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2.
PLoS One ; 19(5): e0302830, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38722842

RESUMEN

INTRODUCTION: The risk of major bleeding complications in catheter directed thrombolysis (CDT) for acute limb ischemia (ALI) remains high, with reported major bleeding complication rates in up to 1 in every 10 treated patients. Fibrinogen was the only predictive marker used for bleeding complications in CDT, despite the lack of high quality evidence to support this. Therefore, recent international guidelines recommend against the use of fibrinogen during CDT. However, no alternative biomarkers exist to effectively predict CDT-related bleeding complications. The aim of the POCHET biobank is to prospectively assess the rate and etiology of bleeding complications during CDT and to provide a biobank of blood samples to investigate potential novel biomarkers to predict bleeding complications during CDT. METHODS: The POCHET biobank is a multicentre prospective biobank. After informed consent, all consecutive patients with lower extremity ALI eligible for CDT are included. All patients are treated according to a predefined standard operating procedure which is aligned in all participating centres. Baseline and follow-up data are collected. Prior to CDT and subsequently every six hours, venous blood samples are obtained and stored in the biobank for future analyses. The primary outcome is the occurrence of non-access related major bleeding complications, which is assessed by an independent adjudication committee. Secondary outcomes are non-major bleeding complications and other CDT related complications. Proposed biomarkers to be investigated include fibrinogen, to end the debate on its usefulness, anti-plasmin and D-Dimer. DISCUSSION AND CONCLUSION: The POCHET biobank provides contemporary data and outcomes of patients during CDT for ALI, coupled with their blood samples taken prior and during CDT. Thereby, the POCHET biobank is a real world monitor on biomarkers during CDT, supporting a broad spectrum of future research for the identification of patients at high risk for bleeding complications during CDT and to identify new biomarkers to enhance safety in CDT treatment.


Asunto(s)
Hemorragia , Terapia Trombolítica , Humanos , Hemorragia/etiología , Terapia Trombolítica/efectos adversos , Terapia Trombolítica/métodos , Estudios Prospectivos , Biomarcadores/sangre , Masculino , Femenino , Fibrinógeno/metabolismo , Fibrinógeno/análisis , Enfermedad Arterial Periférica/tratamiento farmacológico , Enfermedad Arterial Periférica/sangre , Anciano , Arteriopatías Oclusivas/tratamiento farmacológico , Arteriopatías Oclusivas/sangre , Persona de Mediana Edad
3.
Blood ; 143(20): 2089-2098, 2024 May 16.
Artículo en Inglés | MEDLINE | ID: mdl-38271661

RESUMEN

ABSTRACT: von Willebrand factor (VWF) is an essential contributor to microvascular thrombosis. Physiological cleavage by ADAMTS13 (a disintegrin and metalloproteinase with a thrombospondin type 1 motif, member 13) limits its prothrombotic properties, explaining why ADAMTS13 deficiency leads to attacks of microthrombosis in patients with thrombotic thrombocytopenic purpura (TTP). We previously reported that plasminogen activation takes place during TTP attacks in these patients. Furthermore, stimulation of plasminogen activation attenuates pathogenesis in preclinical TTP models in vivo. This suggests that plasmin is an endogenous regulator of VWF thrombogenicity, in particular when ADAMTS13 falls short to prevent microvascular occlusions. VWF cleavage by plasmin is biochemically distinct from cleavage by ADAMTS13. We hypothesized that plasmin-cleaved VWF (cVWF) holds value as a biomarker of microvascular thrombosis. Here, we describe the development of a variable domain of heavy-chain-only antibody (VHH)-based bioassay that can distinguish cVWF from intact and ADAMTS13-cleaved VWF in plasma. We validate this assay by tracking cVWF release during degradation of microthombi in vitro. We demonstrate that endogenous cVWF formation takes place in patients with TTP during acute attacks of thrombotic microangiopathy but not in those in remission. Finally, we show that therapeutic plasminogen activation in a mouse model of TTP amplifies cVWF formation, which is accompanied by VWF clearance. Our combined findings indicate that cVWF is released from microthrombi in the context of microvascular occlusion.


Asunto(s)
Biomarcadores , Fibrinolisina , Púrpura Trombocitopénica Trombótica , Factor de von Willebrand , Animales , Femenino , Humanos , Ratones , Proteína ADAMTS13/metabolismo , Proteína ADAMTS13/sangre , Biomarcadores/sangre , Biomarcadores/metabolismo , Fibrinolisina/metabolismo , Púrpura Trombocitopénica Trombótica/metabolismo , Púrpura Trombocitopénica Trombótica/sangre , Púrpura Trombocitopénica Trombótica/diagnóstico , Trombosis/metabolismo , Trombosis/sangre , Trombosis/patología , Microangiopatías Trombóticas/metabolismo , Microangiopatías Trombóticas/sangre , Factor de von Willebrand/metabolismo
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