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17,828 grants matching crispr

Reprogramming organismal lifespan through modulation of neuropeptides

$128,493
Claire Nicole Bedbrook · Stanford University · K99 · FY2024 · AG

Elucidating anti-angiogenic tyrosine kinase inhibitor-induced vascular dysfunction

$128,493
Mengcheng Shen · Stanford University · K99 · FY2023 · HL

Elucidating anti-angiogenic tyrosine kinase inhibitor-induced vascular dysfunction

$128,493
Mengcheng Shen · Stanford University · K99 · FY2024 · HL

Investigating the role of sleep in brain resilience during aging using a scalable and short-lived vertebrate model

$128,331
Ravi Nath · Stanford University · K99 · FY2024 · AG

Contribution of hypocretin neuron activity to Alzheimer's related sleep disturbances

$128,331
Oscar Christian Gonzalez · Stanford University · K99 · FY2024 · AG

Investigating the role of sleep in brain resilience during aging using a scalable and short-lived vertebrate model

$128,331
Ravi Nath · Stanford University · K99 · FY2023 · AG

Contribution of hypocretin neuron activity to Alzheimer's related sleep disturbances

$128,331
Oscar Christian Gonzalez · Stanford University · K99 · FY2025 · AG

Elucidating the function of WNT4 in endocrine response and resistance in invasive lobular carcinoma

$128,153
Matthew J Sikora · University Of Pittsburgh At Pittsburgh · K99 · FY2016 · CA

Elucidating the function of WNT4 in endocrine response and resistance in invasive lobular carcinoma

$128,153
Matthew J Sikora · University Of Pittsburgh At Pittsburgh · K99 · FY2015 · CA

Dissection of specialized metabolism in plants using multiplexed perturbation

$128,046
Conor James McClune · Stanford University · K99 · FY2025 · AT

Dissection of specialized metabolism in plants using multiplexed perturbation

$128,046
Conor James McClune · Stanford University · K99 · FY2024 · AT

Synaptic mechanisms of tau-mediated pathogenesis in human iPSC-derived neurons

$128,034
Tara Tracy · J. David Gladstone Institutes · K01 · FY2018 · AG

Non-canonical FADD signaling as a genetic driver of invasive lobular carcinoma

$128,012
Nilgun Tasdemir · University Of Pittsburgh At Pittsburgh · K99 · FY2020 · CA

Non-canonical FADD signaling as a genetic driver of invasive lobular carcinoma

$128,012
Nilgun Tasdemir · University Of Pittsburgh At Pittsburgh · K99 · FY2019 · CA

Targeting aspartate biosynthesis in pancreatic tumors

$127,990
Javier Garcia Bermudez · Rockefeller University · K99 · FY2020 · CA

A Resource Center for Tetrahymena Thermophila

$127,970
Theodore G Clark · Cornell University · P40 · FY2021 · OD

Developmental and evolutionary basis of neuronal diversity

$127,737
Nikolaos Konstantinides · New York University · K99 · FY2018 · EY

Notch signaling in cardiomyocyte transcriptome signatures

$127,683
Jared Churko · Stanford University · K99 · FY2016 · HL

Cell Surface Receptor Recognition and Membrane Fusion in Mammalian Fertilization

$127,544
Shaogeng Tang · Stanford University · K99 · FY2022 · HD

Regulation of Protein Production Dynamics: RNA Binding Proteins and the Ribosome Code

$127,500
Marko Jovanovic · Columbia Univ New York Morningside · R35 · FY2020 · GM

Discovery and Characterization of Capsid-Targeting Lentiviral Restriction Factors

$127,416
Molly Ohainle · Fred Hutchinson Cancer Center · R01 · FY2022 · AI

SMALL NON-CODING RNA REGULATION OF RAS-GTPase FUNCTION IN EPIDERMAL HOMEOSTASIS

$127,386
Brian J Zarnegar · Stanford University · K01 · FY2020 · AR

SMALL NON-CODING RNA REGULATION OF RAS-GTPase FUNCTION IN EPIDERMAL HOMEOSTASIS

$127,386
Brian J Zarnegar · Stanford University · K01 · FY2018 · AR

SMALL NON-CODING RNA REGULATION OF RAS-GTPase FUNCTION IN EPIDERMAL HOMEOSTASIS

$127,386
Brian J Zarnegar · Stanford University · K01 · FY2021 · AR

SMALL NON-CODING RNA REGULATION OF RAS-GTPase FUNCTION IN EPIDERMAL HOMEOSTASIS

$127,386
Brian J Zarnegar · Stanford University · K01 · FY2017 · AR