fibrin (fibrin(Nieuwegein)) in an in vitro angiogenesis model resulted in a strong reduction of tube formation. The ingrowth of human microvascular endothelial cells (hMVEC) was independent of alpha(v)beta(3), indicating that the reduced ingrowth is not due to the absence of the RGD-adhesion site at position Aalpha 572-574. Rather, the altered structure of fibrin(Nieuwegein) is the cause, since partial normalization of the fibrin network by lowering the pH during polymerization resulted in an increased tube formation. Whereas factor XIIIa further decreased the ingrowth of hMVEC in fibrin(Nieuwegein), tissue transglutaminase (TG), which is released in areas of vessel injury, did not. This is in line with the absence of the cross-linking site for TG in the alpha-chains of fibrinogen(Nieuwegein). In conclusion, this newly discovered congenital dysfibrinogenemia has a delayed clotting time and leads to the formation of an altered fibrin structure, which could not be cross-linked by TG and which is less supportive for ingrowth of endothelial cells.

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Year:  2001        PMID: 11159525     DOI: 10.1182/blood.v97.4.973

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  6 in total

1.  Implantation of fibrin gel on mouse lung to study lung-specific angiogenesis.

Authors:  Tadanori Mammoto; Akiko Mammoto
Journal:  J Vis Exp       Date:  2014-12-21       Impact factor: 1.355

2.  Hypofibrinogenemia with preserved hemostasis and protection from thrombosis in mice with an Fga truncation mutation.

Authors:  Woosuk S Hur; David S Paul; Emma G Bouck; Oscar A Negrón; Jean-Marie Mwiza; Lauren G Poole; Holly M Cline-Fedewa; Emily G Clark; Lih Jiin Juang; Jerry Leung; Christian J Kastrup; Tatiana P Ugarova; Alisa S Wolberg; James P Luyendyk; Wolfgang Bergmeier; Matthew J Flick
Journal:  Blood       Date:  2022-03-03       Impact factor: 22.113

3.  Plasma Fibrin Clot Properties as Determinants of Bleeding Time in Human Subjects: Association with Histidine-Rich Glycoprotein.

Authors:  Konstanty Szułdrzyński; Miłosz Jankowski; Daniel P Potaczek; Anetta Undas
Journal:  Dis Markers       Date:  2020-01-25       Impact factor: 3.434

Review 4.  Human Fibrinogen: Molecular and Genetic Aspects of Congenital Disorders.

Authors:  Giovanni Luca Tiscia; Maurizio Margaglione
Journal:  Int J Mol Sci       Date:  2018-05-29       Impact factor: 5.923

Review 5.  Fibrinogen αC domain: Its importance in physiopathology.

Authors:  Jeannette Soria; Shahsoltan Mirshahi; Sam Qiumars Mirshahi; Remi Varin; Linda L Pritchard; Claudine Soria; Massoud Mirshahi
Journal:  Res Pract Thromb Haemost       Date:  2019-02-15

6.  Single and combined effects of alphavbeta3- and alpha5beta1-integrins on capillary tube formation in a human fibrinous matrix.

Authors:  Nancy Laurens; Marten A Engelse; Clarissa Jungerius; Clemens W Löwik; Victor W M van Hinsbergh; Pieter Koolwijk
Journal:  Angiogenesis       Date:  2009-05-16       Impact factor: 9.596

  6 in total

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