media human embryonic lung fibroblasts Search Results


96
Cell Applications Inc fibroblast growth medium fgm
Fibroblast Growth Medium Fgm, supplied by Cell Applications Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/us09993521-214-17-21?v=Cell+Applications+Inc
Average 96 stars, based on 1 article reviews
fibroblast growth medium fgm - by Bioz Stars, 2026-08
96/100 stars
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94
GlobalStem mouse embryonic fibroblast feeder layers
Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated <t>mouse</t> <t>embryonic</t> <t>fibroblast</t> (MEF) <t>feeder</t> <t>layers</t> (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.
Mouse Embryonic Fibroblast Feeder Layers, supplied by GlobalStem, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/pmc05426184-342-15-20?v=GlobalStem
Average 94 stars, based on 1 article reviews
mouse embryonic fibroblast feeder layers - by Bioz Stars, 2026-08
94/100 stars
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94
GlobalStem mouse embryonic fibroblast feeder cells
Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated <t>mouse</t> <t>embryonic</t> <t>fibroblast</t> (MEF) <t>feeder</t> <t>layers</t> (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.
Mouse Embryonic Fibroblast Feeder Cells, supplied by GlobalStem, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/pmc09345898-338-15-20?v=GlobalStem
Average 94 stars, based on 1 article reviews
mouse embryonic fibroblast feeder cells - by Bioz Stars, 2026-08
94/100 stars
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90
SCHOTT f. eximia schott
Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated <t>mouse</t> <t>embryonic</t> <t>fibroblast</t> (MEF) <t>feeder</t> <t>layers</t> (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.
F. Eximia Schott, supplied by SCHOTT, 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/media+human+embryonic+lung+fibroblasts/pm29371027-572-1-7?v=SCHOTT
Average 90 stars, based on 1 article reviews
f. eximia schott - by Bioz Stars, 2026-08
90/100 stars
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99
ATCC nih 3t3 embryonic fibroblasts
Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated <t>mouse</t> <t>embryonic</t> <t>fibroblast</t> (MEF) <t>feeder</t> <t>layers</t> (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.
Nih 3t3 Embryonic Fibroblasts, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/pmc05976512-108-0-4?v=ATCC
Average 99 stars, based on 1 article reviews
nih 3t3 embryonic fibroblasts - by Bioz Stars, 2026-08
99/100 stars
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99
ATCC human embryonic kidney hek 293 fibroblasts
Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated <t>mouse</t> <t>embryonic</t> <t>fibroblast</t> (MEF) <t>feeder</t> <t>layers</t> (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.
Human Embryonic Kidney Hek 293 Fibroblasts, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/pmc03141890-56-0-6?v=ATCC
Average 99 stars, based on 1 article reviews
human embryonic kidney hek 293 fibroblasts - by Bioz Stars, 2026-08
99/100 stars
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99
ATCC human embryonic fibroblast cells
Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated <t>mouse</t> <t>embryonic</t> <t>fibroblast</t> (MEF) <t>feeder</t> <t>layers</t> (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.
Human Embryonic Fibroblast Cells, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/us06919347-669-0-10?v=ATCC
Average 99 stars, based on 1 article reviews
human embryonic fibroblast cells - by Bioz Stars, 2026-08
99/100 stars
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92
ATCC hek 293
Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated <t>mouse</t> <t>embryonic</t> <t>fibroblast</t> (MEF) <t>feeder</t> <t>layers</t> (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.
Hek 293, supplied by ATCC, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/us09592284-183-23-18?v=ATCC
Average 92 stars, based on 1 article reviews
hek 293 - by Bioz Stars, 2026-08
92/100 stars
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96
ATCC 208f rat embryo fibroblasts
Host range of LAPSN vector produced by JSRV-pseudotype packaging cells
208f Rat Embryo Fibroblasts, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/pmc00111991-82-74-86?v=ATCC
Average 96 stars, based on 1 article reviews
208f rat embryo fibroblasts - by Bioz Stars, 2026-08
96/100 stars
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94
R&D Systems mouse embryonic fibroblast conditioned media
Host range of LAPSN vector produced by JSRV-pseudotype packaging cells
Mouse Embryonic Fibroblast Conditioned Media, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/bio_rxiv__2021__06__18__448490-186-28-33?v=R%26D+Systems
Average 94 stars, based on 1 article reviews
mouse embryonic fibroblast conditioned media - by Bioz Stars, 2026-08
94/100 stars
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90
JCRB Cell Bank human embryonic fibroblast cell line nti-4
Host range of LAPSN vector produced by JSRV-pseudotype packaging cells
Human Embryonic Fibroblast Cell Line Nti 4, supplied by JCRB Cell Bank, 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/media+human+embryonic+lung+fibroblasts/10__7554_slash_elife__38883-254-51-57?v=JCRB+Cell+Bank
Average 90 stars, based on 1 article reviews
human embryonic fibroblast cell line nti-4 - by Bioz Stars, 2026-08
90/100 stars
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95
DSMZ nih 3t3 mouse embryonic fibroblasts
Host range of LAPSN vector produced by JSRV-pseudotype packaging cells
Nih 3t3 Mouse Embryonic Fibroblasts, supplied by DSMZ, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/media+human+embryonic+lung+fibroblasts/bio_rxiv__2021__12__28__474328-259-0-21?v=DSMZ
Average 95 stars, based on 1 article reviews
nih 3t3 mouse embryonic fibroblasts - by Bioz Stars, 2026-08
95/100 stars
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Image Search Results


Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated mouse embryonic fibroblast (MEF) feeder layers (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.

Journal: The Journal of Neuroscience

Article Title: Novel Regulatory Mechanisms for the SoxC Transcriptional Network Required for Visual Pathway Development

doi: 10.1523/JNEUROSCI.3430-13.2017

Figure Lengend Snippet: Sox4 promotes human stem cell differentiation into functional RGCs. A–D, Human iPSCs (A, arrows) cultured on eradicated mouse embryonic fibroblast (MEF) feeder layers (A, asterisks) expressed embryonic stem cell markers Oct4 (B) and SSEA-4 (C), but not the neuronal marker βIII-tubulin (D). E, Embryoid bodies dissociated into ≤100 μm aggregates and single cells and plated on PDL and laminin for 24 h showed RPC marker coexpression of Pax6 and Rx. F, During 5 d of differentiation, cells were infected with eGFP (control), Math5-RFP, SOX4-2A-eGFP, or both (example shown in F). G–I, After 5 d, overexpression of SOX4-GFP (G) potentiated RGC morphologic differentiation including long neurites (arrow) with growth cones (arrowhead), and (H and I) increased expression of the RGC marker Brn3. Math5 and Sox4 co-overexpression in human iPSCs together synergized in potentiating RGC-like differentiation (*p < 0.05 from control; **p < 0.01 from control, Math5-alone, and Sox4-alone conditions; N = 3, ANOVA with post hoc Dunnett's test, mean ± SEM shown). J, K, RGC-like progeny generated (J) single and (K) multiple burst action potentials with properties similar to those of purified primary rodent RGCs. Scale bars, 30 μm.

Article Snippet: Commercially available iPSCs (System Biosciences) derived from human foreskin fibroblasts were cultured (1) on irradiated mouse embryonic fibroblast feeder layers (GlobalStem) and (2) in feeder-free conditions on BD Matrigel in mTeSR1 medium (Stem Cell Technologies) supplemented with 5 μ m Y-27632 ROCK inhibitor (Stemgent) and 1 μ m Thiazovivin (Stemgent). iPS colonies were dissociated to single-cell suspension in ultralow attachment plates (Corning).

Techniques: Cell Differentiation, Functional Assay, Cell Culture, Marker, Infection, Over Expression, Expressing, Generated, Purification

Host range of LAPSN vector produced by JSRV-pseudotype packaging cells

Journal:

Article Title: Retrovirus Vectors Bearing Jaagsiekte Sheep Retrovirus Env Transduce Human Cells by Using a New Receptor Localized to Chromosome 3p21.3

doi:

Figure Lengend Snippet: Host range of LAPSN vector produced by JSRV-pseudotype packaging cells

Article Snippet: Mammalian cells, including SSF-123 primary sheep skin fibroblasts (gift from William Osborne, University of Washington, Seattle), HT-1080 human fibrosarcoma cells (American Type Culture Collection [ATCC] cell line CCL-121), 293 human kidney epithelial cells (ATCC CRL 1573), IB3 immortalized human bronchial epithelial cells ( 62 ), HeLa cervical carcinoma cells (ATCC CCL-2), NIH 3T3 thymidine kinase-deficient mouse embryo fibroblasts ( 60 ), Mus dunni tail fibroblasts ( 11 ), D17 canine osteosarcoma cells (ATCC CRL-6248), 208F rat embryo fibroblasts ( 51 ), MDBK bovine kidney epithelial cells (ATCC CCL-22), Vero African green monkey kidney epithelial cells (ATCC CCL-81), MF-NAN primary mouse (BALB/c) fibroblasts, MF-H1 primary mouse (C57BL/6) fibroblasts, and RbTE rabbit tracheal epithelial cells (gifts from Christine Halbert, Fred Hutchinson Cancer Research Center), were grown in Dulbecco's modified Eagle's medium supplemented with 10% fetal bovine serum (Hyclone).

Techniques: Plasmid Preparation, Produced