Assessment of Digital PCR as a Primary Reference Measurement Procedure to Support Advances in Precision Medicine

Author:

Whale Alexandra S1,Jones Gerwyn M1,Pavšič Jernej23,Dreo Tanja2,Redshaw Nicholas1,Akyürek Sema4,Akgöz Müslüm4,Divieto Carla5,Sassi Maria Paola5,He Hua-Jun6,Cole Kenneth D6,Bae Young-Kyung7,Park Sang-Ryoul7,Deprez Liesbet8,Corbisier Philippe8,Garrigou Sonia9,Taly Valérie9,Larios Raquel10,Cowen Simon11,O'Sullivan Denise M1,Bushell Claire A1,Goenaga-Infante Heidi10,Foy Carole A1,Woolford Alison J1,Parkes Helen1,Huggett Jim F112,Devonshire Alison S1

Affiliation:

1. Molecular and Cell Biology Team, LGC, Teddington, Middlesex, UK

2. National Institute of Biology, Department of Biotechnology and Systems Biology, Ljubljana, Slovenia

3. Jožef Stefan International Postgraduate School, Ljubljana, Slovenia

4. TUBITAK National Metrology Institute (TUBITAK UME), Bioanalysis Laboratory, Gebze, Kocaeli, Turkey

5. INRIM Istituto Nazionale di Ricerca Metrologica, Turin, Italy

6. Material Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, MD

7. Center for Bioanalysis, KRISS, Yuseong-gu, Daejeon, Republic of Korea

8. Directorate for Health, Consumers and Reference Materials, Joint Research Centre (JRC), European Commission, Geel, Belgium

9. INSERM UMR-S1147, CNRS SNC5014, Equipe labellisée Ligue Nationale contre le cancer, Paris Descartes University, Paris, France

10. Inorganic Analysis Team, LGC, Teddington, Middlesex, UK

11. Statistics Team, LGC, Teddington, Middlesex, UK

12. School of Biosciences and Medicine, Faculty of Health and Medical Science, University of Surrey, Guildford, UK

Abstract

Abstract BACKGROUND Genetic testing of tumor tissue and circulating cell-free DNA for somatic variants guides patient treatment of many cancers. Such measurements will be fundamental in the future support of precision medicine. However, there are currently no primary reference measurement procedures available for nucleic acid quantification that would support translation of tests for circulating tumor DNA into routine use. METHODS We assessed the accuracy of digital PCR (dPCR) for copy number quantification of a frequently occurring single-nucleotide variant in colorectal cancer (KRAS c.35G>A, p.Gly12Asp, from hereon termed G12D) by evaluating potential sources of uncertainty that influence dPCR measurement. RESULTS Concentration values for samples of KRAS G12D and wild-type plasmid templates varied by <1.2-fold when measured using 5 different assays with varying detection chemistry (hydrolysis, scorpion probes, and intercalating dyes) and <1.3-fold with 4 commercial dPCR platforms. Measurement trueness of a selected dPCR assay and platform was validated by comparison with an orthogonal method (inductively coupled plasma mass spectrometry). The candidate dPCR reference measurement procedure showed linear quantification over a wide range of copies per reaction and high repeatability and interlaboratory reproducibility (CV, 2%–8% and 5%–10%, respectively). CONCLUSIONS This work validates dPCR as an SI-traceable reference measurement procedure based on enumeration and demonstrates how it can be applied for assignment of copy number concentration and fractional abundance values to DNA reference materials in an aqueous solution. High-accuracy measurements using dPCR will support the implementation and traceable standardization of molecular diagnostic procedures needed for advancements in precision medicine.

Publisher

Oxford University Press (OUP)

Subject

Biochemistry, medical,Clinical Biochemistry

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