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Proteolytic inactivation of plasma C1- inhibitor in sepsis
J H Nuijens1, A J Eerenberg-Belmer, C C Huijbregts
1Central Laboratory of the Netherlands Red Cross Blood Transfusion Service, Amsterdam.
Insights
Severe sepsis impairs C1 inhibitor (C1-Inh) function, primarily due to inactive C1-Inh (iC1-Inh). Elevated iC1-Inh levels correlate with higher mortality in sepsis patients, suggesting its role in fatal complications.
Area of Science:
- Biochemistry
- Immunology
- Critical Care Medicine
Background:
- Sepsis pathophysiology involves complement and coagulation system activation.
- C1 inhibitor (C1-Inh) regulates both systems.
- Dysregulation of these cascades contributes to sepsis severity.
Purpose of the Study:
- To investigate plasma C1-Inh characteristics in severe sepsis patients.
- To determine the relationship between C1-Inh functional index and sepsis outcomes.
- To assess the prognostic value of inactive C1-Inh (iC1-Inh) in sepsis.
Main Methods:
- Studied plasma C1-Inh in 48 severe sepsis patients and healthy volunteers.
- Assessed functional index (functional/antigenic C1-Inh ratio).
- Quantified inactive C1-Inh (iC1-Inh) and nonfunctional C1-Inh species using SDS-PAGE.
Main Results:
- Sepsis patients showed a significantly reduced functional C1-Inh index.
- Reduced function was primarily due to increased iC1-Inh.
- Elevated iC1-Inh levels were present in 81% of patients and correlated with increased mortality (83% vs. 27%).
Conclusions:
- Cleavage of C1-Inh occurs in severe sepsis, leading to inactive forms.
- iC1-Inh levels serve as a prognostic marker for sepsis mortality.
- C1-Inh cleavage is implicated in the development of fatal sepsis complications.
Abstract:
Activation of both the complement system and the contact system of intrinsic coagulation is implicated in the pathophysiology of sepsis. Because C1 inhibitor (C1-Inh) regulates the activation of both cascade systems, we studied the characteristics of plasma C1-Inh in 48 patients with severe sepsis on admission to the Intensive Care Unit at the Free University of Amsterdam. The ratio between the level of functional and antigenic C1-Inh (functional index) was significantly reduced in the patients with sepsis compared with healthy volunteers (P = 0.004). The assessment of modified (cleaved), inactive C1-Inh (iC1-Inh), and complexed forms of C1-Inh (nonfunctional C1-Inh species) revealed that the reduced functional index was mainly due to the presence of iC1-Inh. On SDS-PAGE, iC1-Inh species migrated with a lower apparent molecular weight (Mr 98,000, 91,000, and 86,000) than native C1-Inh (Mr 110,000). Elevated iC1-Inh levels (greater than or equal to 0.13 microM) were found in 81% of all patients, sometimes up to 1.6 microM. Levels of iC1-Inh on admission appeared to be of prognostic value: iC1-Inh was higher in 27 patients who died than in 21 patients who survived (P = 0.003). The mortality in 15 patients with iC1-Inh levels up to 0.2 microM was 27%, but in 12 patients with plasma iC1-Inh exceeding 0.44 microM, the mortality was 83%. The overall mortality in the patients with sepsis was 56%. We propose that the cleavage of C1-Inh in patients with sepsis reflects processes that play a major role in the development of fatal complications during sepsis.
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