Protein C activity levels in endotoxin-induced disseminated intravascular coagulation in a dog model

1989 ◽  
Vol 55 (3) ◽  
pp. 297-307 ◽  
Author(s):  
Renee M Madden ◽  
Michael Ward ◽  
Richard A Marlar
2014 ◽  
Vol 21 (6) ◽  
pp. 614-622
Author(s):  
Toshihiro Sakurai ◽  
Shu Yamada ◽  
Maki Kitada ◽  
Satoshi Hashimoto ◽  
Shoko Hashimoto ◽  
...  

Blood ◽  
1985 ◽  
Vol 66 (1) ◽  
pp. 59-63 ◽  
Author(s):  
RA Marlar ◽  
J Endres-Brooks ◽  
C Miller

Abstract This study was undertaken to determine the levels of protein C antigen and activity and protein C inhibitor in sequential plasma samples of disseminated intravascular coagulation (DIC) patients. Our normal range for both protein C antigen and activity is 70 to 130 U/dL, and protein C inhibitor is 65 to 135 U/dL. A decreased level of protein C activity was found in 96% of the plasma samples from individuals with DIC; the protein C antigen was decreased in 73%. The inhibitor of protein C was decreased in all samples. Analysis of serial samples from patients with DIC reveals that protein C activity and antigen and protein C inhibitor decrease progressively during the initial stages of DIC and remain at a low level for 24 to 48 hours before gradually returning toward normal in nonfatal cases. The protein C activity decreases in parallel with protein C inhibitor and is lower than protein C antigen. In a fatal case of DIC, protein C activity and protein C inhibitor rapidly decreased to undetectable levels; however, protein C antigen was gradually decreasing but still detectable at time of death. In DIC, a discrepancy initially occurs between the activity and antigen of protein C, suggesting a complex with the inhibitor or other inactive forms of protein C. Protein C appears to play a major role in the control of DIC.


1988 ◽  
Vol 59 (02) ◽  
pp. 316-318 ◽  
Author(s):  
P G Langley ◽  
Roger Williams

SummaryIn eighteen patients with fulminant hepatic failure (FHF), ingrade III or IV coma, both protein C antigen and activity weresignificantly decreased (0.35 ± 0.03 u/ml and 0.35 ± 0.03 u/ml respectively). There was a significant correlation between pro-tein C antigen and activity (r = 0.61, p <0.01). Protein C antigenlevels were inversely correlated with prothrombin time (r =−0.57, p <0.05) as were protein C activity levels (r = —0.57, p<0.05). There was also significant correlations between fibrinogen and protein C antigen (r = 0.69, p <0.01) and protein Cactivity (r = 0.61, p <0.01). These results demonstrate that thenaturally occurring inhibitor of coagulation, protein C, is presentat low levels in FHF and this is probably due to the lack ofsynthesis of the protein in the damaged liver. The low levels ofprotein C may make these patients more susceptible to thedisseminated intravascular coagulation which is known to occur inFHF and this in turn will lead to a further reduction in protein Clevels.


Blood ◽  
1985 ◽  
Vol 66 (1) ◽  
pp. 59-63
Author(s):  
RA Marlar ◽  
J Endres-Brooks ◽  
C Miller

This study was undertaken to determine the levels of protein C antigen and activity and protein C inhibitor in sequential plasma samples of disseminated intravascular coagulation (DIC) patients. Our normal range for both protein C antigen and activity is 70 to 130 U/dL, and protein C inhibitor is 65 to 135 U/dL. A decreased level of protein C activity was found in 96% of the plasma samples from individuals with DIC; the protein C antigen was decreased in 73%. The inhibitor of protein C was decreased in all samples. Analysis of serial samples from patients with DIC reveals that protein C activity and antigen and protein C inhibitor decrease progressively during the initial stages of DIC and remain at a low level for 24 to 48 hours before gradually returning toward normal in nonfatal cases. The protein C activity decreases in parallel with protein C inhibitor and is lower than protein C antigen. In a fatal case of DIC, protein C activity and protein C inhibitor rapidly decreased to undetectable levels; however, protein C antigen was gradually decreasing but still detectable at time of death. In DIC, a discrepancy initially occurs between the activity and antigen of protein C, suggesting a complex with the inhibitor or other inactive forms of protein C. Protein C appears to play a major role in the control of DIC.


2012 ◽  
Vol 87 (2) ◽  
pp. 230-232 ◽  
Author(s):  
Alessandra Malato ◽  
Giorgia Saccullo ◽  
Lucio Lo Coco ◽  
Clementina Caracciolo ◽  
Simona Raso ◽  
...  

PEDIATRICS ◽  
1986 ◽  
Vol 77 (5) ◽  
pp. 670-676
Author(s):  
Patrick Yuen ◽  
Alfred Cheung ◽  
Hsiang Ju Lin ◽  
Faith Ho ◽  
Jun Mimuro ◽  
...  

Severe and recurrent purpura fulminans developed in a Chinese boy at one day of age. Results of coagulation studies performed on the patient during attacks were compatible with the diagnosis of disseminated intravascular coagulation. Subsequent investigations have revealed that the patient is homozygous and that his parents are heterozygous for protein C deficiency. Cryoprecipitate and fresh frozen plasma induced a remission, and administration of warfarin has been successful in preventing recurrence of attacks for as long as 8 months without infusion of any plasma components. None of the family members who are heterozygous for protein C deficiency have had thrombotic episodes.


2019 ◽  
Vol 25 ◽  
pp. 107602961985216 ◽  
Author(s):  
Amanda Walborn ◽  
Matthew Rondina ◽  
Michael Mosier ◽  
Jawed Fareed ◽  
Debra Hoppensteadt

The role of the endothelium in sepsis-associated disseminated intravascular coagulation (DIC) is multifaceted and may contribute substantially to disease severity and outcome. The purpose of this study was to quantify measures of endothelial function, including markers of activation (endocan, Angiopoietin-2 [Ang-2], and von Willebrand Factor), endogenous anticoagulants (tissue factor pathway inhibitor and protein C), and damage-associated factors (High Mobility Group Box 1 [HMGB-1]) in the plasma of patients with sepsis and DIC, and to determine the relationship of these factors with severity of illness and outcome. Plasma samples were collected from 103 adult patients with sepsis within 48 hours of intensive care unit admission. Biomarker levels were measured using commercially available, standardized methods. Disseminated intravascular coagulation was diagnosed according to the International Society of Thrombosis and Hemostasis scoring algorithm. Twenty-eight-day mortality was used as the primary end point. In this study, endothelial damage and dysfunction were associated with the severity of coagulopathy and mortality in DIC patients. Loss of the endogenous anticoagulant protein C and elevation in the vascular regulator Ang-2 were associated with the development of overt DIC. In addition to Ang-2 and protein C, endocan, a biomarker of endothelial activation, and HMGB-1, a mediator of endothelial damage and activation, were significantly associated with mortality. This underscores the contribution of the endothelium to the pathogenesis of sepsis-associated DIC.


Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 538-538 ◽  
Author(s):  
Yihe Guo ◽  
Teresa Uy ◽  
Nancy Wandersee ◽  
J. Paul Scott ◽  
Hartmut Weiler ◽  
...  

Abstract The coagulation system is activated in sickle cell disease (SCD) and acute vaso-occlusion may heighten hypercoagulability. Protein C, a natural anticoagulant, has been reported to be low in individuals with SCD. Therefore, the natural anticoagulation pathway may be disrupted in SCD. The objective of this study is to more fully evaluate the protein C pathway in murine and human SCD by examining levels of: coagulation activation; protein C activity; thrombomodulin (TM); and endothelial protein C receptor (EPCR). In order to assess the level of activation of the coagulation system, we measured plasma thrombin/antithrombin (TAT) complex levels in humans and mice. TAT levels were elevated in 22 humans with SCD versus 9 healthy controls at baseline, and levels increased further in 15 individuals with SCD during acute vaso-occlusive events (5.6±1.2 vs. 2.4±0.2 vs. 9.2±1.8ug/L respectively, p=0.02). In order to study acute vaso-occlusive events in mice, we developed a model of acute vaso-occlusion by exposing Berkeley SCD mice to 3 hours of hypoxia (FI02 8–10%) followed by 2, 4, or 21 hours of reoxygenation in room air (HR2, HR4, HR21). In support of our human findings, TAT was elevated in SCD mice compared to HbA mice at baseline, and increased further in SCD mice exposed to HR2 (n=5–14 per group, p&lt;0.001). Assessment of protein C activity levels in plasma revealed that humans (n=8) with SCD have lower protein C activity levels than healthy controls (n=10) (78%±8.7% vs. 107%±5.3%, p=0.01). Additionally, we are the first to report that protein C activity levels decrease further during acute vaso-occlusive events (paired samples in 7 individuals, p=0.01). Another key protein of the PC pathway is TM, an endothelial-bound protein which activates protein C. TM is elevated in several chronic inflammatory diseases and acutely decreases in meningococcemia. We evaluated TM in mouse liver, an organ susceptible to vascular congestion, infarction, and inflammation in SCD mice. We first measured TM in mouse liver homogenates by ELISA. All SCD mice, at baseline and after HR, expressed elevated liver TM levels compared to HbA mice (n=6 per group, 1.7 to 2.9-fold increases in SCD livers, p&lt;0.05). Exposure to HR in SCD mice increased hepatic inflammation and ischemia and decreased hepatic TM levels compared to SCD mice at baseline (HR2 84%, HR4 60%, and HR21 85% of baseline SCD liver TM). In preliminary experiments, Western Blot analysis confirmed high TM expression in mouse SCD livers compared to HbA livers at baseline and after HR. Immunohistochemistry demonstrated widespread, increased TM staining in hepatic parenchymal vessels of SCD mice compared to HbA mice both at baseline and after HR, with decreased staining within mature infarcts. 4) Finally, we studied EPCR, a membrane-bound protein that binds circulating protein C and promotes both anti-thrombotic and anti-inflammatory functions. Similar to TM, immunohistochemical staining for EPCR was more prominent in hepatic parenchymal vessels of SCD mice compared to HbA mice at baseline and after HR (preliminary studies, n=3 per group). In summary, these data confirm that SCD is a prothrombotic state and suggest that the protein C pathway is altered in SCD. TAT levels are elevated in human and murine SCD, and increase further during vaso-occlusion, illustrating that SCD is a hypercoagulable state. Protein C activity levels are low in human SCD and decrease further during vaso-occlusive events, suggesting that protein C may be consumed both chronically and acutely. In SCD mice at baseline, elevated expression of TM and EPCR suggests that there may be a chronic, compensatory up-regulation of these proteins in SCD. Finally, an acute consumptive process could account for the transient, decreasing trend of these natural anticoagulant proteins in SCD mice after exposure to HR. Thus, targeted administration of activated protein C may provide a novel therapy to minimize tissue injury during acute vaso-occlusive events in SCD.


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