4.3 Article

Implementing Mass Cytometry at the Bedside to Study the Immunological Basis of Human Diseases: Distinctive Immune Features in Patients with a History of Term or Preterm Birth

期刊

CYTOMETRY PART A
卷 87A, 期 9, 页码 817-829

出版社

WILEY
DOI: 10.1002/cyto.a.22720

关键词

mass cytometry; CyTOF; clinical applications; innate immunity; single cell; preterm birth; monocytes; TLR4

资金

  1. March of Dimes Prematurity Research Center at Stanford
  2. Bill and Melinda Gates Foundation [OPP 1017093, OPP1113682]
  3. US National Institutes of Health [1K23GM111657-01, U19, AI057229, U54CA149145, N01-HV-00242, 1U19AI100627, 5R01AI07372405, R01CA184968, 1 R33 CA183654, R33 CA183692, 1R01GM10983601, 201303028, 1R01NS08953301]
  4. NIH-the Baylor Research Institute [41000411217]
  5. NIH-Northrop Grumman Corp. [7500108142]
  6. California Institute for Regenerative Medicine (CIRM
  7. San Francisco, CA, USA) [DR1-01477]
  8. US Department of Defense [OC110674]
  9. European Commission [Health.2010.1.2-1]
  10. US Food and Drug Administration [HHSF223201210194C]
  11. Stanford Department of Anesthesiology, Perioperative and Pain Medicine
  12. Alliance for Lupus Research (New York, NY, USA)
  13. Lymphoma Research Foundation (New York, NY, USA)
  14. Entertainment Industry Foundation (National Women's Cancer Research Alliance grant
  15. Los Angeles, CA, USA)
  16. Stanford Department of Anesthesiology, Perioperative, and Pain Medicine (Stanford, CA, USA)

向作者/读者索取更多资源

Single-cell technologies have immense potential to shed light on molecular and biological processes that drive human diseases. Mass cytometry (or Cytometry by Time Of Flight mass spectrometry, CyTOF) has already been employed in clinical studies to comprehensively survey patients' circulating immune system. As interest in the bedside application of mass cytometry is growing, the delineation of relevant methodological issues is called for. This report uses a newly generated dataset to discuss important methodological considerations when mass cytometry is implemented in a clinical study. Specifically, the use of whole blood samples versus peripheral blood mononuclear cells (PBMCs), design of mass-tagged antibody panels, technical and analytical implications of sample barcoding, and application of traditional and unsupervised approaches to analyze high-dimensional mass cytometry datasets are discussed. A mass cytometry assay was implemented in a cross-sectional study of 19 women with a history of term or preterm birth to determine whether immune traits in peripheral blood differentiate the two groups in the absence of pregnancy. Twenty-seven phenotypic and 11 intracellular markers were simultaneously analyzed in whole blood samples stimulated with lipopolysaccharide (LPS at 0, 0.1, 1, 10, and 100 ngmL(-1)) to examine dose-dependent signaling responses within the toll-like receptor 4 (TLR4) pathway. Complementary analyses, grounded in traditional or unsupervised gating strategies of immune cell subsets, indicated that the prpS6 and pMAPKAPK2 responses in classical monocytes are accentuated in women with a history of preterm birth (FDR<1%). The results suggest that women predisposed to preterm birth may be prone to mount an exacerbated TLR4 response during the course of pregnancy. This important hypothesis-generating finding points to the power of single-cell mass cytometry to detect biologically important differences in a relatively small patient cohort. (c) 2015 International Society for Advancement of Cytometry

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