| Literature DB >> 32631437 |
Olga Taryma-Leśniak1, Katarzyna Ewa Sokolowska1, Tomasz Kazimierz Wojdacz2.
Abstract
A significant volume of research clearly shows that disease-related methylation changes can be used as biomarkers at all stages of clinical disease management, including risk assessment and predisposition screening through early diagnostics to personalization of patient care and monitoring of the relapse and chronic disease. Thus disease-related methylation changes are an attractive source of the biomarkers that can have significant impact on precision medicine. However, the translation of the research findings in methylation biomarkers field to clinical practice is at the very least not satisfactory. That is mainly because the evidence generated in research studies indicating the utility of the disease-related methylation change to predict clinical outcome is in majority of the cases not sufficient to postulate the diagnostic use of the biomarker. The research studies need to be followed by well-designed and systematic investigations of clinical utility of the biomarker that produce data of sufficient quality to meet regulatory approval for the test to be used to make clinically valid decision. In this review, we describe methylation-based IVD tests currently approved for IVD use or at the advanced stages of the development for the diagnostic use. For each of those tests, we analyze the technologies that the test utilizes for methylation detection as well as describe the types of the clinical studies that were performed to show clinical validity of the test and warrant regulatory approval. The examples reviewed here should help with planning of clinical investigations and delivery of the clinical evidence required for the regulatory approval of potential methylation biomarker based IVD tests.Entities:
Keywords: Biomarker; DNA methylation; Epigenetics; IVD; In Vitro diagnostics
Year: 2020 PMID: 32631437 PMCID: PMC7336678 DOI: 10.1186/s13148-020-00886-6
Source DB: PubMed Journal: Clin Epigenetics ISSN: 1868-7075 Impact factor: 6.551
Fig. 1Overview of the process of in vitro diagnostic (IVD) test development for clinical use. Parts a-e show stages of the test development from research studies (a) to clinical use (e), through technology development (b), analitical validation (c) and clinical validation (d)
Commercially available IVD tests by the type of methylation-based biomarker use
| Test name | Type of cancer | Methylation biomarker | Detection technology | Biosample (as referenced by manufacturer) | Manufacturer/Distributor | Type of approval (year) |
|---|---|---|---|---|---|---|
| Diagnostic biomarkers | ||||||
| Cologuard® | Colorectal cancer | QuARTSTM | Stool | Exact Sciences Co., Madison, WI, USA | FDA (2014) | |
| Epi proColon® | Colorectal cancer | Real-time PCR with fluorescent hydrolysis probe | Plasma | Epigenomics AG, Berlin, Germany | FDA (2016) | |
| Real Time mS9 CRC Assay | Colorectal cancer | Real-time PCR | Plasma | Abbott Laboratories, Chicago, IL, USA | CE (2010) | |
| EarlyTect® Colon Cancer | Colorectal cancer | Qualitative methylation-specific real-time PCR | Stool | Genomictree Inc., Daejeon, South Korea | CE (2017) | |
| HCCBloodTest | Hepatocellular carcinoma | Real-time PCR with fluorescent hydrolysis probe | Plasma | Epigenomics AG, Germany | CE (2019) | |
| No commercial name available | Hepatocellular carcinoma | QuARTSTM | Blood | Exact Sciences Co., Madison, WI, USA | Breakthrough Device designation (2019) | |
| IvyGene Dx Liver Cancer Test | Hepatocellular carcinoma | Not provided | Targeted next-generation sequencing | Plasma | Laboratory for Advanced Medicine Inc., Irvine, CA, USA | Breakthrough Device designation (2019) |
| Epi proLung® | Lung cancer | Real-time PCR with fluorescent hydrolysis probe | Plasma | Epigenomics AG, Berlin, Germany | CE (2017) | |
| AssureMDx | Bladder cancer | Multiplex SNaPshot® assay | Voided urine | MDxHealth, Irvine, CA, USA | LDT (2017) | |
| Bladder | Bladder cancer | MSRE-qPCR | Voided urine | Pangea Laboratory, Costa Mesa, CA, USA | LDT (2019) | |
| ConfirmMDx | Prostate cancer | Multiplexed quantitative DNA methylation-specific PCR | Prostate biopsy | MDxHealth, Irvine, CA, USA | LDT (2012) | |
| GynTect® | Cervical cancer | Methylation-specific real-time PCR | Cervical smear | Oncognostic GmbH, Jena, Germany | CE (2019) | |
| QIAsure Methylation Test Kit | Cervical cancer | Multiplex real-time PCR | Cervical/vaginal specimens | QIAGEN GmbH, Hilden, Germany | CE (2016) | |
| PAX1 DNA Detection Kit | Cervical cancer | Real-time PCR | Cervical/oral scrapes | iStat Biomedical Co. Ltd., New Taipei City, Taiwan | CE (2016) | |
| ZNF582 DNA Detection Kit | Cervical cancer | Real-time PCR | Cervical/oral scrapes | iStat Biomedical Co. Ltd., New Taipei City, Taiwan | CE (2016) | |
| GRAIL | Cancer regardless of its type | Multiple CpG sites | Whole-genome bisulfite sequencing | Blood | GRAIL Inc., Menlo Park, California, USA | Breakthrough Device designation (2019) |
| IvyGene® Cancer Blood Test | Cancer regardless of its type | Targeted next-generation sequencing | Plasma | Laboratory for Advanced Medicine Inc., Irvine, CA, USA | LDT (2018) | |
| Disease management biomarkers | ||||||
| Glioblastoma | Pyrosequencing® | FFPE tumor tissue | QIAGEN GmbH, Hilden, Germany | CE (2012) | ||
| Human MGMT Gene Methylation Detection Kit | Glioblastoma | PAP-ARMS® | FFPE tumor tissue | Xiamen SpacegenCo., Ltd., Xiamen, China | CE (2016) | |
| MGMT Methylation Detection Kit | Glioblastoma | Real-time PCR with fluorescent hydrolysis probes and methylation-specific primers | Fresh frozen or FFPE tumor tissue | EntroGen, Inc., Los Angeles, CA, USA | CE (2018) | |
| PredictMDx | Glioblastoma | Quantitative methylation-specific PCR | FFPE tumor tissue | LabCorp, Burlington, NC, USA | LDT (2012) | |
| therascreen® PITX2 RGQ PCR Kit | Breast cancer | Real-time PCR with fluorescent hydrolysis probes and methylation-unspecific primers | FFPE tumor tissue | QIAGEN GmbH, Hilden, Germany | CE (2018) | |
| EPICUP® | Cancers of unknown primary site | Multiple CpG sites | MethylationEPIC 850K array (Illumina, San Diego, CA, USA) | Fresh frozen or FFPE tumor biopsy | Grupo Ferrer Internacional SA, Barcelona, Spain | CE (2015) |
| Post-treatment monitoring biomarkers | ||||||
| COLVERATM | Colorectal cancer | Multiplex real-time PCR | Plasma | Clinical Genomics PathologyInc, Bridgewater, NJ, USA | LDT (2016) | |
| Bladder EpiCheck® | Bladder cancer | 15 methylation biomarkers* | MSRE-qPCR | Voided urine | Nucleix Ltd., Rehovot, Israel | CE (2017) |
QuARTSTM quantitative allele-specific real-time target and signal amplification, MSRE-qPCR methylation-sensitive restriction enzyme followed by real-time PCR, PAP-ARMS® technology combination of pyrophosphorolysis-activated polymerization reaction (PAP) and amplification refractive mutation system (ARMS)
*Patent application nr US9458503B2