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cells culture human primary osteoblasts hob  (Cell Applications Inc)


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    Cell Applications Inc cells culture human primary osteoblasts hob
    Cells Culture Human Primary Osteoblasts Hob, supplied by Cell Applications Inc, used in various techniques. Bioz Stars score: 94/100, based on 75 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/cells culture human primary osteoblasts hob/product/Cell Applications Inc
    Average 94 stars, based on 75 article reviews
    cells culture human primary osteoblasts hob - by Bioz Stars, 2026-03
    94/100 stars

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    Cell Applications Inc osteoblast cell culture
    Representative scanning electron micrographs of cell attachment to PT, PTC10, and PTC20 scaffolds after 7 days of culture. (a-c) Scaffolds with no cells were used as a reference for no attachment. Attachment of (d-f) human <t>osteoblast</t> cells to the surface of nanocomposites highlighted by arrowheads.
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    Cell Applications Inc biocompatibility human osteoblast cell culture primary human osteoblast cells hobs
    In-vitro <t>biocompatibility</t> of human osteoblasts on nanocomposite scaffolds. (a) Viability of HOb cells seeded onto scaffolds (n=6). (b) Quantification of DNA to determine cell proliferation and growth on scaffolds over 35 days. (c) Quantification of ARS stain to measure mineralization by <t>HObs</t> over 0, 14, 28, and 35 days. Averages were reported as mean ± standard deviation, statistically significant change is denoted by the * symbol.
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    PromoCell cell assays cell culture human osteoblasts
    Figure 10 <t>Osteoblast</t> proliferation on Ti and Ti-TiO2 (160°C) samples. Data represent mean ± SD. N=3. *p,0.05 compared with Ti at the same time period, **p,0.05 compared with the same sample (Day 1). Abbreviations: Ti, titanium; TiO2, titanium dioxide.
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    Representative scanning electron micrographs of cell attachment to PT, PTC10, and PTC20 scaffolds after 7 days of culture. (a-c) Scaffolds with no cells were used as a reference for no attachment. Attachment of (d-f) human osteoblast cells to the surface of nanocomposites highlighted by arrowheads.

    Journal: Journal of biomedical materials research. Part A

    Article Title: In-Vitro and In-Vivo Biocompatibility Assessment of Free Radical Scavenging Nanocomposite Scaffolds for Bone Tissue Regeneration

    doi: 10.1002/jbm.a.36816

    Figure Lengend Snippet: Representative scanning electron micrographs of cell attachment to PT, PTC10, and PTC20 scaffolds after 7 days of culture. (a-c) Scaffolds with no cells were used as a reference for no attachment. Attachment of (d-f) human osteoblast cells to the surface of nanocomposites highlighted by arrowheads.

    Article Snippet: Osteoblast Cell Culture and Biocompatibility Human Osteoblast Cell Culture Primary human osteoblast cells (HObs) purchased from Cell Applications Inc. (San Diego, CA) were used to further assess the cell interactions between osteoblast cells and nanocomposite scaffolds.

    Techniques: Cell Attachment Assay

    In-vitro biocompatibility of human osteoblasts on nanocomposite scaffolds. (a) Viability of HOb cells seeded onto scaffolds (n=6). (b) Quantification of DNA to determine cell proliferation and growth on scaffolds over 35 days. (c) Quantification of ARS stain to measure mineralization by HObs over 0, 14, 28, and 35 days. Averages were reported as mean ± standard deviation, statistically significant change is denoted by the * symbol.

    Journal: Journal of biomedical materials research. Part A

    Article Title: In-Vitro and In-Vivo Biocompatibility Assessment of Free Radical Scavenging Nanocomposite Scaffolds for Bone Tissue Regeneration

    doi: 10.1002/jbm.a.36816

    Figure Lengend Snippet: In-vitro biocompatibility of human osteoblasts on nanocomposite scaffolds. (a) Viability of HOb cells seeded onto scaffolds (n=6). (b) Quantification of DNA to determine cell proliferation and growth on scaffolds over 35 days. (c) Quantification of ARS stain to measure mineralization by HObs over 0, 14, 28, and 35 days. Averages were reported as mean ± standard deviation, statistically significant change is denoted by the * symbol.

    Article Snippet: Osteoblast Cell Culture and Biocompatibility Human Osteoblast Cell Culture Primary human osteoblast cells (HObs) purchased from Cell Applications Inc. (San Diego, CA) were used to further assess the cell interactions between osteoblast cells and nanocomposite scaffolds.

    Techniques: In Vitro, Staining, Standard Deviation

    Figure 10 Osteoblast proliferation on Ti and Ti-TiO2 (160°C) samples. Data represent mean ± SD. N=3. *p,0.05 compared with Ti at the same time period, **p,0.05 compared with the same sample (Day 1). Abbreviations: Ti, titanium; TiO2, titanium dioxide.

    Journal: International Journal of Nanomedicine

    Article Title: Atomic layer deposition of nano-TiOthin films with enhanced biocompatibility and antimicrobial activity for orthopedic implants

    doi: 10.2147/ijn.s148065

    Figure Lengend Snippet: Figure 10 Osteoblast proliferation on Ti and Ti-TiO2 (160°C) samples. Data represent mean ± SD. N=3. *p,0.05 compared with Ti at the same time period, **p,0.05 compared with the same sample (Day 1). Abbreviations: Ti, titanium; TiO2, titanium dioxide.

    Article Snippet: Casein protein has been shown to be a key protein in TSB medium (17 g casein/L); thus, to quantify casein protein adsorption, we incubated samples with the prepared 1.7% by weight casein solution (17 g casein/L H 2 O, Sigma-Aldrich), and then the same procedures, as already described, to determine total protein adsorption were used. cell assays cell culture Human osteoblasts (PromoCell, C-12720) and human dermal fibroblasts (Lonza, CC-2509) at population numbers less than 10 were used for all cell experiments.

    Techniques: Titanium Dioxide

    Figure 9 Osteoblast adhesion on Ti samples with different TiO2 coatings after 4 hours of culture. Data represent mean ± SD, N=3. *p,0.05 compared with Ti control (labeled as Ti). Abbreviations: Ti, titanium; TiO2, titanium dioxide.

    Journal: International Journal of Nanomedicine

    Article Title: Atomic layer deposition of nano-TiOthin films with enhanced biocompatibility and antimicrobial activity for orthopedic implants

    doi: 10.2147/ijn.s148065

    Figure Lengend Snippet: Figure 9 Osteoblast adhesion on Ti samples with different TiO2 coatings after 4 hours of culture. Data represent mean ± SD, N=3. *p,0.05 compared with Ti control (labeled as Ti). Abbreviations: Ti, titanium; TiO2, titanium dioxide.

    Article Snippet: Casein protein has been shown to be a key protein in TSB medium (17 g casein/L); thus, to quantify casein protein adsorption, we incubated samples with the prepared 1.7% by weight casein solution (17 g casein/L H 2 O, Sigma-Aldrich), and then the same procedures, as already described, to determine total protein adsorption were used. cell assays cell culture Human osteoblasts (PromoCell, C-12720) and human dermal fibroblasts (Lonza, CC-2509) at population numbers less than 10 were used for all cell experiments.

    Techniques: Control, Labeling, Titanium Dioxide

    Figure 12 (A) Osteoblast and (B) fibroblast cell density (after 4 hours of culture) was directly proportional to the surface energy on Ti controls and Ti-TiO2 samples. Error bars represent SD. Abbreviations: Ti, titanium; TiO2, titanium dioxide.

    Journal: International Journal of Nanomedicine

    Article Title: Atomic layer deposition of nano-TiOthin films with enhanced biocompatibility and antimicrobial activity for orthopedic implants

    doi: 10.2147/ijn.s148065

    Figure Lengend Snippet: Figure 12 (A) Osteoblast and (B) fibroblast cell density (after 4 hours of culture) was directly proportional to the surface energy on Ti controls and Ti-TiO2 samples. Error bars represent SD. Abbreviations: Ti, titanium; TiO2, titanium dioxide.

    Article Snippet: Casein protein has been shown to be a key protein in TSB medium (17 g casein/L); thus, to quantify casein protein adsorption, we incubated samples with the prepared 1.7% by weight casein solution (17 g casein/L H 2 O, Sigma-Aldrich), and then the same procedures, as already described, to determine total protein adsorption were used. cell assays cell culture Human osteoblasts (PromoCell, C-12720) and human dermal fibroblasts (Lonza, CC-2509) at population numbers less than 10 were used for all cell experiments.

    Techniques: Titanium Dioxide