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ATCC human gingival fibroblast cell line hgf 1
Human Gingival Fibroblast Cell Line Hgf 1, 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
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Thermo Fisher fibroblast cell sheets
(A) Schematic depiction of MBV isolation procedure from in vitro dermal <t>fibroblast</t> cultures. (B) Nanoparticle tracking analysis of diluted MBVs (1:10,000) measures particle size distribution and concentration. (C) Transmission electron micrograph of MBVs reveals vesicle-like morphology. (D) Western blot analysis of Alix (∼100kDa), Integrin β1 (∼100-130 kDa), and CD63 (∼35-55 kDa) expression in MBVs and dermal fibroblast cell lysate. (E) Fluorescence and scanning electron microscopy images of fast-relaxing and slow-relaxing alginate hydrogels with and without MBVs. Top: 5kPa hydrogels encapsulating CFSE-labeled MBVs, * denotes region outside of hydrogel. Bottom: 20kPa hydrogels encapsulating unlabeled MBVs.
Fibroblast Cell Sheets, supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Pasteur Institute human foreskin fibroblast cell line
(A) Schematic depiction of MBV isolation procedure from in vitro dermal <t>fibroblast</t> cultures. (B) Nanoparticle tracking analysis of diluted MBVs (1:10,000) measures particle size distribution and concentration. (C) Transmission electron micrograph of MBVs reveals vesicle-like morphology. (D) Western blot analysis of Alix (∼100kDa), Integrin β1 (∼100-130 kDa), and CD63 (∼35-55 kDa) expression in MBVs and dermal fibroblast cell lysate. (E) Fluorescence and scanning electron microscopy images of fast-relaxing and slow-relaxing alginate hydrogels with and without MBVs. Top: 5kPa hydrogels encapsulating CFSE-labeled MBVs, * denotes region outside of hydrogel. Bottom: 20kPa hydrogels encapsulating unlabeled MBVs.
Human Foreskin Fibroblast 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
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Pasteur Institute nih 3t3 fibroblast cells c156
(A) Schematic depiction of MBV isolation procedure from in vitro dermal <t>fibroblast</t> cultures. (B) Nanoparticle tracking analysis of diluted MBVs (1:10,000) measures particle size distribution and concentration. (C) Transmission electron micrograph of MBVs reveals vesicle-like morphology. (D) Western blot analysis of Alix (∼100kDa), Integrin β1 (∼100-130 kDa), and CD63 (∼35-55 kDa) expression in MBVs and dermal fibroblast cell lysate. (E) Fluorescence and scanning electron microscopy images of fast-relaxing and slow-relaxing alginate hydrogels with and without MBVs. Top: 5kPa hydrogels encapsulating CFSE-labeled MBVs, * denotes region outside of hydrogel. Bottom: 20kPa hydrogels encapsulating unlabeled MBVs.
Nih 3t3 Fibroblast Cells C156, 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
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Keygen Biotech standard fibroblast cell line l929 fibroblasts
The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of <t>L929</t> cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.
Standard Fibroblast Cell Line L929 Fibroblasts, supplied by Keygen Biotech, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Procell Inc l 929 fibroblast cell lines
The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of <t>L929</t> cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.
L 929 Fibroblast Cell Lines, supplied by Procell Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Chennai Corporation human primary gingival fibroblast hgf cells
The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of <t>L929</t> cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.
Human Primary Gingival Fibroblast Hgf Cells, supplied by Chennai Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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ATCC fibroblast cells
The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of <t>L929</t> cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.
Fibroblast Cells, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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ATCC early passage normal human female colon fibroblast ccd 18co cell line
The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of <t>L929</t> cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.
Early Passage Normal Human Female Colon Fibroblast Ccd 18co Cell Line, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Procell Inc mouse fibroblast cells
The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of <t>L929</t> cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.
Mouse Fibroblast Cells, supplied by Procell Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


(A) Schematic depiction of MBV isolation procedure from in vitro dermal fibroblast cultures. (B) Nanoparticle tracking analysis of diluted MBVs (1:10,000) measures particle size distribution and concentration. (C) Transmission electron micrograph of MBVs reveals vesicle-like morphology. (D) Western blot analysis of Alix (∼100kDa), Integrin β1 (∼100-130 kDa), and CD63 (∼35-55 kDa) expression in MBVs and dermal fibroblast cell lysate. (E) Fluorescence and scanning electron microscopy images of fast-relaxing and slow-relaxing alginate hydrogels with and without MBVs. Top: 5kPa hydrogels encapsulating CFSE-labeled MBVs, * denotes region outside of hydrogel. Bottom: 20kPa hydrogels encapsulating unlabeled MBVs.

Journal: bioRxiv

Article Title: Matrix stiffness and stress relaxation regulate matrix-bound nanovesicle release from alginate hydrogels

doi: 10.64898/2026.05.28.728372

Figure Lengend Snippet: (A) Schematic depiction of MBV isolation procedure from in vitro dermal fibroblast cultures. (B) Nanoparticle tracking analysis of diluted MBVs (1:10,000) measures particle size distribution and concentration. (C) Transmission electron micrograph of MBVs reveals vesicle-like morphology. (D) Western blot analysis of Alix (∼100kDa), Integrin β1 (∼100-130 kDa), and CD63 (∼35-55 kDa) expression in MBVs and dermal fibroblast cell lysate. (E) Fluorescence and scanning electron microscopy images of fast-relaxing and slow-relaxing alginate hydrogels with and without MBVs. Top: 5kPa hydrogels encapsulating CFSE-labeled MBVs, * denotes region outside of hydrogel. Bottom: 20kPa hydrogels encapsulating unlabeled MBVs.

Article Snippet: At the end of the 21-day culture, fibroblast cell sheets were washed with 1X PBS and lysed in RIPA buffer (Thermo Fisher Scientific, 89900) supplemented with protease and phosphatase inhibitor (Thermo Fisher Scientific, A32961).

Techniques: Isolation, In Vitro, Concentration Assay, Transmission Assay, Western Blot, Expressing, Fluorescence, Electron Microscopy, Labeling

The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of L929 cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.

Journal: Bioactive Materials

Article Title: Bioactive-coated porous anastomotic staples enhance anastomotic healing

doi: 10.1016/j.bioactmat.2026.01.005

Figure Lengend Snippet: The biocompatibility of Ti-OH-ePV. a) Schematic illustration of the co-culture model; b) Viability of L929 cells after 24 h co-culture with Ti, Ti-OH, and Ti-OH-ePV samples; c) Live/dead fluorescence images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 200 μm); d) Cytoskeletal staining images of L929 cells in Ti, Ti-OH, and Ti-OH-ePV groups (scale bar: 100 μm); e) Hemolysis test results and f) quantitative hemolysis ratios of Triton X-100, PBS, Ti, Ti-OH, and Ti-OH-ePV groups; g) Immunohistochemical staining images of IL-4, IL-10, CD68, and IL-1β in rat subcutaneous tissues 7 days post-implantation (scale bar: 100 μm); h) Quantitative analysis of IL-4 and IL-10 expression; i) Quantitative analysis of CD68 and IL-1β expression; n = 3; ns = no significance, ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001.

Article Snippet: Standard fibroblast cell line L929 fibroblasts and mouse macrophages (Raw264.7) were obtained from Jiangsu Keygen Biotech Co., Ltd. (China).

Techniques: Co-Culture Assay, Fluorescence, Staining, Immunohistochemical staining, Expressing

Evaluation of cell adhesion, proliferation, and pro-angiogenic potential of different samples. a) SEM images of Ti, Ti-OH, Ti-OH-ePV-3d, and Ti-OH-ePV-7d (scale bar: 1 μm); b) Fluorescent images of L929 cells on Ti, Ti-OH, Ti-OH-ePV-3d, and Ti-OH-ePV-7d after co-culturing 72 h (scale bar: 200 μm); c) Fluorescent images of Matrigel tube formation by HUVECs treated with Ti, Ti-OH, Ti-OH-ePDA, Ti-OH-ePV-3d, and Ti-OH-ePV-7d (scale bar: 200 μm); e) Scratch wound migration assay of HUVECs in the Ti, Ti-OH, Ti-OH-ePDA, Ti-OH-ePV-3d, and Ti-OH-ePV-7d groups (scale bar: 100 μm).

Journal: Bioactive Materials

Article Title: Bioactive-coated porous anastomotic staples enhance anastomotic healing

doi: 10.1016/j.bioactmat.2026.01.005

Figure Lengend Snippet: Evaluation of cell adhesion, proliferation, and pro-angiogenic potential of different samples. a) SEM images of Ti, Ti-OH, Ti-OH-ePV-3d, and Ti-OH-ePV-7d (scale bar: 1 μm); b) Fluorescent images of L929 cells on Ti, Ti-OH, Ti-OH-ePV-3d, and Ti-OH-ePV-7d after co-culturing 72 h (scale bar: 200 μm); c) Fluorescent images of Matrigel tube formation by HUVECs treated with Ti, Ti-OH, Ti-OH-ePDA, Ti-OH-ePV-3d, and Ti-OH-ePV-7d (scale bar: 200 μm); e) Scratch wound migration assay of HUVECs in the Ti, Ti-OH, Ti-OH-ePDA, Ti-OH-ePV-3d, and Ti-OH-ePV-7d groups (scale bar: 100 μm).

Article Snippet: Standard fibroblast cell line L929 fibroblasts and mouse macrophages (Raw264.7) were obtained from Jiangsu Keygen Biotech Co., Ltd. (China).

Techniques: Migration