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30,917 grants matching “tumor microenvironment”
Using natural killer cells to prevent breast cancer metastases
$255,383Isaac Chan · Ut Southwestern Medical Center · K08 · FY2023 · CA
Using natural killer cells to prevent breast cancer metastases
$255,383Isaac Chan · Ut Southwestern Medical Center · K08 · FY2024 · CA
Using natural killer cells to prevent breast cancer metastases
$255,383Isaac Chan · Ut Southwestern Medical Center · K08 · FY2025 · CA
Complex ganglioside function in neuroblastoma
$255,306Stephan Ladisch · Children'S Research Institute · R01 · FY2006 · CA
Immune Microenvironments and Hepatocyte Growth Factor Signaling Interactions in Breast Cancer Disparities
$255,216Kevin Peter Williams · North Carolina Central University · U54 · FY2022 · MD
HOW ENVIRONMENTAL CHEMICALS IMPAIR IMMUNITY
$255,194Boston University Medical Campus · R01 · FY2001 · ES
In situ anti-tumor immunity and effects of radiation
$255,194Edith M. Lord · University Of Rochester · R01 · FY2016 · CA
Engineering T Cells for Pancreatic Cancer
$255,140Ann M. Leen · Baylor College Of Medicine · P01 · FY2013 · CA
Role of JNK Pathway in Lung Tumorigenesis
$255,132Lynn E Heasley · University Of Colorado Denver · R01 · FY2009 · CA
Role of JNK Pathway in Lung Tumorigenesis
$255,132Lynn E Heasley · University Of Colorado Denver · R01 · FY2010 · CA
Role of JNK Pathway in Lung Tumorigenesis
$255,132Lynn E Heasley · University Of Colorado Denver · R01 · FY2008 · CA
Role of JNK Pathway in Lung Tumorigenesis
$255,132Lynn E Heasley · University Of Colorado Denver · R01 · FY2007 · CA
Project 3: Role of the pancreatic fibroinflammatory microenvironment in obesity-promoted pancreatic cancer
$255,118Stephen J Pandol · University Of California Los Angeles · P01 · FY2020 · CA
Cancer Metabolism & Microenvironment
$255,113Paul Christopher Boutros · Sanford Burnham Prebys Medical Discovery Institute · P30 · FY2025 · CA
Immunometabolic regulation of leukemic niche-donor cell interaction
$255,080Wei Du · West Virginia University · P20 · FY2018 · GM
A Regulatory Triad: IL35, Tregs and iTr35
$255,072Dario Aa Vignali · University Of Pittsburgh At Pittsburgh · R01 · FY2014 · AI
Cellular Responses to Vitronectin Binding Integrins
$255,071University Of California San Diego · R01 · FY2005 · CA
Core 2: Computational and Data Integration
$255,058Kelly Valentine Ruggles · New York University School Of Medicine · U54 · FY2025 · CA
Project 1: Tumor Cell Intrinsic Determinants of Early Dissemination in Melanoma
$255,058Eva Hernando · New York University School Of Medicine · U54 · FY2025 · CA
Project 2: Contribution of the Stromal Microenvironment to Early Dissemination
$255,057Mayumi Ito · New York University School Of Medicine · U54 · FY2025 · CA
Investigating the contribution of cellular senescence to the efficacy of radiation therapy.
$255,045Paul Bernard Romesser · Sloan-Kettering Inst Can Research · K08 · FY2023 · CA
Investigating the contribution of cellular senescence to the efficacy of radiation therapy.
$255,045Paul Bernard Romesser · Sloan-Kettering Inst Can Research · K08 · FY2024 · CA
Investigating the contribution of cellular senescence to the efficacy of radiation therapy.
$255,045Paul Bernard Romesser · Sloan-Kettering Inst Can Research · K08 · FY2021 · CA
Investigating the contribution of cellular senescence to the efficacy of radiation therapy.
$255,045Paul Bernard Romesser · Sloan-Kettering Inst Can Research · K08 · FY2022 · CA
The Tumor Microenvironmental Barrier to Effective Viral Oncolysis
$255,024Balveen Kaur · Ohio State University · P01 · FY2017 · CA