Sociedad Americana de Hirudoterapia

Alternate and Emerging Anticoagulation Strategies for Extracorporeal Membrane Oxygenation: A Scoping Review

Review published in Journal of clinical medicine (2026)

Última actualización: 18 de junio de 2026Revisado por: ASH Editorial Board
Artículo de investigación — revisión de evidenciaReferencia del artículo
Evidence: Narrative reviewDesarrollo de fármacosKumar AP et al. · Journal of clinical medicine, 2026

Abstract

Background: Unfractionated heparin (UFH) remains the standard anticoagulant for extracorporeal membrane oxygenation (ECMO), despite complications, such as heparin resistance, heparin-induced thrombocytopenia, bleeding and variable pharmacokinetics. This has prompted the search for alternative and novel anticoagulation strategies, including pharmacologic agents, circuit modifications, and monitoring approaches. This scoping review aimed to map the breadth and characteristics of evidence on ECMO anticoagulation strategies beyond UFH. Methods: A comprehensive search of peer-reviewed and gray literature was conducted across PubMed, Cochrane, Clinical Trials, WHO Trials Registry, and conference abstracts through manual searches in key journals. Clinical, pre-clinical, and gray literature studies evaluating pharmacologic agents, anticoagulation-free or heparin-sparing, biocompatible circuits, and monitoring innovations were included. Data were charted and synthesized descriptively to identify trends, gaps, and emerging directions. Results: A total of 269 records were included. Evidence was highly heterogeneous among study designs, populations, ECMO modalities, and outcome definitions. Most clinical studies were retrospective cohorts and adult-centered, with limited multicenter randomized controlled trials and underrepresentation of neonatal and pediatric populations. Direct thrombin inhibitors were frequently studied and clinically implemented alternatives to UFH. Other agents, including nafamostat mesylate, prostaglandin E1, and factor pathway inhibitors remain early in clinical investigation. Anticoagulation-free strategies and biocompatible circuit technologies were mostly supported through pre-clinical and single-center studies. Monitoring and modeling innovations, like TEG, ROTEM, real-time imaging, and machine learning, are quickly emerging. Conclusions: ECMO anticoagulation is transitioning from UFH reliance toward diversified and personalized strategies. Future research should prioritize multicenter randomized controlled trials, standardize protocols, expand to neonatal and pediatric investigation, and integrate strategies.

Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.

Publication typeJournal ArticleReview

Resumen

Alternate and Emerging Anticoagulation Strategies for Extracorporeal Membrane Oxygenation: A Scoping Review.

Por qué esto importa para la hirudoterapia

Esta revisión de alcance mapeó 269 registros sobre estrategias de anticoagulación en ECMO más allá de UFH, encontrando que los ITD fueron alternativas frecuentemente estudiadas e implementadas clínicamente, mientras que otros agentes (mesilato de nafamostat, prostaglandina E1, inhibidores de la vía del factor) y las tecnologías de circuitos biocompatibles permanecen en etapas más tempranas de desarrollo. La evidencia fue en gran parte retrospectiva, centrada en adultos, y limitada en poblaciones pediátricas y neonatales. No existe ninguna conexión defendible con la hirudoterapia o el secretoma de la sanguijuela a partir de este resumen, que no menciona bivalirudina, hirudina, sanguijuelas ni ningún compuesto derivado de sanguijuela. La revisión aborda únicamente estrategias de anticoagulación farmacéuticas y tecnológicas en ECMO, y la relevancia con el dominio de ASH es inexistente basándose solamente en el resumen.

Citación

Alternate and Emerging Anticoagulation Strategies for Extracorporeal Membrane Oxygenation: A Scoping Review

Kumar AP et al. · Journal of clinical medicine, 2026

Contexto clínico relacionado

Añadido a la biblioteca ASH: May 27, 2026 · Última actualización del sitio: 18 de junio de 2026

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