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Genomic Analysis of Hematopoietic Stem Cell at the Single-Cell Level: Optimization of Cell Fixation and Whole Genome Amplification (WGA) Protocol.

Chiara CarrettaSelene MalliaElena GenoveseSandra ParentiSebastiano RontauroliElisa BianchiSebastian FantiniStefano SartiniLara TavernariEnrico TagliaficoRossella Manfredini
Published in: International journal of molecular sciences (2020)
Single-cell genomics has become the method of choice for the study of heterogeneous cell populations and represents an elective application in defining the architecture and clonal evolution in hematological neoplasms. Reconstructing the clonal evolution of a neoplastic population therefore represents the main way to understand more deeply the pathogenesis of the neoplasm, but it is also a potential tool to understand the evolution of the tumor population with respect to its response to therapy. Pre-analytical phase for single-cell genomics analysis is crucial to obtain a cell population suitable for single-cell sorting, and whole genome amplification is required to obtain the necessary amount of DNA from a single cell in order to proceed with sequencing. Here, we evaluated the impact of different methods of cellular immunostaining, fixation and whole genome amplification on the efficiency and yield of single-cell sequencing.
Keyphrases
  • single cell
  • rna seq
  • high throughput
  • nucleic acid
  • randomized controlled trial
  • minimally invasive
  • hematopoietic stem cell
  • circulating tumor
  • circulating tumor cells
  • replacement therapy