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  • 1
    In: Blood, American Society of Hematology, Vol. 126, No. 23 ( 2015-12-03), p. 2192-2192
    Abstract: Backgroud: Vascular inflammation is a hallmark of atherosclerosis and arterial and venous thromboembolic disease. Arterial hypertension is a highly significant risk factor for death and cardiovascular disease. High levels of angiotensin II (ATII) cause arterial hypertension by a complex inflammatory pathway requiring leukocyte recruitment and reactive oxygen species production within the vessel wall. Interactions of platelets, leukocytes and the vessel wall play pivotal roles in activating coagulation and precipitating thrombosis. Platelets provide a pro-coagulant surface for amplified thrombin generation in hemostasis and thrombosis, and play important roles in vascular inflammation by preserving vascular integrity. They also promote leukocyte recruitment in wire injury and angiogenesis models through glycoprotein Ib alpha (GPIbalpha) interacting with the integrin alphaMbeta2 (CD11b/CD18 or Mac-1) on leukocytes and regulate monocyte and neutrophil activation. How platelets, coagulation factors, leukocytes and the vessel wall cooperate to promote vascular inflammation in arterial hypertension is unclear. Objective: The aim of this work was to explore the roles of TF, FXI, FXII, thrombin and platelet GPIbalpha on inflammatory monocyte-driven vascular dysfunction and arterial hypertension in ATII infused mice and rats as well as in 5/6 nephrectomized (5/6Nx) rats. Methods: FXII-/-, FXI-/-, and hIL-4R/Ibalpha mice and 5/6NX rats were used for this study. Mice and rats where treated with ATII (1 mg×kg-1 ×d-1 for 7 days) using osmotic minipumps. Blood pressure was recorded using tail cuff measurement and telemetry carotid implants. To assess vasodilator properties, isolated aortic segments were mounted to force transducers in organ chambers to test their response to acetylcholine (ACh) and glyceryl trinitrate (GTN). ROS production was quantified within the aorta using dihydroethidium-derived fluorescence. Thrombin generation in platelet rich plasma (PRP) was measured using calibrated automated thrombography. Results: ATII induces an upregulation of tissue factor, thrombin-dependent endothelial cell VCAM-1 expression and integrin alpha4- and platelet-dependent leukocyte adhesion to arterial conductance vessels. Depletion of platelets using an anti-GPIbalpha antibody as well as injection of anti-Mac-1 directed against the CD11b/CD18 integrin on leukocytes similarly prevented leukocyte rolling and adhesion. Reduced vascular recruitment of leukocytes was paralleled by diminished vascular ROS production assessed by the superoxide-sensitive dye dihydroethidium. ATII-induced vascular dysfunction unexpectedly involved the activation of FXI but not FXII. Moreover, inhibition of FXI synthesis attenuates blood pressure increase in response to ATII. The platelet FXI receptor GPIbalpha supports the upregulation of thrombin feedback activation in ATII-treated mice. Blockade of TF during ATII administration attenuated both endothelial dysfunction (acetylcholine concentration-relaxation curves) and smooth muscle dysfunction as demonstrated by improved vascular relaxation in response to the endothelium independent vasodilator glyceryl trinitrate and reduced ROS within the vessel wall. Five/6Nx rats had endothelial dysfunction that was prevented by FXI Antisense oligonucleotide. Thrombin-induced thrombin generation was increased in PRP of 5/6 Nx rats and markedly diminished by FXI Antisense oligonucleotide, mimicking the results from ATII-infused mice. Conclusion: Our results reveal a critical role of platelet GPIbalpha to promote localized thrombin amplification and a FXI-thrombin feedback loop in ATII-induced vascular inflammation. Importantly, pharmacologic inhibition of FXI synthesis is sufficient to prevent thrombin propagation on platelets, to reduce vessel wall leukocyte infiltration, and to diminish ATII-induced endothelial dysfunction and arterial hypertension in mice and rats.Targeting FXI could be a novel therapeutic possibility to interrupt this heterotypic cellular coagulation-inflammatory circuit. Disclosures Monia: Isis Pharmaceuticals: Employment.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2015
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 2
    In: Blood, American Society of Hematology, Vol. 107, No. 3 ( 2006-02-01), p. 1133-1140
    Abstract: We have investigated the role of tyrosine phosphorylation of the cyclin-dependent kinase (cdk) inhibitor p27Kip1 using the acute promyelocytic leukemia cell line NB4 together with granulocyte colony-stimulating factor (G-CSF). Short-term G-CSF stimulation resulted in a rapid tyrosine dephosphorylation of p27Kip1 accompanied by a change in its binding preferences to cdks. On G-CSF stimulation, p27Kip1 dissociated from cdk4 and associated with cdk2. Binding assays with recombinant p27Kip1 confirmed that tyrosine-phosphorylated p27Kip1 preferentially bound to cdk4, whereas unphosphorylated protein preferentially associated with cdk2. In addition, studies with p27Kip1 point mutations revealed a decisive role of Tyr88 and Tyr89 in binding to cdk4. Furthermore, phosphorylation of Tyr88 and Tyr89 was accompanied by strong nuclear translocation of p27Kip1. Taken together, this report provides the first evidence that tyrosine phosphorylation of p27Kip1 plays a crucial role in binding to cdks and its subcellular localization. Moreover, both effects are mediated by application of G-CSF.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2006
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
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  • 3
    In: Blood Advances, American Society of Hematology, Vol. 7, No. 16 ( 2023-08-22), p. 4492-4504
    Abstract: The functionality of natural killer (NK) cells is tuned during education and is associated with remodeling of the lysosomal compartment. We hypothesized that genetic variation in killer cell immunoglobulin-like receptor (KIR) and HLA, which is known to influence the functional strength of NK cells, fine-tunes the payload of effector molecules stored in secretory lysosomes. To address this possibility, we performed a high-resolution analysis of KIR and HLA class I genes in 365 blood donors and linked genotypes to granzyme B loading and functional phenotypes. We found that granzyme B levels varied across individuals but were stable over time in each individual and genetically determined by allelic variation in HLA class I genes. A broad mapping of surface receptors and lysosomal effector molecules revealed that DNAM-1 and granzyme B levels served as robust metric of the functional state in NK cells. Variation in granzyme B levels at rest was tightly linked to the lytic hit and downstream killing of major histocompatibility complex–deficient target cells. Together, these data provide insights into how variation in genetically hardwired receptor pairs tunes the releasable granzyme B pool in NK cells, resulting in predictable hierarchies in global NK cell function.
    Type of Medium: Online Resource
    ISSN: 2473-9529 , 2473-9537
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2023
    detail.hit.zdb_id: 2876449-3
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  • 4
    In: Blood, American Society of Hematology, Vol. 91, No. 1 ( 1998-01-01), p. 134-141
    Abstract: During vascular injury, such as observed in atherosclerosis, restenosis, vasculitides, transplantation, or sepsis, vascular smooth muscle cells (SMC) can be exposed to platelets or platelet products. Under these conditions proliferation or cytokine production of SMC stimulated by platelets or platelet products may contribute to regulation of vascular pathogenesis. Thus, we investigated interleukin-6 (IL-6) and IL-8 production as well as proliferation of SMC in response to platelets or platelet lysates. Platelets not already preactivated by thrombin induced IL-6 (10- to 50-fold) or IL-8 production of unstimulated SMC in a cell number dependent fashion. Preactivation of platelets with thrombin potently increased the platelet-mediated IL-6 (50- to 1,000-fold) and IL-8 production of SMC. Hirudin specifically inhibited the activation of platelets with thrombin. Isolated platelets cultured in the absence of SMC did not contain detectable IL-6 or IL-8. Prestimulation (4 hours) of SMC with pathophysiologically relevant substances (lipopolysaccharide [LPS], tumor necrosis factor-α [TNF-α] , or IL-1α) further increased the platelet-induced cytokine production. The platelet-derived SMC stimulatory activity was IL-1, since IL-1 receptor antagonist (IL-1-Ra) inhibited the platelet-induced cytokine production of SMC. Anti-platelet-derived growth factor (PDGF)-antibody did not further reduce this activity. Thrombin itself stimulated expression of IL-6 and IL-8 to some degree and induced IL-6 production of SMC synergistically with IL-1. Platelets also induced proliferation of SMC, however, anti-PDGF antibodies, rather than IL-1-Ra blocked this response. These data show that platelet-derived IL-1 stimulates cytokine production of vascular smooth muscle cells, indicating that platelet-derived IL-1 may contribute to regulation of local pathogenesis in the vessel wall by activation of the cytokine regulatory network.
    Type of Medium: Online Resource
    ISSN: 1528-0020 , 0006-4971
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 1998
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
    Location Call Number Limitation Availability
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  • 5
    In: Blood, American Society of Hematology, Vol. 91, No. 1 ( 1998-01-01), p. 134-141
    Abstract: During vascular injury, such as observed in atherosclerosis, restenosis, vasculitides, transplantation, or sepsis, vascular smooth muscle cells (SMC) can be exposed to platelets or platelet products. Under these conditions proliferation or cytokine production of SMC stimulated by platelets or platelet products may contribute to regulation of vascular pathogenesis. Thus, we investigated interleukin-6 (IL-6) and IL-8 production as well as proliferation of SMC in response to platelets or platelet lysates. Platelets not already preactivated by thrombin induced IL-6 (10- to 50-fold) or IL-8 production of unstimulated SMC in a cell number dependent fashion. Preactivation of platelets with thrombin potently increased the platelet-mediated IL-6 (50- to 1,000-fold) and IL-8 production of SMC. Hirudin specifically inhibited the activation of platelets with thrombin. Isolated platelets cultured in the absence of SMC did not contain detectable IL-6 or IL-8. Prestimulation (4 hours) of SMC with pathophysiologically relevant substances (lipopolysaccharide [LPS], tumor necrosis factor-α [TNF-α] , or IL-1α) further increased the platelet-induced cytokine production. The platelet-derived SMC stimulatory activity was IL-1, since IL-1 receptor antagonist (IL-1-Ra) inhibited the platelet-induced cytokine production of SMC. Anti-platelet-derived growth factor (PDGF)-antibody did not further reduce this activity. Thrombin itself stimulated expression of IL-6 and IL-8 to some degree and induced IL-6 production of SMC synergistically with IL-1. Platelets also induced proliferation of SMC, however, anti-PDGF antibodies, rather than IL-1-Ra blocked this response. These data show that platelet-derived IL-1 stimulates cytokine production of vascular smooth muscle cells, indicating that platelet-derived IL-1 may contribute to regulation of local pathogenesis in the vessel wall by activation of the cytokine regulatory network.
    Type of Medium: Online Resource
    ISSN: 1528-0020 , 0006-4971
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 1998
    detail.hit.zdb_id: 1468538-3
    detail.hit.zdb_id: 80069-7
    Location Call Number Limitation Availability
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