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R&D Systems
recombinant zebrafish vegf165 ![]() Recombinant Zebrafish Vegf165, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/recombinant+zebrafish+vegf+165+protein/Recombinant+Zebrafish+VEGF+165+Protein/pmc11826465-79-14-39 Average 93 stars, based on 1 article reviews
recombinant zebrafish vegf165 - by Bioz Stars,
2026-09
93/100 stars
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Buy from Supplier |
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R&D Systems
vegf165 ![]() Vegf165, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/recombinant+zebrafish+vegf+165+protein/Recombinant+Zebrafish+VEGF+165+Protein%2C+CF/pmc11826465-79-33-39 Average 93 stars, based on 1 article reviews
vegf165 - by Bioz Stars,
2026-09
93/100 stars
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Buy from Supplier |
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R&D Systems
recombinant zebrafish vegf a zvegf ![]() Recombinant Zebrafish Vegf A Zvegf, supplied by R&D Systems, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/recombinant+zebrafish+vegf+165+protein/Recombinant+Zebrafish+VEGF+165+Protein%2C+CF/pmc06512384-52-0-9 Average 90 stars, based on 1 article reviews
recombinant zebrafish vegf a zvegf - by Bioz Stars,
2026-09
90/100 stars
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Buy from Supplier |
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R&D Systems
zebrafish vegf a ![]() Zebrafish Vegf A, supplied by R&D Systems, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/recombinant+zebrafish+vegf+165+protein/Recombinant+Zebrafish+VEGF+165+Protein/pmc04645220-131-0-4 Average 90 stars, based on 1 article reviews
zebrafish vegf a - by Bioz Stars,
2026-09
90/100 stars
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The Recombinant Zebrafish VEGF 165 Protein from R D Systems is derived from Sf 21 stably transfected The Recombinant Zebrafish VEGF 165 Protein has been validated for the following applications Bioactivity
|
Buy from Supplier |
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The Recombinant Zebrafish VEGF 165 Protein from R D Systems is derived from Sf 21 stably transfected The Recombinant Zebrafish VEGF 165 Protein has been validated for the following applications Bioactivity
|
Buy from Supplier |
Image Search Results
Journal: Neural Regeneration Research
Article Title: Telencephalic stab wound injury induces regenerative angiogenesis and neurogenesis in zebrafish: unveiling the role of vascular endothelial growth factor signaling and microglia
doi: 10.4103/NRR.NRR-D-23-01881
Figure Lengend Snippet: Analysis of regenerative angiogenesis and neurogenesis after VEGF165 injection. (A) PCNA immunohistostaining (proliferating cells in purple) in telencephalon sections of Tg( fli:EGFP × mpeg1.1:mCherry ) zebrafish (blood vessels in green) after microinjection with PBS (vehicle) and VEGF165 (50 µg/mL) at the SW injury site. Scale bars: 200 µm. (B–D) Quantification of different angiogenic parameters shows an increasing regenerative angiogenesis tendency in the SW hemisphere of VEGF165-injected zebrafish compared with the SW hemisphere of PBS-injected zebrafish at 1 dpl. (E) Quantification of the ventricular proliferative surface of fish injected with PBS and VEGF165 showing an increasing tendency for NSC proliferation. The data are presented as the mean ± standard error of the mean ( n = 5–6 per condition from two independent experiments) and were analyzed with Student’s t -test. * P < 0.05, vs . the SW hemisphere of PBS-injected zebrafish. dpl: Day(s) post-lesion; EGFP: enhanced green fluorescent protein; GFP: green fluorescent protein; PBS: phosphate-buffered saline; PCNA: proliferating cell nuclear antigen; SW: stab-wounded; VEGF: vascular endothelial growth factor.
Article Snippet: The positive effects of VEGF on angiogenesis and brain regeneration were investigated by injecting
Techniques: Injection, Microinjection, Saline
Journal: Neural Regeneration Research
Article Title: Telencephalic stab wound injury induces regenerative angiogenesis and neurogenesis in zebrafish: unveiling the role of vascular endothelial growth factor signaling and microglia
doi: 10.4103/NRR.NRR-D-23-01881
Figure Lengend Snippet: Microglial recruitment is regulated by Vegf signaling. The SW hemisphere was compared with the respective contralateral hemisphere at 3 dpl. (A, C) Telencephalon sections of Tg( fli:EGFP × mpeg1.1:mCherry ) zebrafish (microglia in red). Scale bars: 200 µm. (B) Quantification of mpeg + cells showing a decrease in tivozanib-injected zebrafish compared with DMSO-injected zebrafish. (D) Quantification of mpeg + cells showing an increasing tendency in VEGF165-injected zebrafish compared with PBS-injected zebrafish. The data are presented as the mean ± standard error of the mean ( n = 5–6 per condition from two independent experiments) and were analyzed with Student’s t -test. *** P < 0.001, vs . the contralateral hemisphere. DMSO: Dimethyl sulfoxide; dpl: day(s) post-lesion; mpeg: macrophage‐expressed gene; PBS: phosphate-buffered saline; SW: stab-wounded; Vegf/VEGF: vascular endothelial growth factor.
Article Snippet: The positive effects of VEGF on angiogenesis and brain regeneration were investigated by injecting
Techniques: Injection, Saline
Journal: Neural Regeneration Research
Article Title: Telencephalic stab wound injury induces regenerative angiogenesis and neurogenesis in zebrafish: unveiling the role of vascular endothelial growth factor signaling and microglia
doi: 10.4103/NRR.NRR-D-23-01881
Figure Lengend Snippet: Microglial and endothelial cell proliferation following brain lesion and modulation of Vegf signaling. (A) Representative images of PCNA immunostaining of Tg( fli:EGFP × mpeg1.1:mCherry ) zebrafish following microlesion/injection with DAPI counterstaining. (B) Higher magnification of the white panels in A illustrating endothelial cell proliferation (Fli + /PCNA + ) and microglial proliferation (mpeg + /PCNA + ). Scale bar: 120 µm (A) and 70 µm and magnified 7 µm (B). (C–E) Quantification of PCNA + , PCNA + /Fli + , and PCNA + /mpeg + cells in the SW hemisphere following phosphate-buffered saline (PBS) and VEGF165 microinjection. (F–H) Quantification of PCNA + , PCNA + /Fli + , and PCNA + /mpeg + cells in the SW hemisphere following DMSO and tivozanib microinjection. The data are presented as the mean ± standard error of the mean ( n = 5–6 per condition from two independent experiments) and were analyzed with Student’s t -test. * P < 0.05, vs . the lesioned hemisphere of the respective control. DAPI: 4′,6-Diamidino-2-phenylindole; DMSO: dimethyl sulfoxide; EGFP: enhanced green fluorescent protein; mpeg: macrophage‐expressed gene; PBS: phosphate-buffered saline; PCNA: proliferating cell nuclear antigen; SW: stab-wounded; Vegf/VEGF: vascular endothelial growth factor.
Article Snippet: The positive effects of VEGF on angiogenesis and brain regeneration were investigated by injecting
Techniques: Immunostaining, Injection, Saline, Microinjection, Control
Journal: Neural Regeneration Research
Article Title: Telencephalic stab wound injury induces regenerative angiogenesis and neurogenesis in zebrafish: unveiling the role of vascular endothelial growth factor signaling and microglia
doi: 10.4103/NRR.NRR-D-23-01881
Figure Lengend Snippet: Analysis of regenerative angiogenesis and neurogenesis after VEGF165 injection. (A) PCNA immunohistostaining (proliferating cells in purple) in telencephalon sections of Tg( fli:EGFP × mpeg1.1:mCherry ) zebrafish (blood vessels in green) after microinjection with PBS (vehicle) and VEGF165 (50 µg/mL) at the SW injury site. Scale bars: 200 µm. (B–D) Quantification of different angiogenic parameters shows an increasing regenerative angiogenesis tendency in the SW hemisphere of VEGF165-injected zebrafish compared with the SW hemisphere of PBS-injected zebrafish at 1 dpl. (E) Quantification of the ventricular proliferative surface of fish injected with PBS and VEGF165 showing an increasing tendency for NSC proliferation. The data are presented as the mean ± standard error of the mean ( n = 5–6 per condition from two independent experiments) and were analyzed with Student’s t -test. * P < 0.05, vs . the SW hemisphere of PBS-injected zebrafish. dpl: Day(s) post-lesion; EGFP: enhanced green fluorescent protein; GFP: green fluorescent protein; PBS: phosphate-buffered saline; PCNA: proliferating cell nuclear antigen; SW: stab-wounded; VEGF: vascular endothelial growth factor.
Article Snippet: The positive effects of VEGF on angiogenesis and brain regeneration were investigated by injecting recombinant zebrafish VEGF165 at the lesion site: the fish received an intraparenchymal microinjection with 1× PBS or 50 μg/mL
Techniques: Injection, Microinjection, Saline
Journal: Neural Regeneration Research
Article Title: Telencephalic stab wound injury induces regenerative angiogenesis and neurogenesis in zebrafish: unveiling the role of vascular endothelial growth factor signaling and microglia
doi: 10.4103/NRR.NRR-D-23-01881
Figure Lengend Snippet: Microglial recruitment is regulated by Vegf signaling. The SW hemisphere was compared with the respective contralateral hemisphere at 3 dpl. (A, C) Telencephalon sections of Tg( fli:EGFP × mpeg1.1:mCherry ) zebrafish (microglia in red). Scale bars: 200 µm. (B) Quantification of mpeg + cells showing a decrease in tivozanib-injected zebrafish compared with DMSO-injected zebrafish. (D) Quantification of mpeg + cells showing an increasing tendency in VEGF165-injected zebrafish compared with PBS-injected zebrafish. The data are presented as the mean ± standard error of the mean ( n = 5–6 per condition from two independent experiments) and were analyzed with Student’s t -test. *** P < 0.001, vs . the contralateral hemisphere. DMSO: Dimethyl sulfoxide; dpl: day(s) post-lesion; mpeg: macrophage‐expressed gene; PBS: phosphate-buffered saline; SW: stab-wounded; Vegf/VEGF: vascular endothelial growth factor.
Article Snippet: The positive effects of VEGF on angiogenesis and brain regeneration were investigated by injecting recombinant zebrafish VEGF165 at the lesion site: the fish received an intraparenchymal microinjection with 1× PBS or 50 μg/mL
Techniques: Injection, Saline
Journal: Neural Regeneration Research
Article Title: Telencephalic stab wound injury induces regenerative angiogenesis and neurogenesis in zebrafish: unveiling the role of vascular endothelial growth factor signaling and microglia
doi: 10.4103/NRR.NRR-D-23-01881
Figure Lengend Snippet: Microglial and endothelial cell proliferation following brain lesion and modulation of Vegf signaling. (A) Representative images of PCNA immunostaining of Tg( fli:EGFP × mpeg1.1:mCherry ) zebrafish following microlesion/injection with DAPI counterstaining. (B) Higher magnification of the white panels in A illustrating endothelial cell proliferation (Fli + /PCNA + ) and microglial proliferation (mpeg + /PCNA + ). Scale bar: 120 µm (A) and 70 µm and magnified 7 µm (B). (C–E) Quantification of PCNA + , PCNA + /Fli + , and PCNA + /mpeg + cells in the SW hemisphere following phosphate-buffered saline (PBS) and VEGF165 microinjection. (F–H) Quantification of PCNA + , PCNA + /Fli + , and PCNA + /mpeg + cells in the SW hemisphere following DMSO and tivozanib microinjection. The data are presented as the mean ± standard error of the mean ( n = 5–6 per condition from two independent experiments) and were analyzed with Student’s t -test. * P < 0.05, vs . the lesioned hemisphere of the respective control. DAPI: 4′,6-Diamidino-2-phenylindole; DMSO: dimethyl sulfoxide; EGFP: enhanced green fluorescent protein; mpeg: macrophage‐expressed gene; PBS: phosphate-buffered saline; PCNA: proliferating cell nuclear antigen; SW: stab-wounded; Vegf/VEGF: vascular endothelial growth factor.
Article Snippet: The positive effects of VEGF on angiogenesis and brain regeneration were investigated by injecting recombinant zebrafish VEGF165 at the lesion site: the fish received an intraparenchymal microinjection with 1× PBS or 50 μg/mL
Techniques: Immunostaining, Injection, Saline, Microinjection, Control
Journal: Journal of Cellular and Molecular Medicine
Article Title: Fibroblast growth factor 2‐induced angiogenesis in zebrafish: the zebrafish yolk membrane (ZFYM) angiogenesis assay
doi: 10.1111/j.1582-4934.2008.00432.x
Figure Lengend Snippet: Effect of TK receptor inhibitors on the angiogenic activity of FGF2 and VEGF‐A in zebrafish embryos
Article Snippet:
Techniques: Activity Assay