Extra-Cellular Hemoglobin, Organ Injury in Extended Cardiopulmonary Bypass
试验速览
- 阶段
- 不适用
- 状态
- 进行中(未招募)
- 入组人数
- 111
- 试验地点
- 2
- 主要终点
- Hemolysis
研究概览
简要总结
Studying the dynamics of red blood cell lysis, pfH, protective proteins and organ injury, limits will be set for safe levels of pfH following the use of CPB. These results will be compared to existing laboratory-based methods for determining red blood cell damage to predict CPB assist device safety. Further, results from the studies described in this proposal will help develop therapeutic strategies to benefit patients by early detection of pfH and clearance protein levels that occur during CPB.
详细描述
Cost estimates for brain, lung, cardiac, and kidney complications following complex cardiac surgeries that require a medical assist device to by-pass the heart and lungs (cardiopulmonary bypass, CPB) is estimated to cost $80 million per individual states in the US over a ten-year period. These extra costs represent a significant burden on the healthcare system but could be reduced by understanding how medical assist devices lead to organ injury associated with complex cardiac surgeries. The primary goals of this research are to (1) understand how hemoglobin released into plasma (pfH) from damaged red blood cells that passage through CPB contributes to organ injury. (2) Determine the amount of pfH necessary to cause organ injury. (3) Determine the concentration changes in protective proteins (called haptoglobin, hemopexin and transferrin) that remove pfH and its degradation products from the circulation. (4) Design a computer-based model that will determine the levels of pfH and protective proteins to predict the potential for organ injury. By studying the dynamics of red blood cell lysis, pfH, protective proteins and organ injury limits will be set for safe levels of pfH following the use of CPB. These results will be compared to existing laboratory-based methods for determining red blood cell damage to predict CPB assist device safety. Further, results from the studies described in this proposal will help develop therapeutic strategies to benefit patients by early detection of pfH and clearance protein levels that occur during CPB. The primary goals of this research are to (1) understand how hemoglobin released into plasma (pfH) from damaged red blood cells that passage through CPB contributes to organ injury. (2) Determine the amount of pfH necessary to cause organ injury. (3) Determine the concentration changes in protective proteins (called haptoglobin, hemopexin and transferrin) that remove pfH and its degradation products from the circulation. (4) Design a computer-based model that will determine the levels of pfH and protective proteins to predict the potential for organ injury. By studying the dynamics of red blood cell lysis, pfH, protective proteins and organ injury limits will be set for safe levels of pfH following the use of CPB. These results will be compared to existing laboratory-based methods for determining red blood cell damage to predict CPB assist device safety. Further, results from the studies described in this proposal will help develop therapeutic strategies to benefit patients by early detection of pfH and clearance protein levels that occur during CPB.
研究设计
- 研究类型
- Observational
- 观察模型
- Cohort
- 时间视角
- Prospective
入排标准
- 年龄范围
- 18 Years 至 88 Years(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Admitted to UMMC for cardiac procedure
- •Age: >/=18 y.o TO 88 y.o.
- •Undergoing CPB >1hr for the following surgeries (a) complex cardiac surgery (b) heart valve replacement surgery OR (c) CABG surgery.
排除标准
- •Non English speaking
- •Unable to consent or have Legally Authorized Representative (LAR) assent to study
研究组 & 干预措施
Cardiac Sugery Patients Requiring Cardiopulmonary >1hour
Patients admitted for a complex cardiac surgery, heart valve replacement and/or CABG surgery requiring CPB >1hour
干预措施: Blood and urine collection (Other)
结局指标
主要结局
Hemolysis
时间窗: Change from baseline on day 5 post procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
Hemolysis
时间窗: Change from baseline at hour 1 during procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron
Hemolysis
时间窗: Change from baseline at hour 2 during procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron
Hemolysis
时间窗: Change from baseline at hour 3 during procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron
Hemolysis
时间窗: Change from baseline at hour 4 during procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
Hemolysis
时间窗: Change from baseline at hour 4 post procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
Hemolysis
时间窗: Change from baseline at hour 2 post procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
Hemolysis
时间窗: Change from baseline at hour 24 post procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
Hemolysis
时间窗: Change from baseline on day 2 post procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
Hemolysis
时间窗: Change from baseline on day 3 post procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
Hemolysis
时间窗: Change from baseline on day 4 post procedure
Change in Measure hemoglobin released into plasma (pfH), lactate dehydrogenase and iron etc. Change from Baseline at Hour 1 during procedure
次要结局
- Kidney injury(Change from baseline at 5 days post procedure)
- Kidney injury(Change from baseline at hour 1 during procedure)
- Kidney injury(Change from baseline at hour 2 during procedure)
- Kidney injury(Change from baseline at hour 3 during procedure)
- Kidney injury(Change from baseline at hour 4 during procedure)
- Kidney injury(Change from baseline at hour 2 post procedure)
- Kidney injury(Change from baseline at hour 24 post procedure)
- Kidney injury(Change from baseline at 2 days post procedure)
- Kidney injury(Change from baseline at 3 days post procedure)
- Kidney injury(Change from baseline at 4 days post procedure)
研究者
Paul Buehler
Research Faculty
University of Maryland, Baltimore
