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Journal Abstract Search


189 related items for PubMed ID: 19229985

  • 1. Balancing role of nitric oxide in complement-mediated activation of platelets from mCd59a and mCd59b double-knockout mice.
    Qin X, Hu W, Song W, Blair P, Wu G, Hu X, Song Y, Bauer S, Feelisch M, Leopold JA, Loscalzo J, Halperin JA.
    Am J Hematol; 2009 Apr; 84(4):221-7. PubMed ID: 19229985
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  • 2. Generation and phenotyping of mCd59a and mCd59b double-knockout mice.
    Qin X, Hu W, Song W, Grubissich L, Hu X, Wu G, Ferris S, Dobarro M, Halperin JA.
    Am J Hematol; 2009 Feb; 84(2):65-70. PubMed ID: 19051264
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  • 6. Deficiency of the mouse complement regulatory protein mCd59b results in spontaneous hemolytic anemia with platelet activation and progressive male infertility.
    Qin X, Krumrei N, Grubissich L, Dobarro M, Aktas H, Perez G, Halperin JA.
    Immunity; 2003 Feb; 18(2):217-27. PubMed ID: 12594949
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  • 7. Complement-induced vesiculation and exposure of membrane prothrombinase sites in platelets of paroxysmal nocturnal hemoglobinuria.
    Wiedmer T, Hall SE, Ortel TL, Kane WH, Rosse WF, Sims PJ.
    Blood; 1993 Aug 15; 82(4):1192-6. PubMed ID: 7688991
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  • 8. Interactions of the platelets in paroxysmal nocturnal hemoglobinuria with complement. Relationship to defects in the regulation of complement and to platelet survival in vivo.
    Devine DV, Siegel RS, Rosse WF.
    J Clin Invest; 1987 Jan 15; 79(1):131-7. PubMed ID: 2432087
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  • 10. Nitric oxide donors prevent while the nitric oxide synthase inhibitor L-NAME increases arachidonic acid plus CYP2E1-dependent toxicity.
    Wu D, Cederbaum A.
    Toxicol Appl Pharmacol; 2006 Oct 15; 216(2):282-92. PubMed ID: 16938321
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  • 11. Targeted deletion of the CD59 gene causes spontaneous intravascular hemolysis and hemoglobinuria.
    Holt DS, Botto M, Bygrave AE, Hanna SM, Walport MJ, Morgan BP.
    Blood; 2001 Jul 15; 98(2):442-9. PubMed ID: 11435315
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  • 13. Complement regulator CD59 protects against atherosclerosis by restricting the formation of complement membrane attack complex.
    Wu G, Hu W, Shahsafaei A, Song W, Dobarro M, Sukhova GK, Bronson RR, Shi GP, Rother RP, Halperin JA, Qin X.
    Circ Res; 2009 Feb 27; 104(4):550-8. PubMed ID: 19131645
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  • 14. Complement and platelets: prothrombotic cell activation requires membrane attack complex-induced release of danger signals.
    Mannes M, Pechtl V, Hafner S, Dopler A, Eriksson O, Manivel VA, Wohlgemuth L, Messerer DAC, Schrezenmeier H, Ekdahl KN, Nilsson B, Jacobsen EM, Hoenig M, Huber-Lang M, Braun CK, Schmidt CQ.
    Blood Adv; 2023 Oct 24; 7(20):6367-6380. PubMed ID: 37428869
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  • 15. Enhanced complement activation and MAC formation accelerates severe COVID-19.
    Ellsworth CR, Chen Z, Xiao MT, Qian C, Wang C, Khatun MS, Liu S, Islamuddin M, Maness NJ, Halperin JA, Blair RV, Kolls JK, Tomlinson S, Qin X.
    Cell Mol Life Sci; 2024 Sep 16; 81(1):405. PubMed ID: 39284944
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  • 16. Paroxysmal nocturnal hemoglobinuria and the complement system: recent insights and novel anticomplement strategies.
    Risitano AM.
    Adv Exp Med Biol; 2013 Sep 16; 735():155-72. PubMed ID: 23402025
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  • 18. Deficiency of the complement regulatory protein CD59 accelerates the development of diabetes-induced atherosclerosis in mice.
    Liu F, Sahoo R, Ge X, Wu L, Ghosh P, Qin X, Halperin JA.
    J Diabetes Complications; 2017 Feb 16; 31(2):311-317. PubMed ID: 27729184
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  • 19. Characterization of the complement sensitivity of paroxysmal nocturnal hemoglobinuria erythrocytes.
    Parker CJ, Wiedmer T, Sims PJ, Rosse WF.
    J Clin Invest; 1985 Jun 16; 75(6):2074-84. PubMed ID: 4008653
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  • 20. Expression of recombinant transmembrane CD59 in paroxysmal nocturnal hemoglobinuria B cells confers resistance to human complement.
    Rother RP, Rollins SA, Mennone J, Chodera A, Fidel SA, Bessler M, Hillmen P, Squinto SP.
    Blood; 1994 Oct 15; 84(8):2604-11. PubMed ID: 7522635
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