Literature DB >> 31628139

Multicenter Evaluation of Circulating Cell-Free DNA Extraction and Downstream Analyses for the Development of Standardized (Pre)analytical Work Flows.

Rita Lampignano1, Martin H D Neumann1, Sabrina Weber2,3, Vera Kloten1, Andrei Herdean4, Thorsten Voss5, Daniel Groelz5, Anna Babayan6, Marco Tibbesma7, Martin Schlumpberger8, Francesca Chemi9, Dominic G Rothwell9, Harriet Wikman6, Jean-Pierre Galizzi10, Inger Riise Bergheim11, Hege Russnes11, Benedetta Mussolin12, Serena Bonin13, Christine Voigt14, Hanny Musa15, Pamela Pinzani16, Evi Lianidou17, Ged Brady9, Michael R Speicher2, Klaus Pantel6, Fay Betsou18, Ed Schuuring7, Mikael Kubista4, Wim Ammerlaan18, Markus Sprenger-Haussels8, Thomas Schlange1, Ellen Heitzer2,3.   

Abstract

BACKGROUND: In cancer patients, circulating cell-free DNA (ccfDNA) can contain tumor-derived DNA (ctDNA), which enables noninvasive diagnosis, real-time monitoring, and treatment susceptibility testing. However, ctDNA fractions are highly variable, which challenges downstream applications. Therefore, established preanalytical work flows in combination with cost-efficient and reproducible reference materials for ccfDNA analyses are crucial for analytical validity and subsequently for clinical decision-making.
METHODS: We describe the efforts of the Innovative Medicines Initiative consortium CANCER-ID (http://www.cancer-id.eu) for comparing different technologies for ccfDNA purification, quantification, and characterization in a multicenter setting. To this end, in-house generated mononucleosomal DNA (mnDNA) from lung cancer cell lines carrying known TP53 mutations was spiked in pools of plasma from healthy donors generated from 2 different blood collection tubes (BCTs). ccfDNA extraction was performed at 15 partner sites according to their respective routine practice. Downstream analysis of ccfDNA with respect to recovery, integrity, and mutation analysis was performed centralized at 4 different sites.
RESULTS: We demonstrate suitability of mnDNA as a surrogate for ccfDNA as a process quality control from nucleic acid extraction to mutation detection. Although automated extraction protocols and quantitative PCR-based quantification methods yielded the most consistent and precise results, some kits preferentially recovered spiked mnDNA over endogenous ccfDNA. Mutated TP53 fragments derived from mnDNA were consistently detected using both next-generation sequencing-based deep sequencing and droplet digital PCR independently of BCT.
CONCLUSIONS: This comprehensive multicenter comparison of ccfDNA preanalytical and analytical work flows is an important contribution to establishing evidence-based guidelines for clinically feasible (pre)analytical work flows.
© 2019 American Association for Clinical Chemistry.

Entities:  

Year:  2020        PMID: 31628139     DOI: 10.1373/clinchem.2019.306837

Source DB:  PubMed          Journal:  Clin Chem        ISSN: 0009-9147            Impact factor:   8.327


  27 in total

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