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CompletedNCT00968227Updated Apr 17, 2017Results posted

Effect of Red Blood Cell Transfusion on Brain Metabolism in Patients With Subarachnoid Hemorrhage

A Phase 1/2 interventional study of Red blood cell transfusion in Subarachnoid Hemorrhage and Vasospasm, sponsored by Washington University School of Medicine. Completed at 1 site in United States. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2017-04-17.

Sponsored by Washington University School of Medicine · Phase 1/2, Interventional, and Treatment

Phase
Phase 1/2
Study type
Interventional
Enrollment
56
Allocation
Not applicable
Ages
18 Years and older
Sex
All
01

Study summary

The purpose of this study is to determine if giving blood transfusions to anemic patients with subarachnoid hemorrhage will reduce their chances of having a stroke from vasospasm.

Read the detailed description

Each year, approximately 30,000 people suffer aneurysmal subarachnoid hemorrhage (SAH) in the United States. The most common and potentially treatable cause of secondary neurological injury in this population is delayed ischemic deficit (DID). As the name implies, this phenomenon is fundamentally a reduction of cerebral blood flow (CBF) and oxygen delivery below critical ischemic thresholds, occurring days after the onset of hemorrhage. Three inter-related physiological processes appear to be involved in the reduced oxygen delivery: severe narrowing of intracranial arteries (arterial vasospasm), intravascular volume depletion and a loss of normal autoregulatory function in the distal circulation. DID occurs in up to 40% of patients surviving SAH. One third of these patients will die from this phenomenon and another third will be left with permanent and severe disability.

The optimal treatment of vasospasm is not known. Medical management involves a number of hemodynamic manipulations and is usually referred to as hypervolemic, hypertensive, hemodilution (or Triple-H) therapy. Our knowledge of the physiological impact of the individual components or a combination of them is limited and clinical efficacy has not been established. The information gained in this study has great potential to advance our knowledge regarding the role of hematocrit in the optimal treatment of this often-devastating condition.

Changes in hematocrit can potentially impact brain oxygen delivery in two ways. First, there is a linear relationship between hemoglobin and arterial oxygen content, lower hematocrit less oxygen. Thus at a given CBF lowering hematocrit reduces brain oxygen delivery. Fortunately, the brain responds to this by increasing blood flow to restore oxygen delivery to baseline levels. Additionally, lowering hematocrit has another effect, it reduces viscosity which in and of itself can raise CBF, but in a non-linear way. It is the relative contribution of these two effects that will determine if oxygen delivery improves.

It has been proposed by largely on theoretical consideration that the "optimal" hematocrit that achieves this balance is 30-35%. Yet no study to date has assessed the relationship between hematocrit and oxygen delivery in SAH patients. Other observations, however, suggest that higher hemoglobin levels in SAH patients was associated with better outcomes. Finally another retrospective review suggested that receiving transfusions increased risk for vasospasm and poor outcome after subarachnoid hemorrhage.

We are proposing to begin a series of studies to determine the appropriate management of hematocrit in SAH patients. The first is to define the appropriate physiologic response (cerebral oxygen delivery and metabolism) to a change in hematocrit. Then the "optimal" hematocrit can be defined. Only then will we be able to properly design clinical outcome trials.

02

Conditions studied

  • Subarachnoid Hemorrhage
  • Vasospasm

Keywords

  • subarachnoid hemorrhage
  • vasospasm
  • transfusion
  • cerebral oxygen delivery
  • hemoglobin
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In context

Subarachnoid Hemorrhage

509 studies on the registry are indexed under Subarachnoid Hemorrhage; 124 are open to participants now.

This study's enrollment of 56 is close to the median of 52 across 263 interventional studies indexed under Subarachnoid Hemorrhage.

Browse Subarachnoid Hemorrhage studies →

Lead sponsor

Washington University School of Medicine is the lead sponsor of 1,765 studies on the registry; 271 are open to participants now.

Of its 324 completed or terminated interventional studies of FDA-regulated products, 212 (65%) have results posted.

Counted across the registry records on this site, refreshed daily.

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Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  1. Aneurysmal SAH confirmed by angiography
  2. Hemoglobin \< 12.5 gm/dl
  3. One of the following:

    • Considered at increased risk for vasospasm by care team
    • Angiographic vasospasm
    • Delayed ischemic deficit
  4. Able to be studied within 2 weeks after subarachnoid hemorrhage

Exclusion criteria

Exclusion Criteria:

  1. Active Coronary Artery Disease
  2. Severe congestive heart failure
  3. Jehovah's witness
  4. Unable to obtain appropriately matched blood
  5. Other contraindications for transfusion
  6. Pregnancy
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Study design

Phase
Phase 1 / Phase 2
Primary purpose
Treatment
Allocation
Not applicable
Intervention model
Single group
Masking
None (open label)
Enrollment
56 participants (actual)

Study arms

  • Experimental
    Transfusion

    Biological: Red blood cell transfusion

Interventions

  • BiologicalRed blood cell transfusion

    Transfusion of 1 unit of packed red blood cells over 1 hour.

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What researchers measure

Primary outcomes

  1. Change in Oxygen Delivery in Vulnerable Brain Regions

    Change in oxygen delivery after transfusion in brain regions with low baseline delivery.

    Time frame: 1 hour

Secondary outcomes

  1. Change in Oxygen Extraction Fraction in Regions With Low Baseline Delivery.

    Change in oxygen extraction fraction after transfusion of 1 unit of RBC in regions with low baseline delivery (DO2 \< 4.5 ml/100g/min.

    Time frame: 1 hour

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Results

Posted Apr 17, 2017

Participant flow

Participant flow — Overall Study
MilestoneTransfusion
Started56
Completed56
Not completed0

Outcome measures

PrimaryChange in Oxygen Delivery in Vulnerable Brain Regions

Change in oxygen delivery after transfusion in brain regions with low baseline delivery.

Time frame:
1 hour
Reported as:
Mean · ml/100g/min
Change in Oxygen Delivery in Vulnerable Brain Regions
ml/100g/minTransfusion
Baseline3.7 ± 0.5
Post transfusion4.3 ± 0.9
Statistical analysis
  • Transfusion · t-test, 2 sided · p = 0.001
SecondaryChange in Oxygen Extraction Fraction in Regions With Low Baseline Delivery.

Change in oxygen extraction fraction after transfusion of 1 unit of RBC in regions with low baseline delivery (DO2 \< 4.5 ml/100g/min.

Time frame:
1 hour
Reported as:
Mean · fraction
Change in Oxygen Extraction Fraction in Regions With Low Baseline Delivery.
fractionTransfusion
Baseline0.49 ± 0.14
Post transfusion0.44 ± 0.14

Adverse events

Non-serious events are listed at a 0% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Transfusion4/56 (7.1%)0/56 (0%)0/56 (0%)

Baseline characteristics

Age, Continuous
Age, Continuous(years)Transfusion
Mean54 (48 to 70)
Sex: Female, Male
Sex: Female, Male(Participants)Transfusion
Female42
Male14
Race (NIH/OMB)
Race (NIH/OMB)(Participants)Transfusion
American Indian or Alaska Native0
Asian0
Native Hawaiian or Other Pacific Islander0
Black or African American12
White44
More than one race0
Unknown or Not Reported0
Region of Enrollment
Region of Enrollment(participants)Transfusion
United States56
08

Study locations

1 site
  • Washington University Medical Center
    St Louis, Missouri 63110, United States
09

References and documents

Publications

  • Dhar R, Zazulia AR, Videen TO, Zipfel GJ, Derdeyn CP, Diringer MN. Red blood cell transfusion increases cerebral oxygen delivery in anemic patients with subarachnoid hemorrhage. Stroke. 2009 Sep;40(9):3039-44. doi: 10.1161/STROKEAHA.109.556159. Epub 2009 Jul 23. PubMed 19628806 ↗
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Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Apr 17, 2017, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
11

Registry details

Key details

Study ID
NCT00968227
Lead sponsor
Washington University School of Medicine
Collaborators
National Institute of Neurological Disorders and Stroke (NINDS)
Responsible party
Sponsor
First posted
Aug 28, 2009
Start date
Nov 2007
Primary completion
Aug 2015
Completion
Aug 2015
Results posted
Apr 17, 2017
Last update
Apr 17, 2017

Study contacts

Michael Diringer, MD
principal investigator · Washington University School of Medicine

Oversight

Data monitoring committee
No
View the source record on ClinicalTrials.gov ↗

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This study is completed, as verified in Mar 2017. You cannot join it, but the record below documents what was studied.

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