1.Studies on expression and activity of membrane in peripheral in blood cells in patients with acute coronary syndrome.
Wei-bin CAO ; Hai-yan LUO ; Xiao-hong HAO
Chinese Journal of Hematology 2013;34(3):264-266
Acute Coronary Syndrome
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blood
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Aged
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Cell Membrane
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metabolism
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Female
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Humans
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Male
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Middle Aged
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Thromboplastin
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metabolism
2.Effect of tissue factor in extravascular migration of fibrosarcoma cells.
Chun-Shan HAN ; Hua XIN ; Zhen-Guo HAN ; Zhong-Li GAO
Journal of Zhejiang University. Medical sciences 2011;40(2):184-188
OBJECTIVETo evaluate the effect of tissue factor (TF) in extravascular migration of fibrosarcoma cells and hematogenous metastasis.
METHODSThe expression of tissue factor in fibrosarcoma HT1080 cells was analyzed by flow cytometry. The extravascular migration of fibrosarcoma cells was observed in a constructed monolayer vascular endothelial cells and extra-cellular matrix model.
RESULTTissue factor was highly expressed in HT1080 cells. HT1080 migrated and passed through the monolayer vascular endothelial cells to the collagen gel in a time-dependent manner. Anti-TF antibody inhibited extravascular migration of fibrosarcoma cells and the inhibition was concentration-dependent (P<0.05).
CONCLUSIONTissue factor may enhance hematogenous metastasis through extravascular migration of fibrosarcoma cells.
Cell Movement ; Cells, Cultured ; Endothelial Cells ; Fibrosarcoma ; metabolism ; pathology ; Humans ; Neoplasm Metastasis ; Thromboplastin ; metabolism ; physiology
3.Effects of tissue factor pathway inhibitor-1 on no-reflow in a rabbit model.
Jing-guang LUO ; Yun-dai CHEN ; Feng TIAN ; Chang-hua WANG ; Yuan LÜ ; Xiu-xiu YANG ; Shu-zheng LÜ
Chinese Journal of Cardiology 2009;37(12):1113-1118
OBJECTIVETo investigate the role of plasma tissue factor (TF) and tissue factor pathway inhibitor-1 (TFPI-1) level and to observe the effect of extrinsic TFPI-1 on no-reflow (NR) in a rabbit model of ischemia/reperfusion.
METHODSRabbits were randomized into four groups (n = 10 each): ischemic- reperfusion group (IR, subjected to 120 minutes of coronary artery occlusion and followed by 60 minutes of reperfusion); ischemic- reperfusion TFPI-1 group (100 ng/kg bolus and 1 ng x kg(-1) x min(-1) infusion during reperfusion); ischemic group (subjected to 180 minutes of coronary artery occlusion) and sham group. The NR area and ischemic area were determined by thioflavin S and Evan's blue staining in vivo. Plasma TF and TFPI-1 levels were measured before operation, before and at 120 minutes post coronary artery ligation, 10 and 60 minutes after reperfusion by ELISA.
RESULTSPlasma TF and TFPI-1 levels before and at 120 minutes post coronary artery ligation were similar among the four groups (all P > 0.05). At 10 and 60 minutes after reperfusion, the plasma TF levels in the IR group was significantly higher than those in ischemic group and sham group [10 minutes: (20.7 + or - 4.1) pg/ml vs. (13.9 + or - 2.2) pg/ml (P < 0.001), (20.7 + or - 4.1) pg/ml vs. (13.2 + or - 2.6) pg/ml (P < 0.001); 60 minutes: (15.8 + or - 2.6) pg/ml vs. (13.5 + or - 1.6) pg/ml (P < 0.05), (15.8 + or - 2.6) pg/ml vs. (12.1 + or - 0.7) pg/ml (P < 0.001)] while the plasma TFPI-1 levels were similar among IR, ischemic and sham groups at 10 minutes after reperfusion and at 60 minutes after reperfusion (all P > 0.05). TFPI-1 level [(9.7 + or - 1.6) ng/ml] was significantly lower in the IR group than in the ischemic group [(11.6 + or - 1.6) ng/ml, P < 0.05] and sham group [(10.1 + or - 1.3) ng/ml, P < 0.01]. TF mRNA expression in the NR area in IR group was significantly up-regulated compared to the ischemic group (P < 0.05) and sham group (P < 0.001) while TFPI-1 mRNA expression was similar between IR group and ischemic group (P > 0.05). NR severity in the ischemic-reperfusion TFPI-1 group was significantly attenuated compared to IR group (0.39 + or - 0.11 vs. 0.54 + or - 0.06, P < 0.01).
CONCLUSIONUpregulated TF mRNA expression in the NR area and increased plasma TF level during reperfusion period, reduced plasma TFPI-1 level during reperfusion period as well as attenuated NR severity by extrinsic application of human rTFPI-1 in this model suggested an important role in the pathogenesis of the NR phenomenon.
Animals ; Blood Proteins ; metabolism ; Lipoproteins ; blood ; Myocardial Reperfusion Injury ; blood ; Rabbits ; Thromboplastin ; metabolism
5.Tissue factors and venous thromboembolism in cancer patients.
Journal of Zhejiang University. Medical sciences 2020;49(6):772-778
Malignant tumor is one of the important acquired risk factors of venous thromboembolism (VTE). As the transmembrane receptor of coagulation factor Ⅶ and activated coagulation factor Ⅶa
Humans
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Neoplasms/complications*
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Risk Factors
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Thromboplastin/metabolism*
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Thrombosis
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Venous Thromboembolism/physiopathology*
6.Clinical significance of soluble E-selectin and tissue factor in β-thalassemia.
Fang YIN ; Donghong DENG ; Yongrong LAI ; Rongrong LIU ; Peng CHENG
Chinese Journal of Hematology 2014;35(6):558-560
Adolescent
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Adult
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Child
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E-Selectin
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metabolism
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Female
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Humans
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Male
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Middle Aged
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Thromboplastin
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metabolism
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Young Adult
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beta-Thalassemia
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blood
7.Expression of alternatively spliced human tissue factor in acute leukemia cells.
Yi FANG ; Jia-Yi CAI ; Ji-Hua ZHONG ; Hua ZHONG ; Hai-Rong WANG ; Fang-Yuan CHEN
Journal of Experimental Hematology 2011;19(2):288-292
The high expression of tissue factor (TF) is related to the coagulation disorder in acute leukemia. TF in blood circulation is mainly expressed in cells, microparticles (MP) and alternatively spliced human tissue factor (asHTF). To elucidate the role of TF in the coagulation disorder of acute myeloid leukemia (AML), RT-PCR was performed on 6 common AML cell lines NB4, HL-60, Kasumi-1, U937, K562 and THP-1. The results showed that only NB4 and U937 cells expressed baseline full-length TF and asHTF which were proved by sequencing. The flow cytometric detection, TF activity and TF antigen tests in NB4 and U937 cells revealed that the asHTF was expressed in trace amount and almost had no activity, while the TF antigen and activity in microparticles were significantly higher than that in asHTF. It is concluded that asHTF may play an unimportant role in the coagulation disorder of AML. Microparticle associated tissue factor (MP-TF) is the predominant source of TF activity released from AML cells.
Alternative Splicing
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HL-60 Cells
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Humans
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Leukemia, Promyelocytic, Acute
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genetics
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metabolism
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Thromboplastin
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genetics
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metabolism
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Tumor Cells, Cultured
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U937 Cells
8.Effect of simulated microgravity on human monocytic cell proliferation and tissue factor mRNA expression.
Xia YU ; Lei ZHENG ; Shi-long XIONG ; Zhen CAI ; Qian WANG
Journal of Southern Medical University 2011;31(6):1020-1022
OBJECTIVETo investigate the effect of simulated microgravity on the proliferation of human monocytic cells THP-1 and the expression of tissue factor (TF) mRNA.
METHODSTHP-1 cells were cultured under a simulated microgravity environment using the rotating cell culture system (RCCS). The changes in the cell proliferation after microgravity culture were assessed by cell counting and cell cycle analysis with flow cytometry. RT-PCR was used to detect the changes in the expression of TF mRNA in THP-1 cells.
RESULTSCulture under simulated microgravity resulted in a significant decrease in the cell number of THP-1 cells in comparison with that of the control cells (P<0.01). After a 24-h culture under microgravity, the G0-Gl phase cells increased from the control level of (46.57∓1.64)% to (67.64∓2.71)% (P<0.05). The cells in both groups showed a low level of TF mRNA expression in the absence of LPS stimulation. A 4-h stimulation with LPS caused up-regulated expression of TF mRNA in both cells, but the microgravity group showed a significantly smaller increase in the expression (2.301∓0.179) than the control group (9.210∓1.328) (P<0.05).
CONCLUSIONMicrogravity can inhibit the proliferation of THP-1 cells and suppress the cellular expression of TF mRNA.
Cell Proliferation ; Cells, Cultured ; Humans ; Monocytes ; cytology ; metabolism ; RNA, Messenger ; genetics ; Thromboplastin ; genetics ; metabolism ; Weightlessness ; Weightlessness Simulation
9.Study on platelet-associated tissue factor and its significance.
Xi-lian HUANG ; Fang-ping CHEN ; Jian-wei DU ; Min-yuan PENG ; Bin FU ; Qin-zhi XIE ; Shi-lin HE
Chinese Journal of Hematology 2005;26(9):525-528
OBJECTIVETo explore whether normal platelet contains tissue factor (TF), and the significance of platelet-associated TF (PATF).
METHODSPlatelets were isolated by Sepharose 2B gel column. ELISA was used to detect the TF content in the lysates of washed platelets. Procoagulant activity of PATF was measured by one stage clotting time assay. The mRNA of TF was detected by reverse transcription polymerase chain reaction (RT-PCR).
RESULTSA certain amount of TF antigen (16.37 +/- 6.39) ng/L was detected in the washed-platelet lysates. Upon activation by collagen, platelets released TF and caused a marked increase in TF level in plasma (P <0.05). Resting platelets had no TF procoagulant activity, while procoagulant activity of platelets activated by collagen increased significantly, which could be blocked by TF McAb and poor VII plasma. TF mRNA could not be detected in washed platelets. TF content in platelets from patients with coronary heart disease was significantly higher than that from normal controls (P < 0.05). Resting platelets from the patients showed a higher procoagulant activity, which could be inhibited by TF McAb.
CONCLUSIONPlatelets contain TF and the latter released by activated platelet was functionally active. Platelet itself might not synthesize TF. Protein content and procoagulant activity of PATF in patients with coronary heart disease were higher than that in controls. All these indicate that platelet may be involved in coagulation and thrombosis by releasing TF.
Adolescent ; Adult ; Blood Platelets ; chemistry ; Coronary Artery Disease ; metabolism ; physiopathology ; Female ; Humans ; Male ; Middle Aged ; Platelet Activation ; Thromboplastin ; metabolism ; physiology
10.Expression and activity of membrane surface tissue factor in peripheral blood cells of patients with cerebral infarction.
Xi-Lian HUANG ; Shen-Xian QIAN ; Li-Hong CAO ; Li-Rong LIU ; Jun-Feng TAN ; Peng-Fei SHI ; Da-Quan GAO ; Ya-Ping XIE
Journal of Experimental Hematology 2008;16(6):1376-1378
This study was aimed to investigate the expression and activity of membrane surface tissue factor (TF) of monocytes and platelets in peripheral blood cells from patients with cerebral infarction and their clinical significance. The TF expressions in monocytes and platelets from 25 patients with cerebral infarction were detected by flow cytometry, the TF activity was detected by chromogenic reaction method, and compared with 24 normal people used as control. The results showed that the TF expressions of monocytes and platelets in peripheral blood cells from patients with cerebral infarction were significantly higher than that in normal controls (p<0.01), and TF activity was also higher in patients than that in controls (p<0.01). In conclusion, the expression and activity of membrane surface in patients with cerebral infarction were enhanced, the hematocyte-derived tissue factor as a trigger in coagulation pathway is involved in pathological thrombosis in patients with cerebral infarction.
Aged
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Blood Cells
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metabolism
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Case-Control Studies
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Cerebral Infarction
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blood
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metabolism
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Erythrocyte Membrane
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metabolism
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Female
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Flow Cytometry
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Humans
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Male
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Middle Aged
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Monocytes
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metabolism
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Thromboplastin
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metabolism