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adipogenic differentiation medium  (PromoCell)


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    PromoCell adipogenic differentiation medium
    Adipogenic Differentiation Medium, supplied by PromoCell, used in various techniques. Bioz Stars score: 95/100, based on 72 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mesenchymal+stem+cell+adipogenic+differentiation+medium/Mesenchymal+Stem+Cell+Adipogenic+Differentiation+Medium+2/pmc13121900-119-5-9
    Average 95 stars, based on 72 article reviews
    adipogenic differentiation medium - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    Membrane:

    Article Title: Steroidogenic differentiation of human amniotic membrane-derived mesenchymal stem cells into a progesterone-/androgen-producing cell lineage by SF-1 and an estrogen-producing cell lineage by WT1−KTS
    Article Snippet: .. To induce adipogenic differentiation, the amniotic membrane-derived cells were seeded in Mesenchymal Stem Cell Adipogenic Differentiation Medium (PromoCell) at a density of 2×10 4 cells/cm 2 and cultured for 4 weeks. ..

    Cell Culture:

    Article Title: Steroidogenic differentiation of human amniotic membrane-derived mesenchymal stem cells into a progesterone-/androgen-producing cell lineage by SF-1 and an estrogen-producing cell lineage by WT1−KTS
    Article Snippet: .. To induce adipogenic differentiation, the amniotic membrane-derived cells were seeded in Mesenchymal Stem Cell Adipogenic Differentiation Medium (PromoCell) at a density of 2×10 4 cells/cm 2 and cultured for 4 weeks. ..

    Article Title: Repeated human cranial bone-derived mesenchymal stem cell transplantation improved electrophysiological recovery in a spinal cord injury rat model.
    Article Snippet: Mesenchymal stem cell (MSC)-based therapy has been applied in several clinical trials of spinal cord injury (SCI).. We have successfully established MSCs from human cranial bone and developed a longitudinal neuromonitoring technique for rodents.. In addition to single transplantation, the potential of multiple transplantations has been suggested as a new therapeutic strategy.

    Article Title: Apoptosis Related Human Wharton's Jelly-Derived Stem Cells Differentiation into Osteoblasts, Chondrocytes, Adipocytes and Neural-like Cells-Complete Transcriptomic Assays.
    Article Snippet: .. Then, the culture medium was replaced with Mesenchymal Stem Cell Adipogenic Differentiation Medium (PromoCell, Heidelberg, Germany) in half of the wells; whereas the other half contained cells cultured as negative controls in a standard culture medium. .. Differentiation was conducted for 14 days and the medium was changed every 72 h. The results of the differentiation were evaluated via Oil Red O (Sigma-Aldrich, Saint Louis, MO, USA) staining.



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    Schematic conceptualization of this study. IR activated the NF-κB signaling pathway to promote activation and maturation of DCs, amplifying inflammatory signals through the release of pro-inflammatory cytokines. The mDCs triggered oxidative stress of BMSCs, showing increased intracellular ROS levels, inhibited osteogenic differentiation, and enhanced <t>adipogenic</t> differentiation, which accelerated the progression of radiation-induced jaw injury. VitD3-induced tolDCs exhibited IR resistance and anti-inflammatory properties, possessing the therapeutic potential to accelerate bone regeneration in irradiated jaw defects through local administration. (IR: ionizing radiation; mDC: mature dendritic cell; tolDC: tolerogenic dendritic cell; BMSC: bone marrow <t>mesenchymal</t> stem cell; ROS: reactive oxygen species; vitamin D3: vitD3)
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    Schematic conceptualization of this study. IR activated the NF-κB signaling pathway to promote activation and maturation of DCs, amplifying inflammatory signals through the release of pro-inflammatory cytokines. The mDCs triggered oxidative stress of BMSCs, showing increased intracellular ROS levels, inhibited osteogenic differentiation, and enhanced adipogenic differentiation, which accelerated the progression of radiation-induced jaw injury. VitD3-induced tolDCs exhibited IR resistance and anti-inflammatory properties, possessing the therapeutic potential to accelerate bone regeneration in irradiated jaw defects through local administration. (IR: ionizing radiation; mDC: mature dendritic cell; tolDC: tolerogenic dendritic cell; BMSC: bone marrow mesenchymal stem cell; ROS: reactive oxygen species; vitamin D3: vitD3)

    Journal: Stem Cell Research & Therapy

    Article Title: Ionizing radiation-mediated dendritic cell maturation exacerbates inflammatory response of bone marrow mesenchymal stem cells and impairs osteogenesis in radiation-induced jaw injury

    doi: 10.1186/s13287-025-04508-x

    Figure Lengend Snippet: Schematic conceptualization of this study. IR activated the NF-κB signaling pathway to promote activation and maturation of DCs, amplifying inflammatory signals through the release of pro-inflammatory cytokines. The mDCs triggered oxidative stress of BMSCs, showing increased intracellular ROS levels, inhibited osteogenic differentiation, and enhanced adipogenic differentiation, which accelerated the progression of radiation-induced jaw injury. VitD3-induced tolDCs exhibited IR resistance and anti-inflammatory properties, possessing the therapeutic potential to accelerate bone regeneration in irradiated jaw defects through local administration. (IR: ionizing radiation; mDC: mature dendritic cell; tolDC: tolerogenic dendritic cell; BMSC: bone marrow mesenchymal stem cell; ROS: reactive oxygen species; vitamin D3: vitD3)

    Article Snippet: BMSCs were co-cultured with DC-CM and OriCell SD rat bone marrow mesenchymal stem cell adipogenic differentiation basal medium (Cyagen, USA) for 7 days.

    Techniques: Activation Assay, Irradiation