Literature DB >> 19189390

Relating cell proliferation to in vivo bone formation in porous Ca/P scaffolds.

Steven M van Gaalen1, Joost D de Bruijn, Clayton E Wilson, Clemens A van Blitterswijk, Abraham J Verbout, Jacqueline Alblas, Wouter J A Dhert.   

Abstract

Most current methods for cell monitoring on 3D porous scaffolds involve end-stage investigation of scaffolds. Repeated measurements on scaffolds, without disturbing cell vitality and proliferation, are needed to relate in vitro to in vivo data. Alamar Blue was used for this purpose. Two different Ca/P scaffolds were studied, using rat BMSCs with three different seeding densities [2.5 x 10(4) (SD1), 2.5 x 10(5) (SD2), 2.5 x 10(6) (SD3) cells]. Alamar Blue readings were done on days 1, 3, 5 and 7. After 7 days all 96 scaffolds (n = 16) were implanted in 16 mice for 4 weeks. Bone histomorphometry was performed. For both scaffolds, seeding efficiencies were highest with SD1 and SD2, cell proliferation was optimal in SD1, whereas SD3 resulted in an initial drop in vital cell number in the first 3 days. In vivo, upscaling from SD1 to SD2 lead to significantly more bone contact% in both scaffolds. Alamar Blue was shown to be a valuable tool in relating in vitro to in vivo data. Cell proliferation may differ depending on seeding density and scaffold type used. Seeding more cells may not necessarily result in more in vivo bone contact%.

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Year:  2010        PMID: 19189390     DOI: 10.1002/jbm.a.32380

Source DB:  PubMed          Journal:  J Biomed Mater Res A        ISSN: 1549-3296            Impact factor:   4.396


  6 in total

1.  Early osteogenic signal expression of rat bone marrow stromal cells is influenced by both hydroxyapatite nanoparticle content and initial cell seeding density in biodegradable nanocomposite scaffolds.

Authors:  Kyobum Kim; David Dean; Anqi Lu; Antonios G Mikos; John P Fisher
Journal:  Acta Biomater       Date:  2010-11-11       Impact factor: 8.947

2.  Noninvasive real-time monitoring by alamarBlue(®) during in vitro culture of three-dimensional tissue-engineered bone constructs.

Authors:  Xiaohua Zhou; Inge Holsbeeks; Saartje Impens; Maarten Sonnaert; Veerle Bloemen; Frank Luyten; Jan Schrooten
Journal:  Tissue Eng Part C Methods       Date:  2013-02-25       Impact factor: 3.056

3.  Essential design considerations for the resazurin reduction assay to noninvasively quantify cell expansion within perfused extracellular matrix scaffolds.

Authors:  Joseph S Uzarski; Michael D DiVito; Jason A Wertheim; William M Miller
Journal:  Biomaterials       Date:  2017-02-16       Impact factor: 12.479

4.  Ex vivo non-invasive assessment of cell viability and proliferation in bio-engineered whole organ constructs.

Authors:  Xi Ren; Luis F Tapias; Bernhard J Jank; Douglas J Mathisen; Michael Lanuti; Harald C Ott
Journal:  Biomaterials       Date:  2015-02-21       Impact factor: 12.479

5.  Cell seeding density is a critical determinant for copolymer scaffolds-induced bone regeneration.

Authors:  Mohammed A Yassin; Knut N Leknes; Torbjorn O Pedersen; Zhe Xing; Yang Sun; Stein A Lie; Anna Finne-Wistrand; Kamal Mustafa
Journal:  J Biomed Mater Res A       Date:  2015-09-04       Impact factor: 4.396

6.  Determining a clinically relevant strategy for bone tissue engineering: an "all-in-one" study in nude mice.

Authors:  Pierre Corre; Christophe Merceron; Caroline Vignes; Sophie Sourice; Martial Masson; Nicolas Durand; Florent Espitalier; Paul Pilet; Thomas Cordonnier; Jacques Mercier; Séverine Remy; Ignacio Anegon; Pierre Weiss; Jérôme Guicheux
Journal:  PLoS One       Date:  2013-12-11       Impact factor: 3.240

  6 in total

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