Literature DB >> 26542170

Scaffold-free and scaffold-assisted 3D culture enhances differentiation of bone marrow stromal cells.

Prasanna Vidyasekar1, Pavithra Shyamsunder1, Sanjeeb Kumar Sahoo2, Rama Shanker Verma3,4.   

Abstract

3D cultures of stem cells can preserve differentiation potential or increase the efficiency of methods that induce differentiation. Mouse bone marrow-derived stromal cells (BMSCs) were cultured in 3D as scaffold-free spheroids or "mesoid bodies" (MBs) and as aggregates on poly(lactic) acid microspheres (MB/MS). 3D cultures demonstrated viable cells, interaction on multiple planes, altered cell morphology, and the formation of structures similar to epithelial cell bridges. Cell proliferation was limited in suspension cultures of MB and MB/MS; however, cells regained proliferative capacity when transferred to flat substrates of tissue culture plates (TCPs). Expanded as monolayer, cells retained expression of Sca-1 and CD44 stem cell markers. 3D cultures demonstrated enhanced potential for adipogenic and osteogenic differentiation showing higher triglyceride accumulation and robust mineralization in comparison with TCP cultures. Enhanced and efficient adipogenesis was also observed in 3D cultures generated in a rotating cell culture system. Preservation of multilineage potential of BMSC was demonstrated in 5-azacytidine treatment of 3D cultures and TCP by expression of cardiac markers GATA4 and ACTA1 although functioning cardiomyocytes were not derived.

Entities:  

Keywords:  3D culture; Adipogenesis; Differentiation; Mesenchymal stem cells; RCCS

Mesh:

Substances:

Year:  2015        PMID: 26542170     DOI: 10.1007/s11626-015-9971-2

Source DB:  PubMed          Journal:  In Vitro Cell Dev Biol Anim        ISSN: 1071-2690            Impact factor:   2.416


  41 in total

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Authors:  Priya R Baraniak; Todd C McDevitt
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Review 3.  Three-Dimensional Rotating Wall Vessel-Derived Cell Culture Models for Studying Virus-Host Interactions.

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5.  In vitro tissue-engineered adipose constructs for modeling disease.

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  6 in total

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