Somatic mutations accumulate in healthy tissues as we age, giving rise to cancer and potentially contributing to ageing. To study somatic mutations in non-neoplastic tissues, we developed a series of protocols to sequence the genomes of small populations of cells isolated from histological sections. Here, we describe a complete workflow that combines laser-capture microdissection (LCM) with low-input genome sequencing, while circumventing the use of whole-genome amplification (WGA). The protocol is subdivided broadly into four steps: tissue processing, LCM, low-input library generation and mutation calling and filtering. The tissue processing and LCM steps are provided as general guidelines that might require tailoring based on the specific...
Comparative genomic hybridization by means of BAC microarrays (array CGH) allows high-resolution pro...
Molecular profiling already exerts a profound influence on biomedical research and disease managemen...
Genomic heterogeneity is a central feature of many cancers and plays a critical role in disease init...
Background Laser capture microdissection (LCM) can be applied to tissues where cells of interest are...
Abstract Background Laser capture microdissection (LCM) can be applied to tissues where cells of int...
High-throughput next-generation sequencing provides a revolutionary platform to unravel the precise ...
High-throughput next-generation sequencing provides a revolutionary platform to unravel the precise ...
Laser microdissection (LMD) and whole genome amplification (WGA) are valuable tools to isolate, puri...
<div><p>Somatic mosaicism occurs throughout normal development and contributes to numerous disease e...
<div><p>Somatic mutation calling from next-generation sequencing data remains a challenge due to the...
Combining whole genome amplification (WGA) methods with novel laser-based microdissection techniques...
This thesis focuses on the use of laser capture microdissection (LCM) in genomic applications. It ai...
High-throughput somatic mutation screening using FFPE tissues is a major challenge because of a lack...
Background: The growth of tumor cells is accompanied by mutations in nuclear and mitochondrial genom...
Background: The lifelong accumulation of somatic mutations underlies age-related phenotypes and canc...
Comparative genomic hybridization by means of BAC microarrays (array CGH) allows high-resolution pro...
Molecular profiling already exerts a profound influence on biomedical research and disease managemen...
Genomic heterogeneity is a central feature of many cancers and plays a critical role in disease init...
Background Laser capture microdissection (LCM) can be applied to tissues where cells of interest are...
Abstract Background Laser capture microdissection (LCM) can be applied to tissues where cells of int...
High-throughput next-generation sequencing provides a revolutionary platform to unravel the precise ...
High-throughput next-generation sequencing provides a revolutionary platform to unravel the precise ...
Laser microdissection (LMD) and whole genome amplification (WGA) are valuable tools to isolate, puri...
<div><p>Somatic mosaicism occurs throughout normal development and contributes to numerous disease e...
<div><p>Somatic mutation calling from next-generation sequencing data remains a challenge due to the...
Combining whole genome amplification (WGA) methods with novel laser-based microdissection techniques...
This thesis focuses on the use of laser capture microdissection (LCM) in genomic applications. It ai...
High-throughput somatic mutation screening using FFPE tissues is a major challenge because of a lack...
Background: The growth of tumor cells is accompanied by mutations in nuclear and mitochondrial genom...
Background: The lifelong accumulation of somatic mutations underlies age-related phenotypes and canc...
Comparative genomic hybridization by means of BAC microarrays (array CGH) allows high-resolution pro...
Molecular profiling already exerts a profound influence on biomedical research and disease managemen...
Genomic heterogeneity is a central feature of many cancers and plays a critical role in disease init...