<p>Human ESC and hiPSC were induced to differentiate in parallel using identical differentiation procedures and the expression of CD73, CD105, CD146, and CD140b during the sequential stages of differentiation was analyzed by flow cytometry. The percentages of cells positive for the cell surface markers are shown. Each experiment is normalized to isotype control, and has been repeated at least 2 times.</p
<p>Flow cytometric analyses of CPC cells for expression of the cell surface markers Sca-1, CD31, c-k...
<p>Confirmation of MSC identity by flow cytometry analysis. Cells were positive for CD29 (99.7%), CD...
<p>(A) Flow cytometry analysis for MSCs. The red open histograms indicated the cells which were stai...
<p>(A) Expression of surface markers CD14, CD19, CD34, CD45, HLA-DR, CD73, CD90, CD105 (filled) with...
<p>Flow cytometry on ESCs and ESDCs was used to monitor the expression of different cell surface mar...
<p><b>A.</b> Real time RT-PCR analysis of neural crest and mesodermal markers following differentiat...
<p>Flow cytometry histograms from a representative population of passage 2 human ASCs for mesenchyma...
<p>(<b>A</b>) Isolated hMSCs were positive for surface markers CD146, CD29, CD147 and CD44, and nega...
<p>3a: Expression of HSCs surface markers at different maturation stages characterized by flow cytom...
<p>Surface antigen profile analysis by flow cytometry for the derived MSC-like cells. (A) and (C) ar...
<p>Marker CD34 was barely detectable. Marker CD45 and CD166 occupied 7.9% and 16.7% in EGPF-positive...
<p>Both SFCs and SFMSCs expressed similar surface markers, including CD90, CD44, CD105, and CD73. St...
<p>A) Cells were analyzed by flow cytometry for MSC surface markers CD29, Sca1; hematopoietic marker...
<p>The expression pattern of specific antigens on the surface of the hASCs is depicted with represen...
<p>DC subtypes were identified for cell surface molecule analyses as shown. An example of the leukoc...
<p>Flow cytometric analyses of CPC cells for expression of the cell surface markers Sca-1, CD31, c-k...
<p>Confirmation of MSC identity by flow cytometry analysis. Cells were positive for CD29 (99.7%), CD...
<p>(A) Flow cytometry analysis for MSCs. The red open histograms indicated the cells which were stai...
<p>(A) Expression of surface markers CD14, CD19, CD34, CD45, HLA-DR, CD73, CD90, CD105 (filled) with...
<p>Flow cytometry on ESCs and ESDCs was used to monitor the expression of different cell surface mar...
<p><b>A.</b> Real time RT-PCR analysis of neural crest and mesodermal markers following differentiat...
<p>Flow cytometry histograms from a representative population of passage 2 human ASCs for mesenchyma...
<p>(<b>A</b>) Isolated hMSCs were positive for surface markers CD146, CD29, CD147 and CD44, and nega...
<p>3a: Expression of HSCs surface markers at different maturation stages characterized by flow cytom...
<p>Surface antigen profile analysis by flow cytometry for the derived MSC-like cells. (A) and (C) ar...
<p>Marker CD34 was barely detectable. Marker CD45 and CD166 occupied 7.9% and 16.7% in EGPF-positive...
<p>Both SFCs and SFMSCs expressed similar surface markers, including CD90, CD44, CD105, and CD73. St...
<p>A) Cells were analyzed by flow cytometry for MSC surface markers CD29, Sca1; hematopoietic marker...
<p>The expression pattern of specific antigens on the surface of the hASCs is depicted with represen...
<p>DC subtypes were identified for cell surface molecule analyses as shown. An example of the leukoc...
<p>Flow cytometric analyses of CPC cells for expression of the cell surface markers Sca-1, CD31, c-k...
<p>Confirmation of MSC identity by flow cytometry analysis. Cells were positive for CD29 (99.7%), CD...
<p>(A) Flow cytometry analysis for MSCs. The red open histograms indicated the cells which were stai...