Qian Ye
Public Health Research Institute
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Publication
Featured researches published by Qian Ye.
Clinical And Translational Immunology | 2014
Wei Liu; Andrew Morschauser; Xin Zhang; Xiaohua Lu; Joseph Gleason; Shuyang He; Hong-Jung Chen; Vladimir Jankovic; Qian Ye; Kristen Labazzo; Uri Herzberg; Vivian R. Albert; Stewart Abbot; Bitao Liang; Robert J. Hariri
Human placenta‐derived adherent cells (PDAC cells) are a culture expanded, undifferentiated mesenchymal‐like population derived from full‐term placental tissue, with immunomodulatory and anti‐inflammatory properties. PDA‐001 (cenplacel‐L), an intravenous formulation of PDAC cells, is in clinical development for the treatment of autoimmune and inflammatory diseases. To elucidate the mechanisms underlying the immunoregulatory properties of PDAC cells, we investigated their effects on immune cell populations, including T cells and dendritic cells (DC) in vitro and in vivo. PDAC cells suppressed T‐cell proliferation in an OT‐II T‐cell adoptive transfer model, reduced the severity of myelin oligodendrocyte glycoprotein peptide‐induced experimental autoimmune encephalomyelitis and ameliorated inflammation in a delayed type hypersensitivity response model. In vitro, PDAC cells suppressed T‐cell proliferation and inhibited Th1 and Th17 differentiation. Analysis of tissues derived from PDAC cell‐treated animals revealed diminished CD86 expression on splenic DC, suggesting that they can also modulate DC populations. Furthermore, PDAC cells modulate the differentiation and maturation of mouse bone marrow‐derived DC. Similarly, human DC differentiated from CD14+ monocytes in the presence of PDAC cells acquired a tolerogenic phenotype. These tolerogenic DC failed to induce allogeneic T‐cell proliferation and differentiation toward Th1, but skewed T‐cell differentiation toward Th2. Inhibition of cyclo‐oxygenase‐2 activity resulted in a significant, but not complete, abrogation of PDAC cells’ effects on DC phenotype and function, implying a role for prostaglandin E2 in PDAC‐mediated immunomodulation. This study identifies modulation of DC differentiation toward immune tolerance as a key mechanism underlying the immunomodulatory activities of PDAC cells.
Archive | 2006
James W. Edinger; Qian Ye; Jai-Lun Wang; Robert J. Hariri
Archive | 2012
Mohit Bhatia; Chris Lugo; Qian Ye; James W. Edinger
Archive | 2008
James W. Edinger; Robert J. Hariri; Jia-Lun Wang; Qian Ye; Herbert Faleck
Archive | 2007
Casper Paludan; James W. Edinger; Ryhor Harbacheuski; Roseann Murray; Robert J. Hariri; Qian Ye
Archive | 2008
James W. Edinger; Robert J. Hariri; Jia-Lun Wang; Qian Ye; Marian Pereira; Sascha Abramson; Kristen Labazzo
Archive | 2013
Mohit B. Bhatia; Robert J. Hariri; Wolfgang Hofgartner; Jia-Lun Wang; Qian Ye
Blood | 2006
Ryhor Harbacheuski; Casper Paludan; Rose Ann Murray; Megan Mendillo; Jorge Soler; Jia-Lun Wang; Qian Ye; Wolfgang Hofgartner; James W. Edinger; Gilla Kaplan; Robert Hariri
Archive | 2011
James W. Edinger; Robert J. Hariri; Jia-Lun Wang; Qian Ye; Herbert Faleck
Blood | 2006
Casper Paludan; Ryhor Harbacheuski; Rose Ann Murray; Megan Mendillo; Jorge Soler; Jia-Lun Wang; Qian Ye; James W. Edinger; Wolfgang Hofgartner; Gilla Kaplan; Robert Hariri