Cancer patients have an increased risk of venous thromboembolism (VTE) which is their second cause of death after disease progression itself. Several thrombotic risk factors coexist in cancer patients, including the ability of both cancer and tumoral microenvironment's cells to directly or indirectly activate platelets and the enzymes of the coagulation cascade, resulting in a hyper-coagulable state of blood. This narrative review gives an overview of the main mechanisms leading to VTE in cancer patients, including the role that platelets and the clotting proteins may have in tumor growth and metastasis. Noteworthy, the haemostatic balance is altered in cancer patients who may, next to a thrombosis tendency, also have an increased risk of bleeding. To highlight the complexity and the precariousness of the haemostatic balance of these patients, we discuss two specific gastrointestinal malignancies: hepatocellular carcinoma, which is frequently associated with liver cirrhosis, a condition that causes profound alterations of haemostasis, and colorectal cancer, which is characterized by a fragile mucosa that is prone to bleeding. Understanding the molecular mechanisms of cancer-associated thrombosis may give a unique opportunity to develop new innovative drugs, acting differently on distinct pathways and potentially allowing to reduce the risk of bleeding related to antithrombotic therapies. Significance Statement The topic is significant because understanding the molecular mechanisms leading to cancer associated thrombosis and bleeding, focusing on gastrointestinal malignancies, enables the development of more rationale and innovative antithrombotic strategies for cancer associated thrombosis. Eventually, this will support an improved and patient-tailored antithrombotic management in vulnerable oncologic patients.

Mechanisms and management of thrombosis in cancer: focus on gastrointestinal malignancies

Monegatti, Simone
Writing – Original Draft Preparation
;
Martinelli, Nicola
Conceptualization
;
Friso, Simonetta
Conceptualization
;
2024-01-01

Abstract

Cancer patients have an increased risk of venous thromboembolism (VTE) which is their second cause of death after disease progression itself. Several thrombotic risk factors coexist in cancer patients, including the ability of both cancer and tumoral microenvironment's cells to directly or indirectly activate platelets and the enzymes of the coagulation cascade, resulting in a hyper-coagulable state of blood. This narrative review gives an overview of the main mechanisms leading to VTE in cancer patients, including the role that platelets and the clotting proteins may have in tumor growth and metastasis. Noteworthy, the haemostatic balance is altered in cancer patients who may, next to a thrombosis tendency, also have an increased risk of bleeding. To highlight the complexity and the precariousness of the haemostatic balance of these patients, we discuss two specific gastrointestinal malignancies: hepatocellular carcinoma, which is frequently associated with liver cirrhosis, a condition that causes profound alterations of haemostasis, and colorectal cancer, which is characterized by a fragile mucosa that is prone to bleeding. Understanding the molecular mechanisms of cancer-associated thrombosis may give a unique opportunity to develop new innovative drugs, acting differently on distinct pathways and potentially allowing to reduce the risk of bleeding related to antithrombotic therapies. Significance Statement The topic is significant because understanding the molecular mechanisms leading to cancer associated thrombosis and bleeding, focusing on gastrointestinal malignancies, enables the development of more rationale and innovative antithrombotic strategies for cancer associated thrombosis. Eventually, this will support an improved and patient-tailored antithrombotic management in vulnerable oncologic patients.
2024
venous thromboembolism
Hepatocellular carcinoma
Platelets
anticoagulants
cancer
thrombosis
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11562/1158609
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