Evaluating Clonal Hematopoiesis in Tumor-Infiltrating Leukocytes in Breast Cancer and Secondary Hematologic Malignancies

Abstract Chemotherapy and radiation therapy are the foundations of adjuvant therapy for early-stage breast cancer. As a complication of cytotoxic regimens, breast cancer patients are at risk for therapy-related myeloid neoplasms (t-MNs). These t-MNs are commonly refractory to antileukemic therapies...

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Veröffentlicht in:JNCI : Journal of the National Cancer Institute 2020-01, Vol.112 (1), p.107-110, Article 157
Hauptverfasser: Comen, Elizabeth A, Bowman, Robert L, Selenica, Pier, Kleppe, Maria, Farnoud, Noushin R, Pareja, Fresia, Weigelt, Britta, Hill, Corinne E, Alon, Abigail, Geyer, Felipe C, Akturk, Guray, Reis-Filho, Jorge S, Norton, Larry, Levine, Ross L
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Sprache:eng
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Zusammenfassung:Abstract Chemotherapy and radiation therapy are the foundations of adjuvant therapy for early-stage breast cancer. As a complication of cytotoxic regimens, breast cancer patients are at risk for therapy-related myeloid neoplasms (t-MNs). These t-MNs are commonly refractory to antileukemic therapies and result in poor patient outcomes. We previously demonstrated that somatic mutations in leukemia-related genes are present in the tumor-infiltrating leukocytes (TILeuks) of a subset of early breast cancers. Here, we performed genomic analysis of microdissected breast cancer tumor cells and TILeuks from seven breast cancer patients who subsequently developed leukemia. In four patients, mutations present in the leukemia were detected in breast cancer TILeuks. This finding suggests that TILeuks in the primary breast cancer may harbor the ancestor of the future leukemogenic clone. Additional research is warranted to ascertain whether infiltrating mutant TILeuks could constitute a biomarker for the development of t-MN and to determine the functional consequences of mutant TILeuks.
ISSN:0027-8874
1460-2105
DOI:10.1093/jnci/djz157