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      Dissection of the human multipotent adult progenitor cell secretome by proteomic analysis.

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          Abstract

          Multipotent adult progenitor cells (MAPCs) are adult adherent stromal stem cells currently being assessed in acute graft versus host disease clinical trials with demonstrated immunomodulatory capabilities and the potential to ameliorate detrimental autoimmune and inflammation-related processes. Our previous studies documented that MAPCs secrete factors that play a role in regulating T-cell activity. Here we expand our studies using a proteomics approach to characterize and quantify MAPC secretome components secreted over 72 hours in vitro under steady-state conditions and in the presence of the inflammatory triggers interferon-γ and lipopolysaccharide, or a tolerogenic CD74 ligand, RTL1000. MAPCs differentially responded to each of the tested stimuli, secreting molecules that regulate the biological activity of the extracellular matrix (ECM), including proteins that make up the ECM itself, proteins that regulate its construction/deconstruction, and proteins that serve to attach and detach growth factors from ECM components for redistribution upon appropriate stimulation. MAPCs secreted a wide array of proteases, some detectable in their zymogen forms. MAPCs also secreted protease inhibitors that would regulate protease activity. MAPCs secreted chemokines and cytokines that could provide molecular guidance cues to various cell types, including neutrophils, macrophages, and T cells. In addition, MAPCs secreted factors involved in maintenance of a homeostatic environment, regulating such diverse programs as innate immunity, angiogenesis/angiostasis, targeted delivery of growth factors, and the matrix-metalloprotease cascade.

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          Author and article information

          Journal
          Stem Cells Transl Med
          Stem cells translational medicine
          Alphamed Press
          2157-6564
          2157-6564
          Oct 2013
          : 2
          : 10
          Affiliations
          [1 ] Department of Neurology.
          Article
          sctm.2013-0031
          10.5966/sctm.2013-0031
          3785259
          23981727
          940cd9c3-aa91-4613-881c-f94b9cb25b5d
          History

          Proteomics,RTL1000,Tolerance,Adult hematopoietic stem cells,Graft versus host disease,Immunotherapy,Mesenchymal stem cells

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