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Published on: May 24, 2020
Cellular localization of enzymatically active thrombin in intact human tissues by hirudin binding
L R Zacharski1, V A Memoli, W D Morain
1VA Medical and Regional Office Center, White River Junction, Vermont 05009, USA.
Insights
This study identifies cellular sites of thrombin generation in various tissues using hirudin. Macrophages and tumor cells show thrombin activity, suggesting potential therapeutic targets for coagulation-related diseases.
Area of Science:
- Biochemistry
- Immunohistochemistry
- Pathology
Background:
- Coagulation activation occurs at specific cellular sites within tissues.
- Thrombin plays a critical role in the coagulation cascade.
- Understanding cellular thrombin generation is crucial for disease research.
Purpose of the Study:
- To identify the cellular localization of thrombin generation in intact human tissues.
- To investigate the role of macrophages and tumor cells in local coagulation.
- To evaluate the potential of hirudin as a diagnostic tool for thrombin activity.
Main Methods:
- Immunohistochemical staining using hirudin and anti-hirudin antibody on tissue sections.
- Analysis of normal tissues (lung, kidney, placenta, skin) and pathological tissues (rheumatoid synovium, various tumors).
- Control experiments omitting hirudin or its antibody to ensure specificity.
Main Results:
- Thrombin staining was observed on macrophages in lung, synovium, and placenta.
- Endothelial cells of freshly incised skin capillaries showed thrombin staining.
- Tumor cells stained positive for thrombin in small cell lung carcinoma, renal cell carcinoma, and melanoma.
- Differential staining patterns were observed in various cancer types, including lung and colon cancer.
Conclusions:
- Immunohistochemical techniques with hirudin can identify cellular sites of thrombin generation in intact tissues.
- Macrophages and specific tumor cell types are key sites of local coagulation activation.
- Hirudin may serve as a tool to assess local thrombin generation in vivo and explore therapeutic strategies.
Abstract:
Cellular sites of coagulation activation within complex, intact tissues have been studied by immunohistochemical techniques. Hirudin, a specific and high affinity inhibitor of the active site of thrombin, together with antibody to hirudin were applied to sections of AMeX-fixed specimens of normal lung, kidney, placenta, freshly incised skin and unperturbed skin obtained at fresh autopsy; to rheumatoid synovial tissue; and to malignant tissue from a variety of tumor types. Staining for thrombin was observed selectively on pulmonary alveolar, rheumatoid synovial, and placental macrophages that express an intact extrinsic coagulation pathway. Staining was also observed restricted to the endothelium of capillaries in freshly incised skin but not in either unperturbed skin or in aged incisions. Staining of tumor cell bodies was observed in small cell carcinoma of the lung, renal cell carcinoma, and malignant melanoma tissues that we found previously to show tumor cell-associated procoagulant activity. This staining occurred commonly on cells within the tumor mass that were distant from stromal fibrinogen/fibrin. By contrast, tumor-associated macrophage but not tumor cell staining was seen in adenocarcinoma and squamous cell carcinoma of the lung, and little or no staining was seen colon cancer tissue. Negative controls in which either the hirudin probe or its antibody were omitted failed to show staining. These results are in accord with previous findings and suggest that such techniques may be useful for studying the cellular sites of thrombin generation in intact tissues. We postulate that administration of potent and specific thrombin antagonists, such as hirudin, to patients with relevant tumor types might be followed by homing of hirudin to tumor cells in vivo so that effects of local thrombin generation on malignant progression can be determined.
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