Goal 2: Reduce Human Disease

Mitigating risks due to the RBC storage lesion and vulnerable patients

What are the underlying dependencies (genomic, metabolic, disease) in individual donors that either accelerate or delay the changes to red blood cells during refrigerated storage? What methods of preparation might protect patients from the risks posed by the accelerated degradation of RBCs provided by "poor storers"? What characteristics of individual patients make them particularly vulnerable to transfusion of red ...more »

Submitted by (@andrew.dunham)

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Goal 2: Reduce Human Disease

Making It Real: Affordable Physiologically Relevant In Vitro Environments

We have done the best we can to mimic the human internal environment in vitro for the discovery, testing, and validation of therapeutics, but there is a critical need to do better. The use of more complex cell-based in vitro models is the result of the recognition of how little predictive power there is in current experimental conditions, even with animal models. With an in vitro environment that goes beyond temperature ...more »

Submitted by (@ahenn0)

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Goal 2: Reduce Human Disease

Innovations in Red Cell Transfusion in Sickle Cell Disease

Challenges that need to be overcome in blood transfusion, especially in SCD, include: a. Adopting molecular genotyping as the standard in blood transfusion therapy. b. Advancing new generation, anti-oxidant hemoglobin-based oxygen carriers (HBOCs) for use in emergencies such as trauma, stroke, acute hemolysis, and in transfusion in SCD and related disorders. In SCD, HBOCs have the capacity to not only serve as substitutes ...more »

Submitted by (@nhlbiforumadministrator1)

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