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Major improvement in the detection of microsatellite instability in colorectal cancer using HSP110 T17 E‐<italic>ice</italic>‐COLD‐PCR.

Authors :
How‐Kit, Alexandre
Daunay, Antoine
Buhard, Olivier
Meiller, Clément
Sahbatou, Mourad
Collura, Ada
Duval, Alex
Deleuze, Jean‐François
Source :
Human Mutation; Mar2018, Vol. 39 Issue 3, p441-453, 13p
Publication Year :
2018

Abstract

Abstract: Every colorectal cancer (CRC) patient should be tested for microsatellite instability (MSI) to screen for Lynch syndrome. Evaluation of MSI status involves screening tumor DNA for the presence of somatic deletions in DNA repeats using PCR followed by fragment analysis. While this method may lack sensitivity due to the presence of a high level of germline DNA, which frequently contaminates the core of primary colon tumors, no other method developed to date is capable of modifying the standard PCR protocol to achieve improvement of MSI detection. Here, we describe a new approach developed for the ultra‐sensitive detection of MSI in CRC based on E‐&lt;italic&gt;ice&lt;/italic&gt;‐COLD‐PCR, using HSP110 T17, a mononucleotide DNA repeat previously proposed as an optimal marker to detect MSI in tumor DNA, and an oligo(dT)&lt;subscript&gt;16&lt;/subscript&gt; LNA blocker probe complementary to wild‐type genotypes. The HT17 E‐&lt;italic&gt;ice&lt;/italic&gt;‐COLD‐PCR assay improved MSI detection by 20–200‐fold compared with standard PCR using HT17 alone. It presents an analytical sensitivity of 0.1%–0.05% of mutant alleles in wild‐type background, thus greatly improving MSI detection in CRC samples highly contaminated with normal DNA. HT17 E‐&lt;italic&gt;ice&lt;/italic&gt;‐COLD‐PCR is a rapid, cost‐effective, easy‐to‐implement, and highly sensitive method, which could significantly improve the detection of MSI in routine clinical testing. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10597794
Volume :
39
Issue :
3
Database :
Complementary Index
Journal :
Human Mutation
Publication Type :
Academic Journal
Accession number :
127900944
Full Text :
https://doi.org/10.1002/humu.23379