Circulating tumor nucleic acids: biology, release mechanisms, and clinical relevance

Author:

Stejskal Pavel,Goodarzi Hani,Srovnal Josef,Hajdúch Marián,van ’t Veer Laura J.,Magbanua Mark Jesus M.

Abstract

AbstractBackgroundDespite advances in early detection and therapies, cancer is still one of the most common causes of death worldwide. Since each tumor is unique, there is a need to implement personalized care and develop robust tools for monitoring treatment response to assess drug efficacy and prevent disease relapse.Main bodyRecent developments in liquid biopsies have enabled real-time noninvasive monitoring of tumor burden through the detection of molecules shed by tumors in the blood. These molecules include circulating tumor nucleic acids (ctNAs), comprising cell-free DNA or RNA molecules passively and/or actively released from tumor cells. Often highlighted for their diagnostic, predictive, and prognostic potential, these biomarkers possess valuable information about tumor characteristics and evolution. While circulating tumor DNA (ctDNA) has been in the spotlight for the last decade, less is known about circulating tumor RNA (ctRNA). There are unanswered questions about why some tumors shed high amounts of ctNAs while others have undetectable levels. Also, there are gaps in our understanding of associations between tumor evolution and ctNA characteristics and shedding kinetics. In this review, we summarize current knowledge about ctNA biology and release mechanisms and put this information into the context of tumor evolution and clinical utility.ConclusionsA deeper understanding of the biology of ctDNA and ctRNA may inform the use of liquid biopsies in personalized medicine to improve cancer patient outcomes.

Funder

Ministry of Health of the Czech Republic

Ministry of Education, Youth and Sport of the Czech Republic

European Union - Next Generation EU

European Regional Development Fund

Era of Hope Scholar

The National Institutes of Health

Breast Cancer Research Foundation

Cancer Cell Mapping Initiative

UCSF Breast Oncology Program Research Development Award, and the Cancer Cell Mapping Initiative

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Oncology,Molecular Medicine

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