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Brill, Alexander

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Brill

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Alexander

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Brill, Alexander

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Now showing 1 - 2 of 2
  • Publication

    Monocytes, neutrophils, and platelets cooperate to initiate and propagate venous thrombosis in mice in vivo

    (The Rockefeller University Press, 2012) von Brühl, Marie-Luise; Stark, Konstantin; Steinhart, Alexander; Chandraratne, Sue; Konrad, Ildiko; Lorenz, Michael; Khandoga, Alexander; Tirniceriu, Anca; Coletti, Raffaele; Köllnberger, Maria; Byrne, Robert A.; Laitinen, Iina; Walch, Axel; Brill, Alexander; Pfeiler, Susanne; Manukyan, Davit; Braun, Siegmund; Lange, Philipp; Riegger, Julia; Ware, Jerry; Eckart, Annekathrin; Haidari, Selgai; Rudelius, Martina; Schulz, Christian; Echtler, Katrin; Brinkmann, Volker; Schwaiger, Markus; Preissner, Klaus T.; Wagner, Denisa; Mackman, Nigel; Engelmann, Bernd; Massberg, Steffen

    Deep vein thrombosis (DVT) is a major cause of cardiovascular death. The sequence of events that promote DVT remains obscure, largely as a result of the lack of an appropriate rodent model. We describe a novel mouse model of DVT which reproduces a frequent trigger and resembles the time course, histological features, and clinical presentation of DVT in humans. We demonstrate by intravital two-photon and epifluorescence microscopy that blood monocytes and neutrophils crawling along and adhering to the venous endothelium provide the initiating stimulus for DVT development. Using conditional mutants and bone marrow chimeras, we show that intravascular activation of the extrinsic pathway of coagulation via tissue factor (TF) derived from myeloid leukocytes causes the extensive intraluminal fibrin formation characteristic of DVT. We demonstrate that thrombus-resident neutrophils are indispensable for subsequent DVT propagation by binding factor XII (FXII) and by supporting its activation through the release of neutrophil extracellular traps (NETs). Correspondingly, neutropenia, genetic ablation of FXII, or disintegration of NETs each confers protection against DVT amplification. Platelets associate with innate immune cells via glycoprotein Ibα and contribute to DVT progression by promoting leukocyte recruitment and stimulating neutrophil-dependent coagulation. Hence, we identified a cross talk between monocytes, neutrophils, and platelets responsible for the initiation and amplification of DVT and for inducing its unique clinical features.

  • Publication

    ADAMTS13: A New Link Between Thrombosis and Inflammation

    (The Rockefeller University Press, 2008) Chauhan, Anil K.; Kisucka, Janka; Brill, Alexander; Walsh, Meghan T.; Scheiflinger, Friedrich; Wagner, Denisa

    von Willebrand factor (VWF) levels are elevated and a disintegrin-like and metalloprotease with thrombospondin type I repeats–13 (ADAMTS13) activity is decreased in both acute and chronic inflammation. We hypothesized that by cleaving hyperactive ultralarge VWF (ULVWF) multimers, ADAMTS13 down-regulates both thrombosis and inflammation. Using intravital microscopy, we show that ADAMTS13 deficiency results in increased leukocyte rolling on unstimulated veins and increased leukocyte adhesion in inflamed veins. Both processes were dependent on the presence of VWF. Depletion of platelets in (Adamts13^{−/−}) mice reduced leukocyte rolling, suggesting that platelet interaction with ULVWF contributes to this process. Increased levels of endothelial P-selectin and plasma VWF in (Adamts13^{−/−}) compared with wild-type (WT) mice indicated an elevated release of Weibel-Palade bodies. ULVWF multimers released upon stimulation with histamine, a secretagogue of Weibel-Palade bodies, slowed down leukocyte rolling in (Adamts13^{−/−}) but not in WT mice. Furthermore, in inflammatory models, ADAMTS13 deficiency resulted in enhanced extravasation of neutrophils, and this process was also dependent on VWF. Our findings reveal an important role for ADAMTS13 in preventing excessive spontaneous Weibel-Palade body secretion, and in the regulation of leukocyte adhesion and extravasation during inflammation.