1. Pro-Coagulant and Pro-Thrombotic Effects of Paclitaxel Mediated by Red Blood Cells
- Author
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Kyung Min Lim, Jin Ho Chung, Ok-Nam Bae, Keunyoung Kim, Yiying Bian, and Youn Kyeong Chang
- Subjects
Male ,Erythrocytes ,Phospholipid scramblase ,Adolescent ,Drug-Related Side Effects and Adverse Reactions ,Paclitaxel ,Antineoplastic Agents ,Phosphatidylserines ,030204 cardiovascular system & hematology ,Pharmacology ,Rats, Sprague-Dawley ,Young Adult ,03 medical and health sciences ,chemistry.chemical_compound ,0302 clinical medicine ,Cell-Derived Microparticles ,In vivo ,Neoplasms ,Human Umbilical Vein Endothelial Cells ,Animals ,Humans ,Platelet ,Phospholipid Transfer Proteins ,Cell adhesion ,Protein kinase C ,Microvesicle ,Thrombin ,Thrombosis ,Hematology ,Phosphatidylserine ,Rats ,chemistry ,030220 oncology & carcinogenesis ,circulatory and respiratory physiology - Abstract
Background Paclitaxel is one of the most widely used anti-cancer drugs, but numerous case reports of thrombotic events in the cancer patients using paclitaxel raise concern over its pro-thrombotic risk. Materials and Methods We investigated whether paclitaxel can elicit pro-thrombotic properties in red blood cells (RBCs) through phosphatidylserine (PS) exposure and microvesicle (MV) release. Results In freshly isolated human RBCs, paclitaxel induced thrombin generation through PS exposure and MV release, whereas either coagulation factors or platelets were unaffected. Paclitaxel-induced PS exposure in RBC was mediated by scramblase activation which was induced by calcium-independent protein kinase C (PKC)ζ activation. Paclitaxel also increased RBC-endothelial cell adhesion and RBC aggregate formation which can also contribute to thrombosis. Indeed, intravenous administration of paclitaxel to rats induced PS exposure and PKCζ activation in RBCs in vivo which ultimately promoted venous thrombus formation. Conclusion These results demonstrated that paclitaxel may elicit pro-thrombotic properties in RBCs through PS exposure and MV release, which can ultimately promote thrombus formation.
- Published
- 2018
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