Sociedad Americana de Hirudoterapia

Application of the C3 inhibitor compstatin in a human whole blood model designed for complement research - 20 years of experience and future perspectives

Review published in Semin Immunol (2022)

Última actualización: 18 de junio de 2026Revisado por: ASH Editorial Board
Artículo de investigación — revisión de evidenciaReferencia del artículo
Evidence: Narrative reviewDesarrollo de fármacosMollnes TE et al. · Seminars in immunology, 2022

Abstract

The complex molecular and cellular biological systems that maintain host homeostasis undergo continuous crosstalk. Complement, a component of innate immunity, is one such system. Initially regarded as a system to protect the host from infection, complement has more recently been shown to have numerous other functions, including involvement in embryonic development, tissue modeling, and repair. Furthermore, the complement system plays a major role in the pathophysiology of many diseases. Through interactions with other plasma cascades, including hemostasis, complement activation leads to the broad host-protective response known as thromboinflammation. Most complement research has been limited to reductionistic models of purified components and cells and their interactions in vitro. However, to study the pathophysiology of complement-driven diseases, including the interaction between the complement system and other inflammatory systems, holistic models demonstrating only minimal interference with complement activity are needed. Here we describe two such models; whole blood anticoagulated with either the thrombin inhibitor lepirudin or the fibrin polymerization peptide blocker GPRP, both of which retain complement activity and preserve the ability of complement to be mutually reactive with other inflammatory systems. For instance, to examine the relative roles of C3 and C5 in complement activation, it is possible to compare the effects of the C3 inhibitor compstatin effects to those of inhibitors of C5 and C5aR1. We also discuss how complement is activated by both pathogen-associated molecular patterns, inducing infectious inflammation caused by organisms such as Gram-negative and Gram-positive bacteria, and by sterile damage-associated molecular patterns, including cholesterol crystals and artificial materials used in clinical medicine. When C3 is inhibited, it is important to determine the mechanism by which inflammation is attenuated, i.e., whether the attenuation derives directly from C3 activation products or via downstream activation of C5, since the mechanism involved may determine the appropriate choice of inhibitor under various conditions. With some exceptions, most inflammatory responses are dependent on C5 and C5aR1; one exception is venous air embolism, in which air bubbles enter the blood circulation and trigger a mainly C3-dependent thromboembolism, with the formation of an active C3 convertase, without a corresponding C5 activation. Under such conditions, an inhibitor of C3 is needed to attenuate the inflammation. Our holistic blood models will be useful for further studies of the inhibition of any complement target, not just C3 or C5. The focus here will be on targeting the critical complement component, activation product, or receptor that is important for the pathophysiology in a variety of disease conditions.

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

Publication typeJournal ArticleReview
Indexed MeSH termsHumansInflammationThrombosisComplement System ProteinsComplement ActivationComplement C5Peptides, Cyclic

Resumen

Two-decade review of lepirudin-anticoagulated and GPRP-based whole-blood models for studying complement, thromboinflammation, and crosstalk with hemostasis using compstatin C3 inhibitor.

Por qué esto importa para la hirudoterapia

Este artículo describe modelos de sangre humana total para la investigación del complemento que se anticoagulan con el inhibidor de trombina lepirudina o con el bloqueador de la polimerización de fibrina GPRP, ambos de los cuales preservan la actividad del complemento y su interconexión con otros sistemas inflamatorios. La lepirudina es una forma recombinante de la hirudina, el potente anticoagulante secretado de forma natural por las sanguijuelas medicinales, de modo que este trabajo ilustra cómo un compuesto derivado del secretoma de la sanguijuela sirve como una herramienta crítica habilitante en la investigación inmunológica y de tromboinflamación convencional. Para ASH, demuestra la importancia científica más amplia de los anticoagulantes derivados de sanguijuela más allá de su papel terapéutico tradicional en la hirudoterapia. Una advertencia honesta es que el estudio no versa sobre la terapia con sanguijuelas en sí; la lepirudina funciona aquí como una herramienta anticoagulante en lugar de una intervención bajo investigación, y el enfoque del artículo es la biología del complemento, no los desenlaces de la hirudoterapia.

Citación

Application of the C3 inhibitor compstatin in a human whole blood model designed for complement research - 20 years of experience and future perspectives.

Mollnes TE et al. · Seminars in immunology, 2022

Contexto clínico relacionado

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

Este sitio web proporciona información educativa y no constituye consejo médico, diagnóstico ni recomendaciones de tratamiento. La terapia con sanguijuelas medicinales conlleva riesgos clínicamente significativos y debe ser realizada únicamente por profesionales calificados bajo protocolos aprobados institucionalmente. La autorización 510(k) de la FDA para sanguijuelas medicinales se limita a indicaciones específicas; las discusiones sobre uso investigativo y fuera de indicación se señalan correspondientemente. Para orientación médica específica, consulte a un profesional de salud calificado.