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Image Search Results


Violin plot representations of the proportion of ( a ) VEGFR-2 + CD34 + cells and ( b ) VEGFR-2 + CD133 + cells in TM patients (“TM”) ( n = 25) vs. healthy controls (“Controls”) ( n = 11)

Journal: Annals of Hematology

Article Title: Reduced number of endothelial progenitor cells in adult patients with beta thalassemia major

doi: 10.1007/s00277-026-06979-1

Figure Lengend Snippet: Violin plot representations of the proportion of ( a ) VEGFR-2 + CD34 + cells and ( b ) VEGFR-2 + CD133 + cells in TM patients (“TM”) ( n = 25) vs. healthy controls (“Controls”) ( n = 11)

Article Snippet: Briefly: isolated cells were stained with FITC-labeled VEGFR-2 (vascular endothelial growth factor receptor-2), a key endothelial lineage marker (R&D, Minneapolis, USA), CY5.5 labeled CD45 (Dako, Denmark), and either PE labeled CD133 or CD34 (Miltenyi Biotech, Auburn, CA, USA).

Techniques:

Violin plot showing the proportion of VEGFR-2 + CD34 + cells in TM patients with a history of thromboembolic events ( n = 6) vs. TM patients with no history of thromboembolic events ( n = 19)

Journal: Annals of Hematology

Article Title: Reduced number of endothelial progenitor cells in adult patients with beta thalassemia major

doi: 10.1007/s00277-026-06979-1

Figure Lengend Snippet: Violin plot showing the proportion of VEGFR-2 + CD34 + cells in TM patients with a history of thromboembolic events ( n = 6) vs. TM patients with no history of thromboembolic events ( n = 19)

Article Snippet: Briefly: isolated cells were stained with FITC-labeled VEGFR-2 (vascular endothelial growth factor receptor-2), a key endothelial lineage marker (R&D, Minneapolis, USA), CY5.5 labeled CD45 (Dako, Denmark), and either PE labeled CD133 or CD34 (Miltenyi Biotech, Auburn, CA, USA).

Techniques:

(A1) and (B1) Phase contrast images of hiPSCs and HiMPCs. (A1) hiPSCs and (B1) hiMPCs cultured in standard 2D conditions. (A2 & A3) Immunofluorescence images showing hiPCS stained for SOX2 and OCT4 (both in yellow). (B2 & B3) hiMPCs stained for VEGFR-2 and BryT (both in red). (C1) Schematic representation of the in-gel printing-embedded bioprinting-approach. (C2) Printed and crosslinked FGXC tube. (C3) Maximum intensity projection of z-stack images from a cleared printed tube at day 12. The endothelization around the artificial lumen and endothelial network within the tube wall is shown by CD31 + staining (red). αSMA + cells are shown in green.

Journal: bioRxiv

Article Title: Generation of Self-Organising Macrovascular Constructs by Bioprinting human iPSC-Derived Mesodermal Progenitor Cells

doi: 10.64898/2026.03.16.712040

Figure Lengend Snippet: (A1) and (B1) Phase contrast images of hiPSCs and HiMPCs. (A1) hiPSCs and (B1) hiMPCs cultured in standard 2D conditions. (A2 & A3) Immunofluorescence images showing hiPCS stained for SOX2 and OCT4 (both in yellow). (B2 & B3) hiMPCs stained for VEGFR-2 and BryT (both in red). (C1) Schematic representation of the in-gel printing-embedded bioprinting-approach. (C2) Printed and crosslinked FGXC tube. (C3) Maximum intensity projection of z-stack images from a cleared printed tube at day 12. The endothelization around the artificial lumen and endothelial network within the tube wall is shown by CD31 + staining (red). αSMA + cells are shown in green.

Article Snippet: The following antibodies were used: OCT4 (sc-5279, Santa Cruz Biotech, Dallas, TX, USA), SOX2 (MAB2018, Santa Cruz Biotech), Brachyury/T (AF2085, Santa Cruz Biotech) and VEGFR-2 (sc-48161, Santa Cruz Biotech).

Techniques: Cell Culture, Immunofluorescence, Staining