Dextran sulfate promotes the rapid aggregation of porcine bone-marrow stromal cells.
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Summary
Of these glycosaminoglycan molecules only dextran sulfate induced confluent porcine bone-marrow stromal-cell monolayers to retract into tight, circular cell aggregates, and dexamethasone, ascorbate, and beta-glycerophosphate produced no morphological change within 6 days when administered alone, but increased proliferation and aggregation in dextan sulfate-treated cultures.
- Type
- article
- Published
- 1995-10-01
- Cited by
- 10
- References
- 33
- OpenAlex
- https://openalex.org/W2009463914
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24647452
Keywords
Stromal cell, Chondroitin sulfate, Dextran, Bone marrow, Chemistry
References
- Heparan sulfate proteoglycans from mouse mammary epithelial cells. Cell surface proteoglycan as a receptor for interstitial collagens.
- Precursor cells of mechanocytes.
- The effect of 1,25(OH)2D3 on alkaline phosphatase in osteoblastic osteosarcoma cells.
- Functions of proteoglycans at the cell surface.
- Analysis and isolation of embryonic mammalian neurons by fluorescence- activated cell sorting
- Adipocytic cells cultured from marrow have osteogenic potential.
- Notochordal stimulation of in vitro somite chondrogenesis before and after enzymatic removal of perinotochordal materials.
- Formation of multicellular spheroids composed of adult rat hepatocytes in dishes with positively charged surfaces and under other nonadherent environments.
- Stimulation of chondromucoprotein synthesis in chondrocytes by extracellular chondromucoprotein.
- Visualisation and selective elimination of a subpopulation of mitogen-responsive bone marrow stromal cells using bromodeoxyuridine and photo-induced cell killing.
- Cartilage stem cells: regulation of differentiation.
- Continuously growing bipotential and monopotential myogenic, adipogenic, and chondrogenic subclones isolated from the multipotential RCJ 3.1 clonal cell line.
- Regulation of chondrogenesis by heparan sulfate and structurally related glycosaminoglycans.
- Effects of heparan sulfate removal on attachment and reattachment of fibroblasts and endothelial cells.
- Marrow stromal stem cells
- Minor collagens of chicken hyaline cartilage.
- Hyaluronic acid bonded to cell-culture surfaces stimulates chondrogenesis in stage 24 limb mesenchyme cell cultures.
- Formation of bone and cartilage by marrow stromal cells in diffusion chambers in vivo.
- Compartmentalization of a haematopoietic growth factor (GM-CSF) by glycosaminoglycans in the bone marrow microenvironment
- A simplified in situ solubilization procedure for the determination of DNA and cell number in tissue cultured mammalian cells.
Cited by
- Activity changes in the open-field test related to loss of rat molar occlusal support
- In vitro chondrogenesis of bone marrow-derived mesenchymal progenitor cells.
- Dextran coating on and among fibers of polymer sponge scaffold for osteogenesis by bone marrow cells in vivo
- Applying macromolecular crowding to enhance extracellular matrix deposition and its remodeling in vitro for tissue engineering and cell-based therapies.
- The role of osteochondral progenitor cells in fracture repair.
- Porcine mesenchymal stem cells
- BMP2 initiates chondrogenic lineage development of adult human mesenchymal stem cells in high-density culture.
- An in vitro study of collagen hydrogel to induce the chondrogenic differentiation of mesenchymal stem cells.
- Mesenchymal stem cells in the treatment of traumatic articular cartilage defects: a comprehensive review
- It is time to crowd your cell culture media - Physicochemical considerations with biological consequences.
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