Evidence map›Paper›PMID 42194044›Full record

ArticleBiomolecules2026

Functional Aspects of Fibrin Structure Alterations by Tranexamic Acid in the Inhibition of Fibrinolysis.

Kata Balog Virag, Barbara Baráth, Kristóf Molnár, Petra Csikós, Alexandra Raska, László Szabó, Natalia Nikolova, Kiril Tenekedjiev, Krasimir Kolev, Nikolett Wohner

Abstract read
In one paragraph

Article in Biomolecules, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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0citing papers in PubMed
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1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

3 · Its place in the literature

Who cites it

0 citing papers in PubMed.

No citing paper in PubMed yet.

4 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

10 authors.

Kata Balog ViragDepartment of Biochemistry, Institute of Biochemistry and Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.ORCID 0000-0002-2291-0705
Barbara BaráthDepartment of Biochemistry, Institute of Biochemistry and Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.ORCID 0009-0001-0619-4235
Kristóf MolnárDepartment of Biochemistry, Institute of Biochemistry and Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.ORCID 0009-0009-1873-8090
Petra CsikósDepartment of Biochemistry, Institute of Biochemistry and Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.ORCID 0009-0001-3410-7338
Alexandra RaskaDepartment of Biochemistry, Institute of Biochemistry and Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.ORCID 0000-0002-5348-2264
László SzabóPlasma Chemistry Research Group, Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, 1117 Budapest, Hungary.ORCID 0000-0002-2472-5933
Natalia NikolovaDepartment of Mechatronics, Faculty of Engineering, Nikola Vaptsarov Naval Academy, 9002 Varna, Bulgaria.ORCID 0000-0001-6160-6282
Kiril TenekedjievDepartment of Computer Science, Varna Free University "Chernorizets Hrabar", 9007 Varna, Bulgaria.ORCID 0000-0003-3549-0671
Krasimir KolevDepartment of Biochemistry, Institute of Biochemistry and Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.ORCID 0000-0002-5612-004X
Nikolett WohnerDepartment of Biochemistry, Institute of Biochemistry and Molecular Biology, Semmelweis University, 1094 Budapest, Hungary.ORCID 0000-0003-3762-0388

Funding

CELSA CELSA/22/024EU's Horizon 2020 research and innovation program 739593National Research, Development and Innovation Office 152336Semmelweis University TKP2021-EGA-24University of Tasmania/Australian Maritime College RT.112222
6 · The paper itself

Abstract

backgroundTranexamic acid (TXA) is a synthetic lysine analog widely used as an antifibrinolytic agent. Large randomized trials have demonstrated life-saving benefits when TXA is administered early in acute hemorrhage, but results regarding prophylactic administration have been conflicting, and several trials have not shown improved clinical outcomes. The mechanisms underlying this discrepancy remain incompletely understood.

objectivesTo investigate the molecular and structural mechanisms that determine TXA efficacy in purified fibrin clots under conditions mimicking therapeutic versus prophylactic administration.

methodsWe examined fibrinolysis induced by tissue plasminogen activator (tPA) in vitro using confocal microscopy, viscoelastic testing (ClotPro), turbidimetry, and plasmin generation assays at physiologically and therapeutically relevant concentrations of plasminogen and TXA. Scanning electron microscopy (SEM) was employed to assess fibrin structure.

resultsWhen TXA was incorporated into fibrin clots before the addition of tPA, physiological plasminogen concentrations (2.5 µM) reversed the antifibrinolytic effect, resulting in paradoxical acceleration of lysis. By contrast, when clotting and fibrinolysis occurred simultaneously in the presence of TXA and tPA, TXA consistently prolonged lysis time irrespective of plasminogen concentration. SEM demonstrated that TXA, even at concentrations as low as 16 µM, doubled the top-quartile values of the fibrin fiber diameter, altering susceptibility to plasmin-mediated degradation without accelerating plasminogen activation.

conclusionsTXA efficacy is determined not only by dose but also by timing and the plasminogen availability in the clot microenvironment. These findings provide mechanistic insight into the failure of prophylactic TXA administration and highlight the importance of context in optimizing its clinical use.

Indexed as

Antifibrinolytic AgentsFibrinFibrinolysisTranexamic AcidFibrinolysinHumansMicroscopy, Electron, ScanningPlasminogenTissue Plasminogen ActivatorAntifibrinolytic AgentsFibrinFibrinolysinPlasminogenTissue Plasminogen ActivatorTranexamic Acidbleedingfibrinolysisprophylaxistranexamic acid

Identifiers

PMID42194044
PMCPMC13204462

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.