Literature DB >> 14562251

Differentiation of rat osteoblast-like cells in monolayer and micromass cultures.

I Gerber1, I ap Gwynn.   

Abstract

During intramembranous bone formation, preosteoblasts condense, differentiate into osteoblasts and deposit bone matrix. We compared the differentiation process of rat calvarial osteoblast-like cells inoculated as micromasses, which mimic the in vivo condensation process, with cells inoculated as monolayers. The cells were analysed morphologically at 1,2 and 3 weeks by light microscopy (alkaline phosphatase activity, mineralization), by transmission electron microscopy, and biochemically (collagen typing, alkaline phosphatase activity, protein and DNA content). The cells inoculated as monolayers formed alkaline phosphatase positive and mineralized nodules during the culture period. The cells inoculated as a micromass formed a large mineralized area consisting of smaller nodules. The ultrastructure of the cells in both culture systems showed the typical features of osteoblasts and osteocytes. The main difference between monolayer and micromass cultures was found after 1 week in culture. The cells inoculated as a micromass formed a multilayer of cells. The cytoplasm contained rER, mitochondria, vesicles and ribosomes. There were abundant collagen fibrils in membrane folds and in the extracellular matrix. This was in contrast to the cells in monolayer culture which showed hardly any collagen fibrils in the extracellular matrix. The promotion of the differentiation was also confirmed by biochemical data showing that the DNA content was lower in the micromass than in the monolayer cultures during the culture period. These results show that micromass, as compared to monolayer, culture promotes the differentiation of rat osteoblast-like cells in vitro.

Entities:  

Year:  2002        PMID: 14562251     DOI: 10.22203/ecm.v003a03

Source DB:  PubMed          Journal:  Eur Cell Mater        ISSN: 1473-2262            Impact factor:   3.942


  5 in total

1.  Effects of Induction Culture on Osteogenesis of Scaffold-Free Engineered Tissue for Bone Regeneration Applications.

Authors:  Hye Min Park; Seon-Hwa Kim; Byung Hyune Choi; Sang-Hyug Park
Journal:  Tissue Eng Regen Med       Date:  2022-02-05       Impact factor: 4.169

2.  Analysis of Spontaneous and Induced Osteogenic Differentiation in 3D-micromasses of Human Multipotent Stem Cells.

Authors:  Julian Lommen; Michael Sus; Karin Berr; Norbert R Kübler; Fabian Langenbach; Christoph Sproll; Max Wilkat; Felix Schrader; Jörg Handschel; Lara Schorn
Journal:  In Vivo       Date:  2022 May-Jun       Impact factor: 2.406

3.  Influence of enamel matrix derivative on cells at different maturation stages of differentiation.

Authors:  Richard J Miron; Oana M Caluseru; Vincent Guillemette; Yufeng Zhang; Anja C Gemperli; Fatiha Chandad; Anton Sculean
Journal:  PLoS One       Date:  2013-08-12       Impact factor: 3.240

4.  A facile in vitro model to study rapid mineralization in bone tissues.

Authors:  Anthony J Deegan; Halil M Aydin; Bin Hu; Sandeep Konduru; Jan Herman Kuiper; Ying Yang
Journal:  Biomed Eng Online       Date:  2014-09-16       Impact factor: 2.819

5.  Effect of Short-Term Stimulation with Interleukin-1β and Differentiation Medium on Human Mesenchymal Stromal Cell Paracrine Activity in Coculture with Osteoblasts.

Authors:  Jan O Voss; Claudia Loebel; Jennifer J Bara; Marc Anton Fussinger; Fabian Duttenhoefer; Mauro Alini; Martin J Stoddart
Journal:  Biomed Res Int       Date:  2015-12-22       Impact factor: 3.411

  5 in total

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