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Liquid Biopsy Consortium

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Liquid Biopsy: A new, noninvasive technique that can detect disease biomarkers in blood, urine, and sputum.

Liquid Biopsy: A new, noninvasive technique that can detect disease biomarkers in blood, urine, and sputum.


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In the era of personalized medicine, having minimally invasive methods to determine and follow the molecular composition and characterization of a patient’s tumor over time will help gain a broader understanding of the disease. One such approach is liquid biopsy : measurements to characterize the molecular level of the tumor and monitor genetic changes over time using repeat sampling of biofluids. Liquid biopsy generally refers to detecting and measuring circulating tumor cells (CTC), circulating tumor DNA (ctDNA), circulating exosomes and other analytes in body fluids, such as serum, plasma, urine, etc.

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About the Liquid Biopsy Consortium

The Liquid Biopsy Consortium is an Academic/Industrial Partnership program designed to advance and validate Liquid Biopsy technologies specifically targeted for early stage cancer detection. The goal is to test body fluids such as blood, urine, saliva, stool, and sputum from patients suspected to have early stage cancer as well as those at high risk of developing cancer. The Liquid Biopsy Consortium is also working on methods to distinguish cancer from benign disease; or aggressive from indolent cancers. Projects from funded sites focus on the development of new tools/methods/assays and/or validations of existing technologies/methods involving the capture of DNA, RNA, or exosomes in circulating body fluids.

Funding Opportunity

Grantee Details

PI Name Sort descending PI Organization Title Grant Number Program Official
Kuhn, Peter

University Of Southern California
United States

Multi-modal Liquid Biopsy Early Assessment of Breast Cancer, Pancreatic Cancer, and Multiple Myeloma 5U01CA285013-02
Lee, Hakho

Massachusetts General Hospital
United States

Expanding early cancer detection with high throughput OCEANA - Ovarian Cancer Exosome Analysis with Nanoplasmonic Array 5U01CA284982-02
Papadopoulos, Nickolas

Johns Hopkins University
United States

Multi-analyte Approach for Earlier Detection of Cancers in Non Plasma Biofluids 5U01CA230691-07
Patel, Abhijit

Yale University
United States

Lung Cancer Screening via Ultrasensitive and Cost-efficient Analysis of Tumor DNA Signatures in Blood 5U01CA233364-05 Nick Hodges, Ph.D.
Wong, David T

University Of California Los Angeles
United States

Characterizing longitudinal dynamics of indeterminate pulmonary nodules using semantic, radiomic, and deep features 3U01CA233370-07S1
Zhou, Xianghong Jasmine

University Of California Los Angeles
United States

Multi-cancer early detection using cell-free DNA methylome analysis 5U01CA285010-02

Program Contact(s)

Sudhir Srivastava, Ph.D., M.P.H.
Email: sudhir.srivastava@nih.gov

Christos Patriotis, Ph.D.
Email: christos.patriotis@nih.gov

Nicholas A. Hodges, Ph.D.
Email: nick.hodges@nih.gov

Guillermo Marquez, Ph.D.
Email: guillermo.marquez@nih.gov