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17,054 grants matching genome editing

From Locus to Function: Role of ZEB2 in Human Risk of Coronary Artery Disease

$166,536
Paul Po Sheng Cheng · Stanford University · K08 · FY2021 · HL

A synthetic hematopoietic stem cell niche to investigate stemness and hematopathologies

$166,536
Adam C Wilkinson · Stanford University · K99 · FY2020 · HL

A universal genome editing strategy to develop an airway stem cell therapy for cystic fibrosis

$166,536
Sriram Vaidyanathan · Stanford University · K99 · FY2022 · HL

From Locus to Function: Role of ZEB2 in Human Risk of Coronary Artery Disease

$166,536
Paul Po Sheng Cheng · Stanford University · K08 · FY2022 · HL

From Locus to Function: Role of ZEB2 in Human Risk of Coronary Artery Disease

$166,536
Paul Po Sheng Cheng · Stanford University · K08 · FY2020 · HL

A universal genome editing strategy to develop an airway stem cell therapy for cystic fibrosis

$166,536
Sriram Vaidyanathan · Stanford University · K99 · FY2021 · HL

REGULATORY MECHANISMS OF HOX GENE EXPRESSION IN ACUTE MYELOID LEUKEMIA

$166,298
David H Spencer · Washington University · K08 · FY2017 · CA

REGULATORY MECHANISMS OF HOX GENE EXPRESSION IN ACUTE MYELOID LEUKEMIA

$166,298
David H Spencer · Washington University · K08 · FY2015 · CA

REGULATORY MECHANISMS OF HOX GENE EXPRESSION IN ACUTE MYELOID LEUKEMIA

$166,298
David H Spencer · Washington University · K08 · FY2019 · CA

REGULATORY MECHANISMS OF HOX GENE EXPRESSION IN ACUTE MYELOID LEUKEMIA

$166,298
David H Spencer · Washington University · K08 · FY2016 · CA

Integrative genomic analysis of adenosine-to-inosine editing in Alzheimer's disease

$166,240
Michael S Breen · Icahn School Of Medicine At Mount Sinai · R03 · FY2023 · AG

Defining the formation and function of carcinoma-associated mesenchymal stem cells in the ovarian cancer microenvironment

$166,050
Lan Coffman · University Of Pittsburgh At Pittsburgh · K08 · FY2017 · CA

Defining the formation and function of carcinoma-associated mesenchymal stem cells in the ovarian cancer microenvironment

$166,050
Lan Coffman · University Of Pittsburgh At Pittsburgh · K08 · FY2020 · CA

Defining the formation and function of carcinoma-associated mesenchymal stem cells in the ovarian cancer microenvironment

$166,050
Lan Coffman · University Of Pittsburgh At Pittsburgh · K08 · FY2018 · CA

Defining the formation and function of carcinoma-associated mesenchymal stem cells in the ovarian cancer microenvironment

$166,050
Lan Coffman · University Of Pittsburgh At Pittsburgh · K08 · FY2019 · CA

ADAR mediated RNA editing is a causal mechanism in coronary artery disease

$165,996
Chad S Weldy · Stanford University · K08 · FY2025 · HL

ADAR mediated RNA editing is a causal mechanism in coronary artery disease

$165,996
Chad S Weldy · Stanford University · K08 · FY2023 · HL

ADAR mediated RNA editing is a causal mechanism in coronary artery disease

$165,996
Chad S Weldy · Stanford University · K08 · FY2024 · HL

SCGE Disease Models Studies Supplement: Evaluation of prime editing for the amelioration of alpha-1-antitrypsin deficiency in murine and porcine models.

$165,970
Daniel Fred Carlson · Recombinetics, Inc. · U24 · FY2022 · OD

Genome Engineering Shared Resource

$165,907
Eric A Hendrickson · University Of Minnesota · P30 · FY2021 · CA

Genome Engineering Shared Resource

$165,907
Eric A Hendrickson · University Of Minnesota · P30 · FY2023 · CA

Genome Engineering Shared Resource

$165,907
Eric A Hendrickson · University Of Minnesota · P30 · FY2019 · CA

Genome Engineering Shared Resource

$165,907
Eric A Hendrickson · University Of Minnesota · P30 · FY2022 · CA

Genome Engineering Shared Resource

$165,907
Eric A Hendrickson · University Of Minnesota · P30 · FY2020 · CA

Precision Gene Editing on Osteogenesis Imperfecta

$165,825
Tadatoshi Sato · Univ Of Massachusetts Med Sch Worcester · R21 · FY2025 · AR