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Autophagy, ISSN 1554-8627, 09/2011, Volume 7, Issue 9, pp. 1045 - 1051
Multiple stress pathways result in the induction of autophagy and apoptosis. Current methods (e.g., protein gel blot, microscopy) do not offer quantitative... 
Binding | Proteins | Landes | Calcium | Bioscience | Biology | Cell | Cycle | Cancer | Organogenesis | Autophagy | Multispectral imaging cytometry | Influenza | New methodology | Apoptosis | influenza | CROSS-TALK | new methodology | autophagy | BECLIN 1 | multispectral imaging cytometry | apoptosis | CELL-DEATH | CELL BIOLOGY | Leukocytes, Mononuclear - metabolism | Image Cytometry - methods | Apoptosis - drug effects | Apoptosis - radiation effects | Autophagy - radiation effects | Microtubule-Associated Proteins - metabolism | Humans | Autophagy - drug effects | Lysosomes - radiation effects | Chloroquine - pharmacology | Lysosomes - metabolism | Ultraviolet Rays | Time Factors | Leukocytes, Mononuclear - radiation effects | Signal Transduction - radiation effects | Fibroblasts - metabolism | Lysosomes - drug effects | Leukocytes, Mononuclear - drug effects | Animals | Fibroblasts - radiation effects | Signal Transduction - drug effects | Embryo, Mammalian - cytology | Fibroblasts - drug effects | Leukocytes, Mononuclear - cytology | Fibroblasts - cytology | Mice | Autophagy/radiation effects | Signal Transduction/radiation effects | Image Cytometry/methods | Autophagy/drug effects | Life Sciences | Lysosomes/drug effects | Immunology | Fibroblasts/metabolism | Leukocytes, Mononuclear/radiation effects | Fibroblasts/drug effects | Leukocytes, Mononuclear/metabolism | Apoptosis/radiation effects | Leukocytes, Mononuclear/drug effects | Fibroblasts/cytology | Apoptosis/drug effects | Fibroblasts/radiation effects | Lysosomes/metabolism | Leukocytes, Mononuclear/cytology | Signal Transduction/drug effects | Chloroquine/pharmacology | Embryo, Mammalian/cytology | Lysosomes/radiation effects | Microtubule-Associated Proteins/metabolism
Journal Article
PLoS ONE, ISSN 1932-6203, 11/2015, Volume 10, Issue 11, p. e0143001
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Stem cells translational medicine, ISSN 2157-6564, 2013, Volume 2, Issue 6, pp. 455 - 463
... and AT‐MSCs showed comparable immunomodulatory effects as they were both able to suppress proliferation of stimulated peripheral blood mononuclear cells and to inhibit differentiation of monocyte... 
Adult human bone marrow | Immunosuppression | Cellular therapy | Bone marrow | Marrow stromal stem cells | Bone marrow stromal cells | Mesenchymal stem cells | DENDRITIC CELLS | SUPPRESS T-LYMPHOCYTE | MESENCHYMAL STEM-CELLS | CELL & TISSUE ENGINEERING | GALECTIN-1 | GENERATION | IMMUNOSUPPRESSIVE PROPERTIES | DIFFERENTIATION | MSC | EXPRESSION | INHIBIT | Leukocytes, Mononuclear - metabolism | Cell Proliferation | Coculture Techniques | Dendritic Cells - immunology | Humans | Multipotent Stem Cells - metabolism | Adipose Tissue - cytology | Multipotent Stem Cells - immunology | Adipose Tissue - immunology | Mesenchymal Stromal Cells - immunology | Adipose Tissue - metabolism | Mesenchymal Stromal Cells - cytology | Bone Marrow Cells - immunology | Leukocytes, Mononuclear - immunology | Cell Differentiation | Dendritic Cells - metabolism | Transforming Growth Factor beta1 - biosynthesis | Bone Marrow Cells - cytology | Immunomodulation | Cells, Cultured | Cell Communication | Mesenchymal Stromal Cells - metabolism | Immunophenotyping | Transforming Growth Factor beta1 - secretion | Interleukin-6 - secretion | Multipotent Stem Cells - cytology | Interleukin-6 - biosynthesis | Leukocytes, Mononuclear - cytology | Dendritic Cells - cytology | Bone Marrow Cells - metabolism | Cell Lineage - immunology | Cell proliferation | Adipose tissue | Cytokines | Dendritic cells | Transforming growth factor | Clinical trials | Leukocytes (mononuclear) | Adipocytes | Cell differentiation | Metabolism | Studies | Monocytes | Lymphocytes | Stromal cells | Stem cells | Peripheral blood mononuclear cells | Medical wastes | Age | Cell-Based Drug Development, Screening, and Toxicology
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