Cancer Institute A national cancer institute
designated cancer center

Garry Nolan

Publication Details

  • From single cells to deep phenotypes in cancer NATURE BIOTECHNOLOGY Bendall, S. C., Nolan, G. P. 2012; 30 (7): 639-647


    In recent years, major advances in single-cell measurement systems have included the introduction of high-throughput versions of traditional flow cytometry that are now capable of measuring intracellular network activity, the emergence of isotope labels that can enable the tracking of a greater variety of cell markers and the development of super-resolution microscopy techniques that allow measurement of RNA expression in single living cells. These technologies will facilitate our capacity to catalog and bring order to the inherent diversity present in cancer cell populations. Alongside these developments, new computational approaches that mine deep data sets are facilitating the visualization of the shape of the data and enabling the extraction of meaningful outputs. These applications have the potential to reveal new insights into cancer biology at the intersections of stem cell function, tumor-initiating cells and multilineage tumor development. In the clinic, they may also prove important not only in the development of new diagnostic modalities but also in understanding how the emergence of tumor cell clones harboring different sets of mutations predispose patients to relapse or disease progression.

    View details for DOI 10.1038/nbt.2283

    View details for Web of Science ID 000306293400023

    View details for PubMedID 22781693

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