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Accurate Pan-Cancer Molecular Diagnosis of Microsatellite Instability by Single-Molecule Molecular Inversion Probe Capture and High-Throughput Sequencing
by
Hempelmann, Jennifer
, Penewit, Kelsi
, Waalkes, Adam
, Pritchard, Colin C
, Smith, Nahum
, Konnick, Eric Q
, Hause, Ronald J
, Salipante, Stephen J
in
Accuracy
/ Cancer
/ Clinical outcomes
/ Colorectal cancer
/ Deoxyribonucleic acid
/ Diagnostic systems
/ DNA
/ DNA probes
/ Endometrial cancer
/ Endometrium
/ Error correction
/ Error detection
/ Genomes
/ Immune checkpoint
/ Immunotherapy
/ Loci
/ Medical diagnosis
/ Medical prognosis
/ Melanoma
/ Metastasis
/ Microsatellite instability
/ Microsatellites
/ Molecular chains
/ Mutation
/ Next-generation sequencing
/ Oncology
/ Phenotypes
/ Prostate
/ Quantitative analysis
/ Sensitivity
/ Stability analysis
/ Tumors
/ Typing
2018
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Accurate Pan-Cancer Molecular Diagnosis of Microsatellite Instability by Single-Molecule Molecular Inversion Probe Capture and High-Throughput Sequencing
by
Hempelmann, Jennifer
, Penewit, Kelsi
, Waalkes, Adam
, Pritchard, Colin C
, Smith, Nahum
, Konnick, Eric Q
, Hause, Ronald J
, Salipante, Stephen J
in
Accuracy
/ Cancer
/ Clinical outcomes
/ Colorectal cancer
/ Deoxyribonucleic acid
/ Diagnostic systems
/ DNA
/ DNA probes
/ Endometrial cancer
/ Endometrium
/ Error correction
/ Error detection
/ Genomes
/ Immune checkpoint
/ Immunotherapy
/ Loci
/ Medical diagnosis
/ Medical prognosis
/ Melanoma
/ Metastasis
/ Microsatellite instability
/ Microsatellites
/ Molecular chains
/ Mutation
/ Next-generation sequencing
/ Oncology
/ Phenotypes
/ Prostate
/ Quantitative analysis
/ Sensitivity
/ Stability analysis
/ Tumors
/ Typing
2018
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Accurate Pan-Cancer Molecular Diagnosis of Microsatellite Instability by Single-Molecule Molecular Inversion Probe Capture and High-Throughput Sequencing
by
Hempelmann, Jennifer
, Penewit, Kelsi
, Waalkes, Adam
, Pritchard, Colin C
, Smith, Nahum
, Konnick, Eric Q
, Hause, Ronald J
, Salipante, Stephen J
in
Accuracy
/ Cancer
/ Clinical outcomes
/ Colorectal cancer
/ Deoxyribonucleic acid
/ Diagnostic systems
/ DNA
/ DNA probes
/ Endometrial cancer
/ Endometrium
/ Error correction
/ Error detection
/ Genomes
/ Immune checkpoint
/ Immunotherapy
/ Loci
/ Medical diagnosis
/ Medical prognosis
/ Melanoma
/ Metastasis
/ Microsatellite instability
/ Microsatellites
/ Molecular chains
/ Mutation
/ Next-generation sequencing
/ Oncology
/ Phenotypes
/ Prostate
/ Quantitative analysis
/ Sensitivity
/ Stability analysis
/ Tumors
/ Typing
2018
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Accurate Pan-Cancer Molecular Diagnosis of Microsatellite Instability by Single-Molecule Molecular Inversion Probe Capture and High-Throughput Sequencing
Journal Article
Accurate Pan-Cancer Molecular Diagnosis of Microsatellite Instability by Single-Molecule Molecular Inversion Probe Capture and High-Throughput Sequencing
2018
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Overview
Microsatellite instability (MSI) is an emerging actionable phenotype in oncology that informs tumor response to immune checkpoint pathway immunotherapy. However, there remains a need for MSI diagnostics that are low cost, highly accurate, and generalizable across cancer types. We developed a method for targeted high-throughput sequencing of numerous microsatellite loci with pan-cancer informativity for MSI using single-molecule molecular inversion probes (smMIPs).
We designed a smMIP panel targeting 111 loci highly informative for MSI across cancers. We developed an analytical framework taking advantage of smMIP-mediated error correction to specifically and sensitively detect instability events without the need for typing matched normal material.
Using synthetic DNA mixtures, smMIPs were sensitive to at least 1% MSI-positive cells and were highly consistent across replicates. The fraction of identified unstable microsatellites discriminated tumors exhibiting MSI from those lacking MSI with high accuracy across colorectal (100% diagnostic sensitivity and specificity), prostate (100% diagnostic sensitivity and specificity), and endometrial cancers (95.8% diagnostic sensitivity and 100% specificity). MSI-PCR, the current standard-of-care molecular diagnostic for MSI, proved equally robust for colorectal tumors but evidenced multiple false-negative results in prostate (81.8% diagnostic sensitivity and 100% specificity) and endometrial (75.0% diagnostic sensitivity and 100% specificity) tumors.
smMIP capture provides an accurate, diagnostically sensitive, and economical means to diagnose MSI across cancer types without reliance on patient-matched normal material. The assay is readily scalable to large numbers of clinical samples, enables automated and quantitative analysis of microsatellite instability, and is readily standardized across clinical laboratories.
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