Funding from Blood Cancer United can lead to scientific breakthroughs that will improve and save the lives of patients.
The Blood Cancer United Research Team oversees the organization's research strategy to support cutting-edge research for every type of blood cancer, including leukemia, lymphoma, and myeloma.
Take a look at all the currently active, extraordinary Blood Cancer United-funded research projects.
226 results
Omar Elganzouri
Memorial Sloan Kettering Cancer Center
New York, NY
United States
Student Mentorship and Research Training (SMART)
Therapeutic potential of mitochondrial transplantation in the treatment of MDS
Coming soon.
Project Term: August 1, 2026 - July 31, 2027
Soheil Meshinchi
Fred Hutchinson Cancer Research Center
Seattle, WA
United States
Academic Clinical Trials Program (ACT)
First in Human Mesothelia-Directed Artemis CART in Childhood AML
We discovered mesothelin to be expressed on AML cells, but absent on normal cells, thus providing a unique target to eliminate leukemia without causing cytopenia. We demonstrated efficacy of mesothelin-directed immunotherapy (CART) in AML. In collaboration with Eureka pharmaceutical, we will conduct the first trial using a mesothelin-directed CART in childhood AML.
Project Term: July 1, 2025 - June 30, 2028
Gerlinde Wernig
Stanford University
Stanford, CA
United States
Hairy Cell Leukemia Research Initiative
Identifying Prognostic Markers of Relapse in Hairy Cell Leukemia (HCL) and HCL-Variant by Profiling Mutated Blood Stem Cells and Fibrosis Pathways
This collaborative program investigates why Hairy Cell Leukemia (HCL) and its variant often relapse despite effective therapies and why bone-marrow fibrosis frequently persists after treatment. This proposal examines fibrosis as both a biomarker and a biological driver of disease. Project 1 determines whether persistent scarring predicts relapse and uses human bone-marrow organoid cultures to test how leukemia and stromal cells interact. Together, these studies connect patient data and experimental systems to reveal how fibrosis contributes to disease persistence in HCL and HCL-v.
Project Term: April 1, 2026 - March 31, 2029
Nitin Jain
The University of Texas MD Anderson Cancer Center
Houston, TX
United States
Translational Research Program
LCK-targeted Therapy in T cell Acute Lymphoblastic Leukemia
T-cell acute lymphoblastic leukemia (T-ALL) is a highly aggressive leukemia in adults with 5-year survival rate of only about 10% in patients with relapsed/refractory (R/R) disease, but LCK and BCL2 are novel therapeutic targets. In this project, we aim to conduct a Phase II clinical trial evaluating LCK inhibitor, ponatinib and BCL2 antagonist, venetoclax combination therapy in R/R T-ALL, with correlative biology studies to define biological mechanisms of drug response and resistance.
Project Term: July 1, 2022 - June 30, 2026
Christopher Oakes
The Ohio State University
Columbus, OH
United States
Hairy Cell Leukemia Research Initiative
Harnessing the epigenome to advance the classification and understanding of molecular mechanisms underlying hairy cell leukemia variant patients
Patients with B cell malignancies who do not fall into a distinct pathological disease category pose a challenge for patient care, and patient classification has been exacerbated by the recent emergence of two separate classification systems. Genome-wide DNA methylation is a stable and information-rich biomarker that has been successfully used to classify other cancer types, however remains understudied in hairy cell leukemia and related splenic B cell lymphoma and leukemia. In this proposal we will investigate the utility of DNA methylation to establish a novel, unbiased, biologically-based classification paradigm for hairy cell leukemia, with a focus on the variant subtype, and investigate novel mechanisms and etiology underlying these rare leukemia patients.
Project Term: April 1, 2026 - March 31, 2029
Stephen Oh
Washington University in St. Louis
St. Louis, MO
United States
CMML Initiative
Exploiting Novel Therapeutic Vulnerabilities in Chronic Myelomonocytic Leukemia
The overall objective of this project is to identify novel pathways that may be targeted for therapeutic benefit in CMML. We have identified abnormal inflammation mediated by RSK1 in CMML patient cells, and we hypothesize that RSK1 drives CMML disease development. We thus propose studies to determine how RSK1 contributes to CMML pathogenesis, and to evaluate the therapeutic potential of RSK1 inhibition for CMML patients.
Project Term: November 1, 2023 - October 31, 2026
Pietro Genovese
Boston Children's Hospital
Boston, MA
United States
Translational Research Program
Towards clinical testing of epitope editing to enable novel adoptive immunotherapies
Innovations in gene engineering have made it possible to reprogram immune cells to attack specific targets on cancer cells, allowing the first adoptive cellular immunotherapies, known as CAR T cells, to be approved by the FDA for the treatment B lymphoblastic leukemia. A similar approach is currently under development for AML, but in contrast to B-ALL, there is no leukemia-specific target which would be amenable to targeting by immune cells without incurring severe adverse effects. Here, we aim to modify normal bone marrow stem cells used for allogeneic transplantation to make them resistant to CAR-T cells, thus enabling targeting proteins essential for tumor survival without the risk of severe toxicity on the healthy tissue counterpart.
Project Term: July 1, 2023 - June 30, 2026
Stephen Forman
Beckman Research Institute of the City of Hope
Duarte, CA
United States
Academic Clinical Trials Program (ACT)
CD19-CAR T cells as Consolidation for Older Adults with Acute Lymphoblastic Leukemia in Remission
This proposal examines the use of CD19-directed chimeric antigen receptor (CD19-CAR) T cell immunotherapy to treat adults aged 55 years or older who have acute lymphoblastic leukemia (ALL) that is in remission following induction therapy (i.e., “first remission”). In this clinical trial, we will infuse the CD19-CAR T cells early in the treatment sequence, which may prevent the leukemia from returning without additional therapy. This clinical trial aims to give us a better understanding of CD19-CAR T cell safety and activity when given during first remission, with the goal of improving the very poor outcomes of older adults with ALL.
Project Term: July 1, 2024 - June 30, 2027
Jae Park
Sloan Kettering Institute for Cancer Research
New York, NY
United States
Academic Clinical Trials Program (ACT)
IL7 receptor-targeted CAR T-cell Therapy for T-Acute Lymphoblastic Leukemia (T-ALL)
On the basis that T-cell acute lymphoblastic leukemia (T-ALL) cells overexpress IL-7 receptor (IL7R), which promotes chemotherapy resistance and relapse, we developed IL7R-targeted chimeric antigen receptor (CAR) T cells with low- and high-affinity single-chain variable fragments (scFvs). Following extensive investigation, we established the antitumor efficacy of low-affinity IL7R CAR against T-ALL cells in vitro, in vivo and against patients’ T-ALL blasts using their own T cells transduced with IL7R CAR. With data establishing tumor specificity and antitumor efficacy, and a novel manufacturing method of ‘natural selection’ to seamlessly manufacture a large number of IL7R CAR T cells from patients with T-ALL, we are now proceeding with Investigational New Drug studies to initiate a phase I clinical trial in 2025 Q4.
Project Term: July 1, 2025 - September 1, 2027
Gregory Abel
Dana-Farber Cancer Institute
Boston, MA
United States
Hairy Cell Leukemia Research Initiative
Quality of Life, Outcomes, and Decision Making for Patients with Hairy Cell Leukemia
We aim to determine if rigorous assessment of quality of life (QOL) can help with treatment decisions for hairy cell leukemia (HCL). We will first analyze a robust HCL patient database to understand QOL trajectories among patients before they need initial treatment or relapse, as well as among specific subgroups such as those who are younger (75), and those who or working. We will then then utilize a patient-driven consensus process to determine which QOL instruments most accurately reflect experiences when facing treatment or re-treatment. Finally, we will engage 30 HCL patients nearing treatment or re-treatment, measure QOL, and provide results for discussion with providers, measuring feasibility and preliminary impact of this approach.
Project Term: April 1, 2026 - March 31, 2029
Who we fund
Learn more about the inspiring blood cancer scientists we support—and leading biotech companies we partner with— who are working to find cures and help blood cancer patients live longer, better lives.
Research Grants
We award grants for studies that range from basic blood cancer research to pioneering clinical trials. For more than seventy years, Blood Cancer United support has been instrumental in the development of the vast majority of breakthroughs in blood cancer treatment.
Therapy Acceleration Program ®(TAP)
TAP is a mission-driven, strategic venture philanthropy initiative that seeks to accelerate the development of innovative blood cancer therapeutics and change the standard of care while also generating a return on investment for the Blood Cancer United mission. TAP collaborates with biotech companies to support the development of novel platforms, first-in-class assets addressing high unmet medical needs, emerging patient populations, and orphan indications.