Project Grant R43CA275629
- Federal Project Grant Award Summary Alelopharma Inc. received a $399,153 Project Grant award from the National Cancer Institute under the Cancer Detection and Diagnosis Research Program (CFDA 93.394) on July 9, 2025, with a completion date of June 30, 2027. The company will develop and validate an innovative liquid biopsy diagnostic platform utilizing its proprietary AleloMax detection system to identify ALK (Anaplastic Lymphoma Kinase) gene fusion translocations in cell-free RNA from blood...
- Federal Project Grant Award Summary The National Cancer Institute (NCI) awarded Cereus Diagnostics Corp. $764,448 under the Cancer Detection and Diagnosis Research Program (CFDA 93.394) to develop and validate LUNG-FAST (Fragment Analysis, SNP, and Translocations), a rapid polymerase chain reaction (PCR)-based diagnostic test for detecting clinically actionable lung cancer mutations. The three-year project, effective August 1, 2025 through July 31, 2028, will deliver a clinical-grade...
- The National Center for Advancing Translational Sciences (NCATS) awarded a $1,077,369 Project Grant to Captis Diagnostics Inc. on March 11, 2025 to develop and commercialize a proprietary Lipid Nanoprobe (LNP) system for the rapid, efficient, and cost-effective isolation of extracellular vesicles (EVs) from non-invasive bodily fluids. The project, funded under NCATS' Federal Grant Program (CFDA 93.350), aims to unlock the potential of EVs in multi-omics-based disease molecular characterization...
- This Project Grant from the National Science Foundation's Technology, Innovation, and Partnerships program (CFDA 47.084) provides $275,000 to Dcan Biosciences LLC to develop an advanced microfluidic system for cancer diagnosis and monitoring. The system aims to isolate and assess circulating tumor cells (CTCs) and CTC clusters (CTCCs) from patient blood samples to enable highly sensitive and accurate liquid biopsies. Key objectives include designing a hybrid microfluidic device for...
- This $399,499 Project Grant award from the National Cancer Institute (NCI), under the Cancer Detection and Diagnosis Research program (CFDA 93.394), supports the development of Liquid Biotech's TELOMESCAN circulating tumor cell (CTC) assay for monitoring non-small cell lung cancer (NSCLC) patients undergoing radiation and immunotherapy. The key products and services to be delivered through this funding include: 1) Developing a clinical prototype of the TELOMESCAN assay with automated analysis to...
- Federal Cooperative Agreement Award Summary The Beckman Research Institute of the City of Hope received a $738,675 Cooperative Agreement from the National Cancer Institute (NCI) under the Cancer Detection and Diagnosis Research Program (CFDA 93.394) to develop an innovative exosome-based liquid biopsy assay for the non-invasive early detection of colorectal adenomas and cancers. Awarded on March 16, 2026, with a completion date of February 28, 2031, this five-year project addresses a critical...
- This National Science Foundation (NSF) Technology, Innovation, and Partnerships (CFDA 47.084) Project Grant award of $275,000 to Cerflux Inc. aims to develop a personalized cancer treatment screening platform. The project will establish guidelines for handling solid tumor biopsy samples, generate 3D bioprinted tumor models for validation, and demonstrate the platform's ability to match patients with the most effective cancer treatments before treatment begins. This innovative approach has the...
- This National Science Foundation (NSF) Technology, Innovation, and Partnerships (CFDA 47.084) Project Grant award of $275,000 to Beken Bio, Inc. aims to develop a highly sensitive, minimally invasive laboratory test to detect early-stage ovarian cancer by assaying relevant biomarkers on circulating extracellular vesicles in patient plasma. The project will utilize a novel technology to identify key proteins in extracellular vesicles from various ovarian cancer subtypes and employ a machine...
- Federal Grant Award Summary Xgenomes Corp. received a $399,816 Project Grant from the National Cancer Institute under the Cancer Detection and Diagnosis Research Program (CFDA 93.394) beginning September 1, 2025, and concluding August 31, 2026. The company will develop a novel circulating tumor DNA (ctDNA) analysis platform that directly measures both genetic mutations and methylation changes with accuracy exceeding current next-generation sequencing methods by over 100-fold. The technology...
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training Program (CFDA 93.859), is focused on developing a novel high-throughput, high-content imaging platform for analyzing extracellular vesicles (EVs) at the single-particle level. The $298,999 award to Numentus Technologies Inc. will fund the construction, testing, and application of this platform to detect and characterize EV subpopulations, including...
NON-INVASIVE DETECTION OF TUMOR NTRK GENE FUSIONS VIA RAPID, EFFICIENT AND LOW-COST EXTRACELLULAR VESICLE ISOLATION METHOD - SUMMARY/ABSTRACT CANCER PATIENTS WITH NEUROTROPHIC TYROSINE RECEPTOR KINASE (NTRK) GENE FUSIONS WHO TOOK LAROTRECTINIB (VITRAKVI) AND ENTRECTINIB (ROZLYTREK) LIVED SIGNIFICANTLY LONGER WITHOUT DISEASE PROGRESSION, REGARDLESS OF THE DISEASE ORIGIN AND ITS GENE FUSION PARTNERS. CURRENTLY, DETECTION OF NTRK FUSIONS IS RECOMMENDED BY MULTIPLE NATIONAL COMPREHENSIVE CANCER NETWORK (NCCN) GUIDELINES, INCLUDING THOSE FOR COLON, NON- SMALL CELL LUNG, BREAST, CENTRAL NERVOUS SYSTEM, PANCREATIC, THYROID, GASTRIC, HEPATOBILIARY, AND OVARIAN CANCERS. HOWEVER, CURRENT DIAGNOSTIC ASSAYS FOR NTRK GENE FUSIONS REQUIRE HIGHLY INVASIVE TISSUE SAMPLES, WHICH ARE OFTEN LIMITED BY TUMOR POSITION, PATIENT COMPLIANCE, SAMPLE AMOUNT, AND TUMOR INACCESSIBILITY IN CANCERS SUCH AS LUNG CANCER, GLIOMAS, AND PANCREATIC CANCERS. LIQUID BIOPSY ALLOWS FOR MINIMALLY INVASIVE MOLECULAR PROFILING WHEN TISSUE BIOPSIES ARE SCARCE OR UNREACHABLE. THIS MEANS THAT PATIENTS' TUMORS CAN BE MOLECULARLY PROFILED FOR PRECISION MEDICINE WITH A SIMPLE BLOOD DRAW INSTEAD OF A SURGICAL PROCEDURE. THE SIGNIFICANT CLINICAL BENEFIT OF TARGETED, TROPOMYOSIN RECEPTOR KINASE (TRKS) INHIBITOR THERAPIES TOWARDS CANCER PATIENTS BEARING NTRK FUSIONS BOLSTERS THE URGENT UNMET NEED FOR A LIQUID BIOPSY METHOD TO SCREEN PATHOLOGICAL NTRK FUSIONS TO IDENTIFY THE TRK INHIBITOR RESPONDERS. EXTRACELLULAR VESICLES (EVS) IN THE BLOOD PLASMA OF CANCER PATIENTS ENCAPSULATE THE ENTIRE CANCER TRANSCRIPTOME VIA LONG AND HIGH-QUALITY MRNA FRAGMENTS UP TO 20 KBP. EVS HARBOR CANCER-ASSOCIATED MRNA TRANSCRIPTS, THEREFORE PERFECTLY FOR NTRK FUSION DETECTION. TO MEET THE URGENT, UNMET, CLINICAL CHALLENGE OF DETECTING NTRK FUSIONS, WE PROPOSE TO VERTICALLY INTEGRATE OUR PROPRIETARY, ONE-COMPONENT LIPID NANOPROBE (1C-LNP) TECHNOLOGY FOR ISOLATING TOTAL EV FROM PLASMA, A NEW WILD-TYPE BLOCKER AMPLIFICATION (WTBA) TECHNOLOGY TO NTRK FUSIONS IN EV RNA FROM A HIGH BACKGROUND OF WILDTYPE RNA, AND THE OXFORD NANOPORE TECHNOLOGIES' LONG-READ SEQUENCING PLATFORM FOR READING NTRK FUSIONS. WE WILL DEVELOP A MINIMALLY INVASIVE NTRK FUSION DETECTION TECHNOLOGY WITH TWO AIMS. IN AIM 1, WE WILL OPTIMIZE THE 1C-LNP TECHNOLOGY FOR TOTAL EV ISOLATION IN PLASMA. IN AIM 2, WE WILL DEVELOP AND INTEGRATE 1C-LNP AND WTBA TO ISOLATE HIGH-MOLECULAR WEIGHT TUMOR MRNA FROM EVS, ENRICH MRNA SEQUENCE WITH NTRK FUSIONS, PERFORM SINGLE-MOLECULE LONG-READS SEQUENCING ANALYSIS USING THE OXFORD NANOPORE FLONGLE DEVICE, AND FURTHER VALIDATE THE FEASIBILITY OF NTRK FUSION VARIANTS DETECTION USING SAMPLES ISOLATED FROM TISSUE AND PLASMA EV. WE ANTICIPATE SIGNIFICANT IMPACTS IN TWO AREAS OF MOLECULAR DIAGNOSTICS AND LIQUID BIOPSY: (1) WE WILL CREATE THE MOST SENSITIVE, STATE-OF-THE-ART METHOD TO IDENTIFY NTRK FUSIONS AT LOW VARIANT ALLELE FREQUENCIES; (2) WE WILL CREATE A MINIMALLY INVASIVE NTRK FUSION SCREENING ASSAY FOR PLASMA, WHICH IDENTIFIES NTRK INHIBITORS RESPONDERS AND CAN HAVE AN INCREDIBLE IMPACT ON THE PATIENT OUTCOMES. PHASE II ACTIVITIES WILL FOCUS ON EXPANDING THIS 1C-LNP INTEGRATED WTBA TECHNOLOGY PLATFORM TO OTHER CLINICAL ACTIONABLE GENE FUSIONS SUCH AS ROS1, ALK, NRG1, RET, ETS, EWS, FGFR, ABL1 AND SUBSEQUENTLY PERFORM THE CLINICAL VALIDATION OF THE GENE FUSION PANEL. UPON COMPLETION OF CLINICAL VALIDATION, WE WILL LAUNCH THIS MINIMALLY INVASIVE NTRK FUSION SCREENING TEST SERVICE THROUGH THE CLINICAL LABORATORY IMPROVEMENT AMENDMENTS (CLIA) LABORATORY FOR ONCOLOGISTS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 9/29/25 | ||
| Not listed | $400.0k | 5/24/23 |