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canine osteoblast differentiation medium  (Cell Applications Inc)


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    Structured Review

    Cell Applications Inc canine osteoblast differentiation medium
    Tri-lineage differentiation ability of induced pluripotent stem cell (iPSC)-derived mesenchymal stem cells (iMSCs) obtained using the neural crest cell (NCC) + PRIME protocol. iMSCs were obtained from canine embryonic fibroblast (CEF)-derived iPSCs (CEF-iPSCs), canine urine-derived cell (cUC)-derived iPSCs (cUC-iPSCs), and canine peripheral blood mononuclear cell (cPBMC)-derived iPSCs (cPBMC-iPSCs) using the NCC + PRIME protocol. The origin of PRIME-iMSCs is represented on the upper side of the pictures. (A) Von Kossa staining after <t>osteoblast</t> induction. Von Kossa staining identified hydroxyapatite crystals in the extracellular matrix of differentiated cells. Scale bar = 100 μm. qPCR for osteogenic markers, SPP1 and BGLAP , were shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as relative quantification (RQ) for iMSCs before differentiation and as the mean ± standard deviation (n = 3). ∗p < 0.05. (B) Oil Red O staining after adipocyte differentiation. The cells formed Oil Red O-positive lipid vacuoles in the cytoplasm. Scale bar = 20 μm. qPCR for adipogenic marker, PLIN1 , was shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3). (C) Images of Alcian blue staining after chondrocyte induction. The iMSCs from all iPSC lines formed spheres and exhibited Alcian blue-positive proteoglycan production. Nuclei were stained red using nuclear fast red stain. Scale bar = 50 μm. qPCR for chondrogenic markers, ACAN and SOX9 , were shown below the picture. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3).
    Canine Osteoblast Differentiation Medium, supplied by Cell Applications Inc, used in various techniques. Bioz Stars score: 94/100, based on 11 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/canine+osteoblast+differentiation+medium/Canine+Osteoblast+Differentiation+Medium/pmc12159829-75-5-9
    Average 94 stars, based on 11 article reviews
    canine osteoblast differentiation medium - by Bioz Stars, 2026-10
    94/100 stars

    Images

    1) Product Images from "Generation of canine induced pluripotent stem cell-derived mesenchymal stem cells: Comparison of differentiation strategies and cell origins"

    Article Title: Generation of canine induced pluripotent stem cell-derived mesenchymal stem cells: Comparison of differentiation strategies and cell origins

    Journal: Regenerative Therapy

    doi: 10.1016/j.reth.2025.05.008

    Tri-lineage differentiation ability of induced pluripotent stem cell (iPSC)-derived mesenchymal stem cells (iMSCs) obtained using the neural crest cell (NCC) + PRIME protocol. iMSCs were obtained from canine embryonic fibroblast (CEF)-derived iPSCs (CEF-iPSCs), canine urine-derived cell (cUC)-derived iPSCs (cUC-iPSCs), and canine peripheral blood mononuclear cell (cPBMC)-derived iPSCs (cPBMC-iPSCs) using the NCC + PRIME protocol. The origin of PRIME-iMSCs is represented on the upper side of the pictures. (A) Von Kossa staining after osteoblast induction. Von Kossa staining identified hydroxyapatite crystals in the extracellular matrix of differentiated cells. Scale bar = 100 μm. qPCR for osteogenic markers, SPP1 and BGLAP , were shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as relative quantification (RQ) for iMSCs before differentiation and as the mean ± standard deviation (n = 3). ∗p < 0.05. (B) Oil Red O staining after adipocyte differentiation. The cells formed Oil Red O-positive lipid vacuoles in the cytoplasm. Scale bar = 20 μm. qPCR for adipogenic marker, PLIN1 , was shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3). (C) Images of Alcian blue staining after chondrocyte induction. The iMSCs from all iPSC lines formed spheres and exhibited Alcian blue-positive proteoglycan production. Nuclei were stained red using nuclear fast red stain. Scale bar = 50 μm. qPCR for chondrogenic markers, ACAN and SOX9 , were shown below the picture. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3).
    Figure Legend Snippet: Tri-lineage differentiation ability of induced pluripotent stem cell (iPSC)-derived mesenchymal stem cells (iMSCs) obtained using the neural crest cell (NCC) + PRIME protocol. iMSCs were obtained from canine embryonic fibroblast (CEF)-derived iPSCs (CEF-iPSCs), canine urine-derived cell (cUC)-derived iPSCs (cUC-iPSCs), and canine peripheral blood mononuclear cell (cPBMC)-derived iPSCs (cPBMC-iPSCs) using the NCC + PRIME protocol. The origin of PRIME-iMSCs is represented on the upper side of the pictures. (A) Von Kossa staining after osteoblast induction. Von Kossa staining identified hydroxyapatite crystals in the extracellular matrix of differentiated cells. Scale bar = 100 μm. qPCR for osteogenic markers, SPP1 and BGLAP , were shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as relative quantification (RQ) for iMSCs before differentiation and as the mean ± standard deviation (n = 3). ∗p < 0.05. (B) Oil Red O staining after adipocyte differentiation. The cells formed Oil Red O-positive lipid vacuoles in the cytoplasm. Scale bar = 20 μm. qPCR for adipogenic marker, PLIN1 , was shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3). (C) Images of Alcian blue staining after chondrocyte induction. The iMSCs from all iPSC lines formed spheres and exhibited Alcian blue-positive proteoglycan production. Nuclei were stained red using nuclear fast red stain. Scale bar = 50 μm. qPCR for chondrogenic markers, ACAN and SOX9 , were shown below the picture. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3).

    Techniques Used: Derivative Assay, Staining, Quantitative Proteomics, Standard Deviation, Marker

    Related Articles

    Cell Culture:

    Article Title: Generation of canine induced pluripotent stem cell-derived mesenchymal stem cells: Comparison of differentiation strategies and cell origins
    Article Snippet: .. The cells were cultured in canine osteoblast differentiation medium (Cell Applications, San Diego, CA, USA) for 28 days at 37 °C and 5 % CO 2 . ..

    Article Title: Generation of canine induced pluripotent stem cell-derived mesenchymal stem cells: Comparison of differentiation strategies and cell origins
    Article Snippet: .. The cells were cultured in canine osteoblast differentiation medium (Cell Applications, San Diego, CA, USA) for 28 days at 37 ◦C and 5 % CO2. ..

    Incubation:

    Article Title: Mechanism of insulin production in canine bone marrow derived mesenchymal stem cells.
    Article Snippet: Insulin is a critical hormone in the regulation of blood glucose levels and is produced exclusively by pancreatic islet beta-cells.. Insulin deficiency due to reduced pancreatic islet beta-cell number underlies the progression of diabetes mellitus, prompting efforts to develop beta-cell replacement therapies.. However, precise information on beta-cell replacement and differentiation in canines is limited.

    Control:

    Article Title: Mechanism of insulin production in canine bone marrow derived mesenchymal stem cells.
    Article Snippet: Insulin is a critical hormone in the regulation of blood glucose levels and is produced exclusively by pancreatic islet beta-cells.. Insulin deficiency due to reduced pancreatic islet beta-cell number underlies the progression of diabetes mellitus, prompting efforts to develop beta-cell replacement therapies.. However, precise information on beta-cell replacement and differentiation in canines is limited.



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    Cell Applications Inc canine osteoblast differentiation medium
    Tri-lineage differentiation ability of induced pluripotent stem cell (iPSC)-derived mesenchymal stem cells (iMSCs) obtained using the neural crest cell (NCC) + PRIME protocol. iMSCs were obtained from canine embryonic fibroblast (CEF)-derived iPSCs (CEF-iPSCs), canine urine-derived cell (cUC)-derived iPSCs (cUC-iPSCs), and canine peripheral blood mononuclear cell (cPBMC)-derived iPSCs (cPBMC-iPSCs) using the NCC + PRIME protocol. The origin of PRIME-iMSCs is represented on the upper side of the pictures. (A) Von Kossa staining after <t>osteoblast</t> induction. Von Kossa staining identified hydroxyapatite crystals in the extracellular matrix of differentiated cells. Scale bar = 100 μm. qPCR for osteogenic markers, SPP1 and BGLAP , were shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as relative quantification (RQ) for iMSCs before differentiation and as the mean ± standard deviation (n = 3). ∗p < 0.05. (B) Oil Red O staining after adipocyte differentiation. The cells formed Oil Red O-positive lipid vacuoles in the cytoplasm. Scale bar = 20 μm. qPCR for adipogenic marker, PLIN1 , was shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3). (C) Images of Alcian blue staining after chondrocyte induction. The iMSCs from all iPSC lines formed spheres and exhibited Alcian blue-positive proteoglycan production. Nuclei were stained red using nuclear fast red stain. Scale bar = 50 μm. qPCR for chondrogenic markers, ACAN and SOX9 , were shown below the picture. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3).
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    Tri-lineage differentiation ability of induced pluripotent stem cell (iPSC)-derived mesenchymal stem cells (iMSCs) obtained using the neural crest cell (NCC) + PRIME protocol. iMSCs were obtained from canine embryonic fibroblast (CEF)-derived iPSCs (CEF-iPSCs), canine urine-derived cell (cUC)-derived iPSCs (cUC-iPSCs), and canine peripheral blood mononuclear cell (cPBMC)-derived iPSCs (cPBMC-iPSCs) using the NCC + PRIME protocol. The origin of PRIME-iMSCs is represented on the upper side of the pictures. (A) Von Kossa staining after <t>osteoblast</t> induction. Von Kossa staining identified hydroxyapatite crystals in the extracellular matrix of differentiated cells. Scale bar = 100 μm. qPCR for osteogenic markers, SPP1 and BGLAP , were shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as relative quantification (RQ) for iMSCs before differentiation and as the mean ± standard deviation (n = 3). ∗p < 0.05. (B) Oil Red O staining after adipocyte differentiation. The cells formed Oil Red O-positive lipid vacuoles in the cytoplasm. Scale bar = 20 μm. qPCR for adipogenic marker, PLIN1 , was shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3). (C) Images of Alcian blue staining after chondrocyte induction. The iMSCs from all iPSC lines formed spheres and exhibited Alcian blue-positive proteoglycan production. Nuclei were stained red using nuclear fast red stain. Scale bar = 50 μm. qPCR for chondrogenic markers, ACAN and SOX9 , were shown below the picture. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3).
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    Image Search Results


    Tri-lineage differentiation ability of induced pluripotent stem cell (iPSC)-derived mesenchymal stem cells (iMSCs) obtained using the neural crest cell (NCC) + PRIME protocol. iMSCs were obtained from canine embryonic fibroblast (CEF)-derived iPSCs (CEF-iPSCs), canine urine-derived cell (cUC)-derived iPSCs (cUC-iPSCs), and canine peripheral blood mononuclear cell (cPBMC)-derived iPSCs (cPBMC-iPSCs) using the NCC + PRIME protocol. The origin of PRIME-iMSCs is represented on the upper side of the pictures. (A) Von Kossa staining after osteoblast induction. Von Kossa staining identified hydroxyapatite crystals in the extracellular matrix of differentiated cells. Scale bar = 100 μm. qPCR for osteogenic markers, SPP1 and BGLAP , were shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as relative quantification (RQ) for iMSCs before differentiation and as the mean ± standard deviation (n = 3). ∗p < 0.05. (B) Oil Red O staining after adipocyte differentiation. The cells formed Oil Red O-positive lipid vacuoles in the cytoplasm. Scale bar = 20 μm. qPCR for adipogenic marker, PLIN1 , was shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3). (C) Images of Alcian blue staining after chondrocyte induction. The iMSCs from all iPSC lines formed spheres and exhibited Alcian blue-positive proteoglycan production. Nuclei were stained red using nuclear fast red stain. Scale bar = 50 μm. qPCR for chondrogenic markers, ACAN and SOX9 , were shown below the picture. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3).

    Journal: Regenerative Therapy

    Article Title: Generation of canine induced pluripotent stem cell-derived mesenchymal stem cells: Comparison of differentiation strategies and cell origins

    doi: 10.1016/j.reth.2025.05.008

    Figure Lengend Snippet: Tri-lineage differentiation ability of induced pluripotent stem cell (iPSC)-derived mesenchymal stem cells (iMSCs) obtained using the neural crest cell (NCC) + PRIME protocol. iMSCs were obtained from canine embryonic fibroblast (CEF)-derived iPSCs (CEF-iPSCs), canine urine-derived cell (cUC)-derived iPSCs (cUC-iPSCs), and canine peripheral blood mononuclear cell (cPBMC)-derived iPSCs (cPBMC-iPSCs) using the NCC + PRIME protocol. The origin of PRIME-iMSCs is represented on the upper side of the pictures. (A) Von Kossa staining after osteoblast induction. Von Kossa staining identified hydroxyapatite crystals in the extracellular matrix of differentiated cells. Scale bar = 100 μm. qPCR for osteogenic markers, SPP1 and BGLAP , were shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as relative quantification (RQ) for iMSCs before differentiation and as the mean ± standard deviation (n = 3). ∗p < 0.05. (B) Oil Red O staining after adipocyte differentiation. The cells formed Oil Red O-positive lipid vacuoles in the cytoplasm. Scale bar = 20 μm. qPCR for adipogenic marker, PLIN1 , was shown below the staining. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3). (C) Images of Alcian blue staining after chondrocyte induction. The iMSCs from all iPSC lines formed spheres and exhibited Alcian blue-positive proteoglycan production. Nuclei were stained red using nuclear fast red stain. Scale bar = 50 μm. qPCR for chondrogenic markers, ACAN and SOX9 , were shown below the picture. Black bars and white bars represent iMSCs before and after differentiation. Data are presented as RQ for iMSCs before differentiation and as the mean ± standard deviation (n = 3).

    Article Snippet: The cells were cultured in canine osteoblast differentiation medium (Cell Applications, San Diego, CA, USA) for 28 days at 37 °C and 5 % CO 2 .

    Techniques: Derivative Assay, Staining, Quantitative Proteomics, Standard Deviation, Marker