Inhibition of Cardiac Device Induced Cellular Dysfunction in Pigs

Information

  • Research Project
  • 8132786
  • ApplicationId
    8132786
  • Core Project Number
    R44HL102890
  • Full Project Number
    4R44HL102890-02
  • Serial Number
    102890
  • FOA Number
    PA-09-080
  • Sub Project Id
  • Project Start Date
    8/17/2010 - 14 years ago
  • Project End Date
    7/31/2013 - 11 years ago
  • Program Officer Name
    MILLER, MARISSA A.
  • Budget Start Date
    8/22/2011 - 13 years ago
  • Budget End Date
    7/31/2012 - 12 years ago
  • Fiscal Year
    2011
  • Support Year
    2
  • Suffix
  • Award Notice Date
    8/18/2011 - 13 years ago

Inhibition of Cardiac Device Induced Cellular Dysfunction in Pigs

DESCRIPTION (provided by applicant): Artificial surfaces of cardiac devices induce cellular activation and platelet dysfunction in patients undergoing bypass procedure. While other pathways may be activated during this process, alternative pathway (AP) activation appears to be one of the important mechanisms for cellular activation and platelet dysfunction in the whole blood model of biomaterial surface-induced activation. Our hypothesis is based on the ex vivo whole blood circulation model demonstrating near complete inhibition of cellular activation, platelet dysfunction, and release of inflammatory mediators by a target-specific mAb. We would like to extend these novel findings utilizing a pig model of cardiopulmonary bypass with an induced occlusion of the descending coronary artery to mimic the clinical setting. During and following circulation through the CPB, high circulating levels of anaphylatoxins, C3a and C5a, and activated neutrophils, monocytes, and platelets are expected. As a result, activated neutrophils and monocytes release inflammatory mediators that cause organ damage and activated platelets become dysfunctional. These events can cause thrombosis, thrombocytopenia, and severe bleeding complications. NovelMed intends to test a target-specific and highly selective monoclonal antibody that blocks AP activation, cellular activation, platelet dysfunction, and blood loss in a pig model of cardiopulmonary bypass. Collective effects of these inflammatory events on multiple organ failure will be evaluated in this proposal using the proposed pig cardiopulmonary bypass model. Proof of concept in a well-accepted pig model of occlusion with CPB is a critical step for furthering the development of NovelMed's lead biologic and moving it towards clinical use. PUBLIC HEALTH RELEVANCE: Billions of dollars are spent annually to prevent systemic inflammatory response in cardiac patients undergoing cardiac procedures with cardiopulmonary bypass to correct partial or complete occlusion of the coronary artery. Cardiac failure can occur if the coronary descending artery is completely occluded. There is currently no approved prophylactic therapeutic for CPB-associated inflammatory responses. When the blood flow in the occluded, ischemia reperfusion injury can exacerbate the response. There is no approved therapeutic for IRI or for CPB associated inflammatory response. NovelMed intends to develop YalcioMab as a treatment to prevent complications that occur as a result of AP activation in the pig model of ischemia with cardiopulmonary bypass.

IC Name
NATIONAL HEART, LUNG, AND BLOOD INSTITUTE
  • Activity
    R44
  • Administering IC
    HL
  • Application Type
    4
  • Direct Cost Amount
  • Indirect Cost Amount
  • Total Cost
    503352
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    837
  • Ed Inst. Type
  • Funding ICs
    NHLBI:503352\
  • Funding Mechanism
    SBIR-STTR
  • Study Section
    ZRG1
  • Study Section Name
    Special Emphasis Panel
  • Organization Name
    NOVELMED THERAPEUTICS, INC.
  • Organization Department
  • Organization DUNS
    190155171
  • Organization City
    CLEVELAND
  • Organization State
    OH
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    441063007
  • Organization District
    UNITED STATES