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Published on: September 2, 2021
The composition of normal pericardial fluid and its implications for diagnosing pericardial effusions
Shomron Ben-Horin1, Ami Shinfeld, Erez Kachel
1Department of Medicine F, Sheba Medical Center, Sackler School of Medicine, Tel-Aviv University, Tel-Hashomer, Israel. sben-horin@013.net.il
Insights
Physiological pericardial fluid has high lactate dehydrogenase (LDH) and protein levels, with more lymphocytes than expected. These findings suggest that diagnostic criteria for pleural effusions may not apply to pericardial fluid analysis.
Area of Science:
- Cardiology
- Clinical Chemistry
- Hematology
Background:
- Pericardial fluid analysis often uses criteria developed for pleural effusions, but their validity is uncertain.
- Limited data exists on the normal composition of physiological pericardial fluid, hindering accurate interpretation of pathological effusions.
Purpose of the Study:
- To determine the normal biochemical and hematological composition of physiological pericardial fluid.
- To assess the applicability of existing diagnostic criteria for pericardial effusions.
Main Methods:
- Collected pericardial fluid from 30 patients undergoing elective open heart surgery.
- Excluded patients with known pericardial disease or related systemic disorders.
- Analyzed fluid biochemistry and hematology, comparing results with concurrently drawn blood.
Main Results:
- Pericardial fluid showed high lactate dehydrogenase (LDH) levels (2.4x serum) and protein levels (0.6x serum).
- Fluid contained an average of 1430 leukocytes/µL, predominantly lymphocytes (53.2%) and monocytes (11.6%).
- No correlation was observed between patient comorbidities and fluid characteristics.
Conclusions:
- Physiological pericardial fluid is characterized by high LDH and protein content, and a lymphocyte predominance.
- Biochemical criteria for diagnosing pleural effusions are likely unsuitable for differentiating pericardial effusion types.
- Lymphocytosis in pericardial fluid should be interpreted with caution due to its presence in physiological fluid.
Background:
Pericardial fluid obtained at pericardiocentesis is often subjected to biochemical and hematological analysis, and interpreted using criteria borrowed from pleural effusions. However, the validity and diagnostic yield of this approach is uncertain. Moreover, there is little data regarding the normal composition of the physiological pericardial fluid, which could serve as a reference for pathological effusions.
Methods:
Pericardial fluid from 30 patients undergoing elective open heart surgery was collected. Patients were excluded if they had known pericardial disease, had systemic disorders known to be associated with pericardial disease, or if the fluid samples were hemolytic. The biochemical and hematological parameters of the fluid were determined using standard laboratory techniques, and compared with the results obtained for concurrently drawn venous blood.
Results:
The median age of the study population was 64.5 +/- 10.6 years. Chemistry results of soluble molecules were consistent with the plasma ultrafiltrate nature of the fluid. However, fluid lactate dehydrogenase (LDH) level was unexpectedly high, averaging 2.4 times the serum level, and the mean protein level was 0.6 of the serum level. No correlation was found between comorbidities of patients and fluid characteristics. Fluids contained an average of 1430 leukocytes/muL, with a differential count that was predominated by lymphocytes (53.2 +/- 14%) and monocytes (11.6 +/- 6%).
Conclusions:
The composition of the physiologic pericardial fluid is remarkable for high LDH and protein content, and for predominance of lymphocytes. Thus, the biochemical criteria useful for diagnosing pleural effusions are probably not applicable for differentiating transudative from exudative pericardial effusions, and lymphocytosis should be interpreted cautiously.
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