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Coagulation cascade and complement system in systemic lupus erythematosus.


ABSTRACT: This study was conducted to (1) characterize coagulation cascade and complement system in systemic lupus erythematosus (SLE); (2) evaluate the associations between coagulation cascade, complement system, inflammatory response and SLE disease severity; (3) test the diagnostic value of a combination of D-dimer and C4 for lupus activity. Transcriptomics, proteomics and metabolomics were performed in 24 SLE patients and 24 healthy controls. The levels of ten coagulations, seven complements and three cytokines were measured in 112 SLE patients. Clinical data were collected from 2025 SLE patients. The analysis of multi-omics data revealed the common links for the components of coagulation cascade and complement system. The results of ELISA showed coagulation cascade and complement system had an interaction effect on SLE disease severity, this effect was pronounced among patients with excess inflammation. The analysis of clinical data revealed a combination of D-dimer and C4 provided good diagnostic performance for lupus activity. This study suggested that coagulation cascade and complement system become 'partners in crime', contributing to SLE disease severity and identified the diagnostic value of D-dimer combined with C4for lupus activity.

SUBMITTER: Liang Y 

PROVIDER: S-EPMC5871083 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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Coagulation cascade and complement system in systemic lupus erythematosus.

Liang Yan Y   Xie Shang-Bo SB   Wu Chang-Hao CH   Hu Yuan Y   Zhang Qin Q   Li Si S   Fan Yin-Guang YG   Leng Rui-Xue RX   Pan Hai-Feng HF   Xiong Hua-Bao HB   Ye Dong-Qing DQ  

Oncotarget 20171211 19


This study was conducted to (1) characterize coagulation cascade and complement system in systemic lupus erythematosus (SLE); (2) evaluate the associations between coagulation cascade, complement system, inflammatory response and SLE disease severity; (3) test the diagnostic value of a combination of D-dimer and C4 for lupus activity. Transcriptomics, proteomics and metabolomics were performed in 24 SLE patients and 24 healthy controls. The levels of ten coagulations, seven complements and three  ...[more]

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