hff cell line Search Results


90
Coriell Institute for Medical Research cell line ips-hff
Cell Line Ips Hff, supplied by Coriell Institute for Medical Research, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
DS Pharma Biomedical hff cell line
Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. <t>HEK</t> cells in micro-rolls formed cell fibres (f-1). By <t>contrast,</t> <t>CHO</t> cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).
Hff Cell Line, supplied by DS Pharma Biomedical, 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/hff+cell+line/pmc05741765-190-4-22?v=DS+Pharma+Biomedical
Average 90 stars, based on 1 article reviews
hff cell line - by Bioz Stars, 2026-08
90/100 stars
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90
Coriell Institute for Medical Research cell line hff
Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. <t>HEK</t> cells in micro-rolls formed cell fibres (f-1). By <t>contrast,</t> <t>CHO</t> cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).
Cell Line Hff, supplied by Coriell Institute for Medical Research, 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/hff+cell+line/pm32460060-5-2-40?v=Coriell+Institute+for+Medical+Research
Average 90 stars, based on 1 article reviews
cell line hff - by Bioz Stars, 2026-08
90/100 stars
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90
National Centre for Cell Science normal cell line human foreskin fibroblasts hff-1-scrc-1041
Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. <t>HEK</t> cells in micro-rolls formed cell fibres (f-1). By <t>contrast,</t> <t>CHO</t> cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).
Normal Cell Line Human Foreskin Fibroblasts Hff 1 Scrc 1041, supplied by National Centre for Cell Science, 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/hff+cell+line/pmc09511679-70-45-57?v=National+Centre+for+Cell+Science
Average 90 stars, based on 1 article reviews
normal cell line human foreskin fibroblasts hff-1-scrc-1041 - by Bioz Stars, 2026-08
90/100 stars
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hff-1  (ATCC)
99
ATCC hff-1
Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. <t>HEK</t> cells in micro-rolls formed cell fibres (f-1). By <t>contrast,</t> <t>CHO</t> cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).
Hff 1, 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/hff+cell+line/custom%40scrc-1041%4030922966?v=ATCC
Average 99 stars, based on 1 article reviews
hff-1 - by Bioz Stars, 2026-08
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90
SAS institute human fibroblast as normal cell line, hff
Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. <t>HEK</t> cells in micro-rolls formed cell fibres (f-1). By <t>contrast,</t> <t>CHO</t> cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).
Human Fibroblast As Normal Cell Line, Hff, supplied by SAS institute, 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/hff+cell+line/10__1002_slash_jrs__5289-76-7-4?v=SAS+institute
Average 90 stars, based on 1 article reviews
human fibroblast as normal cell line, hff - by Bioz Stars, 2026-08
90/100 stars
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86
Pasteur Institute c reative c om m ons l icense hff cell line
Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. <t>HEK</t> cells in micro-rolls formed cell fibres (f-1). By <t>contrast,</t> <t>CHO</t> cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).
C Reative C Om M Ons L Icense Hff Cell Line, supplied by Pasteur Institute, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/hff+cell+line/pm40702807-90-31-48?v=Pasteur+Institute
Average 86 stars, based on 1 article reviews
c reative c om m ons l icense hff cell line - by Bioz Stars, 2026-08
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Image Search Results


Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. HEK cells in micro-rolls formed cell fibres (f-1). By contrast, CHO cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).

Journal: Scientific Reports

Article Title: Cell Assembly in Self-foldable Multi-layered Soft Micro-rolls

doi: 10.1038/s41598-017-17403-0

Figure Lengend Snippet: Encapsulation and incubation of multiple mammalian cells inside micro-rolls. ( a ) Time-lapse schematic and optical images illustrating the cell encapsulation. Once EDTA solution is added, the films transform and encapsulate the cells suspended on the film surface. ( b ) Confocal reconstructed and cross-sectional (b-1, b-2, b-3) images of cell-laden micro-rolls where ρ is approximately 20 μm. The silk fibroin layers in the micro-rolls and encapsulated cells were labelled with Qdot 655 and calcein, respectively. ( c ) A batch release of films produced an array of cell-containing micro-rolls. ( d ) Confocal cross-sectional images of cell-laden micro-rolls where ρ is approximately 40 μm. ( e ) The number of encapsulated cells inside micro-rolls with l = 400 μm (red dots), 800 μm (blue dots) with respect to the cell density of suspended cells. ( f ) Phase-contrast and reconstructed confocal 3D images of cells inside micro-rolls with ρ = 40 μm after 24 h incubation. HEK cells in micro-rolls formed cell fibres (f-1). By contrast, CHO cells in micro-rolls formed hollow structures (f-2, f-3). The enlarged confocal image on the right shows a cross-sectional view of a hollow structure. ( g ) Handling 400 μm-long cell-laden micro-rolls in culture medium. The micro-rolls can be withdrawn, relocated, and ejected with a picolitre flow using glass capillaries. ( h ) Micrograph of assembled cell-laden micro-rolls in culture medium. Scale bars: 100 μm in ( a – g ), 1 mm in ( f ).

Article Snippet: Chinese hamster ovary (CHO), human embryonic kidney (HEK), human foreskin fibroblast (HFF), and human hepato-cellular carcinoma (Huh-7) cell lines were purchased from DS Pharma Biomedical, Japan.

Techniques: Encapsulation, Incubation, Produced