Detection of low frequency FGFR3 mutations in the urine of bladder cancer patients using next-generation deep sequencing
نویسندگان
چکیده
Biological fluid-based noninvasive biomarker assays for monitoring and diagnosing disease are clinically powerful. A major technical hurdle for developing these assays is the requirement of high analytical sensitivity so that biomarkers present at very low levels can be consistently detected. In the case of biological fluid-based cancer diagnostic assays, sensitivities similar to those of tissue-based assays are difficult to achieve with DNA markers due to the high abundance of normal DNA background present in the sample. Here we describe a new urine-based assay that uses ultradeep sequencing technology to detect single mutant molecules of fibroblast growth factor receptor 3 (FGFR3) DNA that are indicative of bladder cancer. Detection of FGFR3 mutations in urine would provide clinicians with a noninvasive means of diagnosing early-stage bladder cancer. The single-molecule assay detects FGFR3 mutant DNA when present at as low as 0.02% of total urine DNA and results in 91% concordance with the frequency that FGFR3 mutations are detected in bladder cancer tumors, significantly improving diagnostic performance. To our knowledge, this is the first practical application of next-generation sequencing technology for noninvasive cancer diagnostics.
منابع مشابه
Multiplex PCR and Next Generation Sequencing for the Non-Invasive Detection of Bladder Cancer
BACKGROUND Highly sensitive and specific urine-based tests to detect either primary or recurrent bladder cancer have proved elusive to date. Our ever increasing knowledge of the genomic aberrations in bladder cancer should enable the development of such tests based on urinary DNA. METHODS DNA was extracted from urine cell pellets and PCR used to amplify the regions of the TERT promoter and co...
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Abstract Introduction: Genetic variation of FGFR3 gene is one of the factors affecting the bladder tumor. FGFR3 is a tyrosine kinase receptor, involved in controlling the cellular and angiogenesis cycle. This protein affects a variety of diseases and cancers and cartilage growth abnormalities. Regarding the high activity of fgfr3 mutations in more than 50% of primary tumors of bladder urethral...
متن کاملبررسی ترنسکریپتوم و تخمین بیان ایزوفرمهای سه ژن از مسیر پیامرسانی PI3K و FGFR در سرطان مثانه
Background: Aberrant pre-mRNA alternative splicing is a common event in cancer cells. Many abnormally spliced RNA variants have been observed in tumor cells and they can be used as biomarkers or therapeutic targets in new drug design. Increasing our knowledge in understanding the mechanisms of alternative pre-mRNA splicing for cancer-related genes and determination of cancer specific isoforms a...
متن کاملBenefits and Challenges with Applying Unique Molecular Identifiers in Next Generation Sequencing to Detect Low Frequency Mutations
Indexing individual template molecules with a unique identifier (UID) before PCR and deep sequencing is promising for detecting low frequency mutations, as true mutations could be distinguished from PCR errors or sequencing errors based on consensus among reads sharing same index. In an effort to develop a robust assay to detect from urine low-abundant bladder cancer cells carrying well-documen...
متن کاملA simple and fast method for the simultaneous detection of nine fibroblast growth factor receptor 3 mutations in bladder cancer and voided urine.
PURPOSE Mutations in the fibroblast growth factor receptor 3 (FGFR3) occur in 50% of primary bladder tumors. An FGFR3 mutation is associated with good prognosis, illustrated by significantly lower percentage of patients with progression and disease-specific mortality. FGFR3 mutations are especially prevalent in low grade/stage tumors, with pTa tumors harboring mutations in 85% of the cases. The...
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عنوان ژورنال:
دوره 4 شماره
صفحات -
تاریخ انتشار 2012