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Journal Abstract Search


487 related items for PubMed ID: 25201986

  • 21. Arginine usage in mycobacteria-infected macrophages depends on autocrine-paracrine cytokine signaling.
    Qualls JE, Neale G, Smith AM, Koo MS, DeFreitas AA, Zhang H, Kaplan G, Watowich SS, Murray PJ.
    Sci Signal; 2010 Aug 17; 3(135):ra62. PubMed ID: 20716764
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  • 22. Arginase enzymes in isolated airways from normal and nitric oxide synthase 2-knockout mice exposed to ovalbumin.
    Bratt JM, Franzi LM, Linderholm AL, Last MS, Kenyon NJ, Last JA.
    Toxicol Appl Pharmacol; 2009 Feb 01; 234(3):273-80. PubMed ID: 19027033
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  • 23. Arginase inhibition in airways from normal and nitric oxide synthase 2-knockout mice exposed to ovalbumin.
    Bratt JM, Franzi LM, Linderholm AL, O'Roark EM, Kenyon NJ, Last JA.
    Toxicol Appl Pharmacol; 2010 Jan 01; 242(1):1-8. PubMed ID: 19800904
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  • 26. Virulent but not avirulent Mycobacterium tuberculosis can evade the growth inhibitory action of a T helper 1-dependent, nitric oxide Synthase 2-independent defense in mice.
    Jung YJ, LaCourse R, Ryan L, North RJ.
    J Exp Med; 2002 Oct 07; 196(7):991-8. PubMed ID: 12370260
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  • 31. Role of tumor necrosis factor-alpha in Mycobacterium-induced granuloma formation in tumor necrosis factor-alpha-deficient mice.
    Kaneko H, Yamada H, Mizuno S, Udagawa T, Kazumi Y, Sekikawa K, Sugawara I.
    Lab Invest; 1999 Apr 07; 79(4):379-86. PubMed ID: 10211990
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  • 32. Functionally important role for arginase 1 in the airway hyperresponsiveness of asthma.
    North ML, Khanna N, Marsden PA, Grasemann H, Scott JA.
    Am J Physiol Lung Cell Mol Physiol; 2009 Jun 07; 296(6):L911-20. PubMed ID: 19286931
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  • 33. NOS2-deficient mice with hypoxic necrotizing lung lesions predict outcomes of tuberculosis chemotherapy in humans.
    Gengenbacher M, Duque-Correa MA, Kaiser P, Schuerer S, Lazar D, Zedler U, Reece ST, Nayyar A, Cole ST, Makarov V, Barry Iii CE, Dartois V, Kaufmann SHE.
    Sci Rep; 2017 Aug 18; 7(1):8853. PubMed ID: 28821804
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  • 34. Hypoxia in Leishmania major skin lesions impairs the NO-dependent leishmanicidal activity of macrophages.
    Mahnke A, Meier RJ, Schatz V, Hofmann J, Castiglione K, Schleicher U, Wolfbeis OS, Bogdan C, Jantsch J.
    J Invest Dermatol; 2014 Sep 18; 134(9):2339-2346. PubMed ID: 24583949
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  • 36. Relevance of inducible nitric oxide synthase for immune control of Mycobacterium avium subspecies paratuberculosis infection in mice.
    Abdissa K, Ruangkiattikul N, Ahrend W, Nerlich A, Beineke A, Laarmann K, Janze N, Lobermeyer U, Suwandi A, Falk C, Schleicher U, Weiss S, Bogdan C, Goethe R.
    Virulence; 2020 Dec 18; 11(1):465-481. PubMed ID: 32408806
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  • 37. TNF-Mediated Restriction of Arginase 1 Expression in Myeloid Cells Triggers Type 2 NO Synthase Activity at the Site of Infection.
    Schleicher U, Paduch K, Debus A, Obermeyer S, König T, Kling JC, Ribechini E, Dudziak D, Mougiakakos D, Murray PJ, Ostuni R, Körner H, Bogdan C.
    Cell Rep; 2016 May 03; 15(5):1062-1075. PubMed ID: 27117406
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  • 38. Differential Regulation of l-Arginine Metabolism through Arginase 1 during Infection with Leishmania mexicana Isolates Obtained from Patients with Localized and Diffuse Cutaneous Leishmaniasis.
    Wilkins-Rodríguez AA, Pérez-Torres A, Escalona-Montaño AR, Gutiérrez-Kobeh L.
    Infect Immun; 2020 Jun 22; 88(7):. PubMed ID: 32312763
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  • 39. Dynamics of Macrophage, T and B Cell Infiltration Within Pulmonary Granulomas Induced by Mycobacterium tuberculosis in Two Non-Human Primate Models of Aerosol Infection.
    Hunter L, Hingley-Wilson S, Stewart GR, Sharpe SA, Salguero FJ.
    Front Immunol; 2021 Jun 22; 12():776913. PubMed ID: 35069548
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