A Precision Medicine Drug Discovery Pipeline Identifies Combined CDK2 and 9 Inhibition as a Novel Therapeutic Strategy in Colorectal Cancer

Colorectal cancer is the third most common cancer in the United States and responsible for over 50,000 deaths each year. Therapeutic options for advanced colorectal cancer are limited, and there remains an unmet clinical need to identify new treatments for this deadly disease. To address this need,...

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Veröffentlicht in:Molecular cancer therapeutics 2020-12, Vol.19 (12), p.2516-2527
Hauptverfasser: Somarelli, Jason A, Roghani, Roham Salman, Moghaddam, Ali Sanjari, Thomas, Beatrice C, Rupprecht, Gabrielle, Ware, Kathryn E, Altunel, Erdem, Mantyh, John B, Kim, So Young, McCall, Shannon J, Shen, Xiling, Mantyh, Christopher R, Hsu, David S
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container_end_page 2527
container_issue 12
container_start_page 2516
container_title Molecular cancer therapeutics
container_volume 19
creator Somarelli, Jason A
Roghani, Roham Salman
Moghaddam, Ali Sanjari
Thomas, Beatrice C
Rupprecht, Gabrielle
Ware, Kathryn E
Altunel, Erdem
Mantyh, John B
Kim, So Young
McCall, Shannon J
Shen, Xiling
Mantyh, Christopher R
Hsu, David S
description Colorectal cancer is the third most common cancer in the United States and responsible for over 50,000 deaths each year. Therapeutic options for advanced colorectal cancer are limited, and there remains an unmet clinical need to identify new treatments for this deadly disease. To address this need, we developed a precision medicine pipeline that integrates high-throughput chemical screens with matched patient-derived cell lines and patient-derived xenografts (PDX) to identify new treatments for colorectal cancer. High-throughput screens of 2,100 compounds were performed across six low-passage, patient-derived colorectal cancer cell lines. These screens identified the CDK inhibitor drug class among the most effective cytotoxic compounds across six colorectal cancer lines. Among this class, combined targeting of CDK1, 2, and 9 was the most effective, with IC s ranging from 110 nmol/L to 1.2 μmol/L. Knockdown of CDK9 in the presence of a CDK2 inhibitor (CVT-313) showed that CDK9 knockdown acted synergistically with CDK2 inhibition. Mechanistically, dual CDK2/9 inhibition induced significant G -M arrest and anaphase catastrophe. Combined CDK2/9 inhibition synergistically reduced PDX tumor growth. Our precision medicine pipeline provides a robust screening and validation platform to identify promising new cancer therapies. Application of this platform to colorectal cancer pinpointed CDK2/9 dual inhibition as a novel combinatorial therapy to treat colorectal cancer.
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title A Precision Medicine Drug Discovery Pipeline Identifies Combined CDK2 and 9 Inhibition as a Novel Therapeutic Strategy in Colorectal Cancer
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