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In-depth phenotypic characterization of reticulocyte maturation using mass cytometry. | LitMetric

In-depth phenotypic characterization of reticulocyte maturation using mass cytometry.

Blood Cells Mol Dis

Center for Global Health and Infectious Diseases Research, College of Public Health, University of South Florida, Tampa, USA. Electronic address:

Published: September 2018

AI Article Synopsis

  • Understanding the final stages of red blood cell (RBC) development is crucial for studying various blood disorders and diseases.
  • Researchers used single-cell Mass Cytometry (CyTOF) to analyze the maturation of reticulocytes, measuring 31 surface markers on individual RBCs.
  • The study confirmed that specific markers like transferrin receptor 1 (CD71) decrease during maturation and highlighted the potential of CyTOF for improved RBC analysis and understanding interactions with hemotropic parasites like Plasmodium vivax.

Article Abstract

Progress towards an in-depth understanding of the final steps of the erythroid lineage development is paramount for many hematological diseases. We have characterized the final stages of reticulocyte maturation from bone marrow to peripheral blood using for the first time single-cell Mass Cytometry (CyTOF). We were able to measure the expression of 31 surface markers within a single red blood cell (RBC). We demonstrate the validity of CyTOF for RBC phenotyping by confirming the progressive reduction of transferrin receptor 1 (CD71) during reticulocyte maturation to mature RBC. We highlight the high-dimensional nature of mass cytometry data by correlating the expression of multiple proteins on individual RBCs. We further describe a more drastic reduction pattern for a component of the alpha4/beta1 integrin CD49d at the very early steps of reticulocyte maturation in bone marrow and directly linked with the mitochondria remnants clearance pattern. The enhanced and accurate RBC phenotyping potential of CyTOF described herein could be beneficial to decipher RBC preferences, as well as still not well understood receptor-ligand interaction of some hemotropic parasites such as the malaria causing agent Plasmodium vivax.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6097872PMC
http://dx.doi.org/10.1016/j.bcmd.2018.06.004DOI Listing

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