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Completed

NCT Number: NCT00607672

The RAS, Fibrinolysis and Cardiopulmonary Bypass

Each year over a million patients worldwide undergo cardiac surgery requiring cardiopulmonary bypass (CPB).1 CPB is associated with significant morbidity including hemodynamic instability, the transfusion of allogenic blood products, and inflammation. Blood product transfusion increases mortality after cardiac surgery. Enhanced fibrinolysis contributes to increased blood product transfusion requirements in the perioperative period. CPB activates the kallikrein-kinin system (KKS), leading to increased bradykinin concentrations. Bradykinin, acting through its B2 receptor, stimulates the release of nitric oxide, inflammatory cytokines and tissue-type plasminogen activator (t-PA). Based on data indicating that angiotensin-converting enzyme (ACE) inhibitors reduce mortality in patients with coronary artery disease, many patients undergoing CPB are taking ACE inhibitors. While interruption of the renin-angiotensin system (RAS) reduces inflammation in response to CPB, ACE inhibitors also potentiate the effects of bradykinin and may augment B2-mediated change in fibrinolytic balance and inflammation. In contrast, angiotensin II type 1 receptor antagonism does not potentiate bradykinin and does not inhibit bradykinin metabolism.

Studies in animals suggest that bradykinin receptor antagonism inhibits reperfusion-induced increases in vascular permeability and neutrophil recruitment.A randomized, placebo controlled clinical trial of a bradykinin B2 receptor antagonist demonstrated some effect on survival in patients with systemic inflammatory response syndrome and gram-negative sepsis. In addition, we and others have shown bradykinin B2 receptor antagonism reduces vascular t-PA release during ACE inhibition. The current proposal derives from data from our laboratory and others elucidating the role of the KKS in the inflammatory, hypotensive and fibrinolytic response to CPB. Specifically, we have found that CPB activates the KKS and that ACE inhibition and smoking further increases bradykinin concentrations. During CPB, bradykinin concentrations correlate inversely with mean arterial pressure and directly with t-PA. Moreover, we have found that bradykinin receptor antagonism attenuates protamine-related hypotension following CPB. The current proposal tests the central hypothesis that the fibrinolytic and inflammatory response to cardiopulmonary bypass differ during angiotensin-converting enzyme inhibition and angiotensin II type 1 receptor antagonism.

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Key information

Age range

18 year–80 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 4

Primary location

TN Valley Healthcare System, Nashville, Tennessee, United States

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Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

Inclusion criteria

  • Subjects, 18 to 80 years of age, scheduled for elective cardiac surgery requiring CPB
  • For female subjects, the following conditions must be met:

postmenopausal for at least 1 year, or status-post surgical sterilization, or if of childbearing potential, utilizing adequate birth control and willing to undergo urine beta-hcg testing prior to drug treatment and on every study day

Exclusion criteria

  • Left ventricle ejection fraction less than 30%
  • History of ACE inhibitor-induced angioedema
  • Hypotension (systolic blood pressure <100 mmHg and evidence of hypoperfusion)
  • Hyperkalemia (baseline potassium >5.0 mEq/L)
  • Inability to discontinue current ACE inhibitor or AT1 receptor antagonist.
  • Emergency surgery
  • Impaired renal function (serum creatinine >1.6 mg/dl)
  • Pregnancy
  • Breast-feeding
  • Any underlying or acute disease requiring regular medication which could possibly pose a threat to the subject or make implementation of the protocol or interpretation of the study results difficult
  • History of alcohol or drug abuse
  • Treatment with any investigational drug in the 1 month preceding the study
  • Mental conditions rendering the subject unable to understand the nature, scope and possible consequences of the study
  • Inability to comply with the protocol, e.g. uncooperative attitude and unlikelihood of completing the study

Treatment and study plan

Placebo

Drug

Placebo

Ramipril

Drug

Ramipril 2.5mg day 1 and 2 and then 5mg/d thereafter

Candesartan

Drug

Candesartan 16mg/d

Primary outcomes

  1. Tissue-type Plasminogen Activator (t-PA) Antigen Response

    Time frame: From the start of surgery until postoperative day 2

    To compare the effects of angiotensin II type I (AT1) receptor antagonism or angiotensin-converting enzyme (ACE) inhibition versus placebo on the fibrinolytic responses to cardiopulmonary bypass (CPB) as measured by t-PA antigen response

  2. Plasminogen Activator Inhibitor-1 (PAI-1) Response

    Time frame: From the start of surgery until postoperative day 2

    To compare the effects of AT1 receptor antagonism or ACE inhibition versus placebo on the fibrinolytic responses to CPB as measured by PAI-1 response

  3. Interleukin-6 (IL-6) Response

    Time frame: From the start of surgery until postoperative day 2

    To compare the effects of AT1 receptor antagonism or ACE inhibition versus placebo on the inflammatory response to CPB as measured by IL-6

  4. Interleukin-8 (IL-8) Response

    Time frame: From the start of surgery until postoperative day 2

    To compare the effects of AT1 receptor antagonism or ACE inhibition versus placebo on the inflammatory response to CPB as measured by IL-8

  5. Interleukin-10 (IL-10) Response

    Time frame: From the start of surgery until postoperative day 2

    To compare the effects of AT1 receptor antagonism or ACE inhibition versus placebo on the inflammatory response to CPB as measured by the IL-10 response

Secondary outcomes

  1. Blood Loss

    Time frame: First 24 hours after arrival in the intensive care unit

    Blood loss over 24 hours as measured by chest tube output

  2. Re-exploration for Bleeding

    Time frame: From arrival in intensive care unit until discharge from hospital

    The percentage of patients that were taken back to the operating room for re-exploration because of bleeding

  3. Blood Product Transfusion Requirement

    Time frame: From the start of surgery until discharge from hospital

    Percentage of patients that received blood product transfusion

  4. Vasopressor Drug Use

    Time frame: From the end of cardiopulmonary bypass until arrival in intensive care unit

  5. New Onset Atrial Fibrillation

    Time frame: From arrival in intensive care unit until discharge from hospital

    New onset atrial fibrillation based on electrocardiogram (ECG) rhythm strips with a duration longer than 10 seconds

  6. Acute Kidney Injury

    Time frame: From the start of surgery until postoperative day 3

    Acute kidney injury (AKI) was defined according to Acute Kidney Injury Network (AKIN) criteria,specifically any increase in subject serum creatinine concentration of 50% or 0.3 mg/dL (26.5 umol/L) within 72 hours of surgery.

  7. Stroke

    Time frame: From arrival in intensive care unit until discharge from hospital

    New onset neurological deficit with a duration of longer than 24 hours

  8. Length of Hospital Stay

    Time frame: From the start of surgery until discharge from hospital

Sponsors and collaborators

Lead sponsor

Vanderbilt University

Other

Registry information

Important dates

Study start
2006
Primary completion
2011
Study completion
2011
First posted
Feb 6, 2008
Registry last updated
Oct 10, 2012

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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