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Published on: September 9, 2012
Elevated plasma CL-K1 level is associated with a risk of developing disseminated intravascular coagulation (DIC)
Kazue Takahashi1, Katsuki Ohtani, Mykol Larvie
1Department of Pediatrics, Harvard Medical School, Massachusetts General Hospital, 55 Fruit Street, Boston, MA, 02114, USA, ktakahashi1@gmail.com.
Insights
Collectin kidney 1 (CL-K1) may serve as a biomarker for disseminated intravascular coagulation (DIC). Elevated CL-K1 levels were significantly higher in DIC patients, suggesting a potential role in predicting this serious coagulation disorder.
Area of Science:
- Immunology
- Coagulation Science
- Biomarker Discovery
Background:
- Collectin kidney 1 (CL-K1) is an innate immune molecule synthesized in various organs and circulating in the blood.
- Collectins are known to influence host defense and coagulation pathways.
- Disseminated intravascular coagulation (DIC) is a life-threatening condition with high mortality and a lack of reliable biomarkers.
Purpose of the Study:
- To investigate the potential role of CL-K1 as a biomarker in disseminated intravascular coagulation (DIC).
- To measure plasma CL-K1 concentrations in patients with and without DIC, as well as in healthy volunteers.
- To explore associations between elevated CL-K1 levels and clinical conditions in DIC patients.
Main Methods:
- Plasma CL-K1 concentrations were measured in 659 specimens: 549 from DIC patients, 82 from non-DIC patients, and 27 from healthy volunteers.
- Statistical analysis was performed to compare CL-K1 levels between groups and assess associations with clinical factors.
- Odds ratios and confidence intervals were calculated to evaluate the predictive value of CL-K1 for DIC.
Main Results:
- Median plasma CL-K1 levels were significantly higher in DIC patients (424 ng/ml) compared to non-DIC patients (238 ng/ml) and healthy volunteers (245 ng/ml).
- Elevated plasma CL-K1 was observed more frequently in DIC patients (odds ratio 1.929).
- In DIC patients, vascular diseases were linked to elevated CL-K1, while age and acute illness had minimal impact. CL-K1 was also independently associated with respiratory disease and coagulation disorders.
Conclusions:
- Elevated plasma CL-K1 levels are associated with the presence of DIC.
- CL-K1 may serve as a novel risk factor and potential biomarker for predicting the development of DIC.
- Further research in patient cohorts is warranted to validate these findings and explore organ-dependent CL-K1 synthesis.
Abstract:
Collectin kidney 1 (CL-K1) is a recently identified collectin that is synthesized in most organs and circulates in blood. CL-K1 is an innate immune molecule that may play a significant role in host defense. As some collectins also play a role in coagulation, we hypothesized that an effect of CL-K1 may be apparent in disseminated intravascular coagulation (DIC), a gross derangement of the coagulation system that occurs in the setting of profound activation of the innate immune system. DIC is a grave medical condition with a high incidence of multiple organ failure and high mortality and yet there are no reliable biomarkers or risk factors. In our present study, we measured plasma CL-K1 concentration in a total of 659 specimens, including 549 DIC patients, 82 non-DIC patients and 27 healthy volunteers. The median plasma CL-K1 levels in these cohorts were 424, 238 and 245 ng/ml, respectively, with no significant difference in the latter two groups. The incidence of elevated plasma CL-K1 was significantly higher in the DIC patients compared to the non-DIC patients, resulting in an odds ratio of 1.929 (confidence interval 1.041-3.866). Infection, renal diseases, respiratory diseases, and cardiac diseases were more frequently observed in the DIC group than in the non-DIC group. In the DIC group, vascular diseases were associated with elevated plasma CL-K1 levels while age and acute illness had little effect on plasma CL-K1 levels. Independent of DIC, elevated plasma CL-K1 levels were associated with respiratory disease and coagulation disorders. These results suggest that specific diseases may affect CL-K1 synthesis in an organ dependent manner and that elevated plasma CL-K1 levels are associated with the presence of DIC. Further investigations in cohorts of patients are warranted. We propose that elevated plasma CL-K1 may be a new useful risk factor and possibly biomarker for the prediction of developing DIC.
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