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Luster, Andrew

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Luster

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Luster, Andrew

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Now showing 1 - 2 of 2
  • Publication

    Adiponectin Deficiency Increases Allergic Airway Inflammation and Pulmonary Vascular Remodeling

    (American Thoracic Society, 2009) Medoff, Benjamin; Okamoto, Yoshihisa; Leyton, Patricio; Weng, Meiqian; Sandall, Barry P.; Raher, Michael J.; Kihara, Shinji; Bloch, Kenneth; Libby, Peter; Luster, Andrew

    Obesity is associated with an increased incidence and severity of asthma, as well as other lung disorders, such as pulmonary hypertension. Adiponectin (APN), an antiinflammatory adipocytokine, circulates at lower levels in the obese, which is thought to contribute to obesity-related inflammatory diseases. We sought to determine the effects of APN deficiency in a murine model of chronic asthma. Allergic airway inflammation was induced in APN-deficient mice (APN−/−) using sensitization without adjuvant followed by airway challenge with ovalbumin. The mice were then analyzed for changes in inflammation and lung remodeling. APN−/− mice in this model develop increased allergic airway inflammation compared with wild-type mice, with greater accumulation of eosinophils and monocytes in the airways associated with elevated lung chemokine levels. Surprisingly, APN−/− mice developed severe pulmonary arterial muscularization and pulmonary arterial hypertension in this model, whereas wild-type mice had only mild vascular remodeling and comparatively less pulmonary arterial hypertension. Our findings demonstrate that APN modulates allergic inflammation and pulmonary vascular remodeling in a model of chronic asthma. These data provide a possible mechanism for the association between obesity and asthma, and suggest a potential novel link between obesity, inflammatory lung disease, and pulmonary hypertension.

  • Publication

    Evolutionarily Conserved Recognition and Innate Immunity to Fungal Pathogens by the Scavenger Receptors SCARF1 and CD36

    (Rockefeller University Press, 2009) Tampakakis, Emmanouil; Puckett, Lindsay; Tai, Melissa F.; Stewart, Cameron R.; Hickman, Suzanne E.; Moore, Kathryn J.; El Khoury, Joseph; Means, Terry K.; Mylonakis, E; Colvin, Richard Anthony; Seung, Edward N.; Pukkila-Worley, Read; Calderwood, Stephen; Hacohen, Nir; Luster, Andrew

    Receptors involved in innate immunity to fungal pathogens have not been fully elucidated. We show that the Caenorhabditis elegans receptors CED-1 and C03F11.3, and their mammalian orthologues, the scavenger receptors SCARF1 and CD36, mediate host defense against two prototypic fungal pathogens, Cryptococcus neoformans and Candida albicans. CED-1 and C03F11.1 mediated antimicrobial peptide production and were necessary for nematode survival after C. neoformans infection. SCARF1 and CD36 mediated cytokine production and were required for macrophage binding to C. neoformans, and control of the infection in mice. Binding of these pathogens to SCARF1 and CD36 was β-glucan dependent. Thus, CED-1/SCARF1 and C03F11.3/CD36 are β-glucan binding receptors and define an evolutionarily conserved pathway for the innate sensing of fungal pathogens.